33 |
|
|
34 |
|
|
35 |
|
|
36 |
< |
void find_one_peak_combination(TCut specialcut, float &MCPeak,float &MCPeakError, float &DataPeak, float &DataPeakError, float &MCSigma, float &DataSigma, stringstream &result, bool doPUreweighting = true, string saveas="") |
36 |
> |
void find_one_peak_combination(TCut specialcut, bool SwitchOffNJetsCut, float &MCPeak,float &MCPeakError, float &DataPeak, float &DataPeakError, float &MCSigma, float &MCSigmaError, float &DataSigma, float& DataSigmaError, stringstream &result, bool doPUreweighting = true, string saveas="") |
37 |
|
{ |
38 |
|
// Temporarily switch off PU reweighting, if asked |
39 |
|
TCut weightbackup=cutWeight; |
42 |
|
int nbins=100; |
43 |
|
if(PlottingSetup::DoBTag) nbins=25; |
44 |
|
|
45 |
+ |
TCut nJetsCut(cutnJets); |
46 |
+ |
if(SwitchOffNJetsCut) nJetsCut=specialcut; |
47 |
+ |
|
48 |
|
TCanvas *tempcan = new TCanvas("tempcan","Temporary canvas for peak finding preparations"); |
49 |
< |
TH1F *rawJZBeemmMC = allsamples.Draw("rawJZBeemmMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&specialcut,mc, luminosity); |
50 |
< |
TH1F *rawJZBeemmData = allsamples.Draw("rawJZBeemmData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&specialcut,data, luminosity); |
51 |
< |
TH1F *rawJZBemMC = allsamples.Draw("rawJZBemMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&specialcut,mc, luminosity); |
52 |
< |
TH1F *rawJZBemData = allsamples.Draw("rawJZBemData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&specialcut,data, luminosity); |
49 |
> |
TH1F *rawJZBeemmMC = allsamples.Draw("rawJZBeemmMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&nJetsCut&&specialcut,mc, luminosity); |
50 |
> |
TH1F *rawJZBeemmData = allsamples.Draw("rawJZBeemmData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&nJetsCut&&specialcut,data, luminosity); |
51 |
> |
TH1F *rawJZBemMC = allsamples.Draw("rawJZBemMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&nJetsCut&&specialcut,mc, luminosity); |
52 |
> |
TH1F *rawJZBemData = allsamples.Draw("rawJZBemData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&nJetsCut&&specialcut,data, luminosity); |
53 |
|
TH1F *rawttbarjzbeemmMC; |
54 |
|
|
55 |
|
if(method==doKM) { |
56 |
|
//we only need this histo for the KM fitting... |
57 |
< |
rawttbarjzbeemmMC = allsamples.Draw("rawttbarjzbeemmMC",jzbvariablemc,nbins, -50,50, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets&&specialcut,mc,luminosity,allsamples.FindSample("TTJet")); |
58 |
< |
MCPeak=find_peak(rawJZBeemmMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,method,saveas); |
59 |
< |
DataPeak=find_peak(rawJZBeemmData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,method,saveas); |
57 |
> |
rawttbarjzbeemmMC = allsamples.Draw("rawttbarjzbeemmMC",jzbvariablemc,nbins, -50,50, "JZB [GeV]", "events",cutmass&&cutOSSF&&nJetsCut&&specialcut,mc,luminosity,allsamples.FindSample("TTJet")); |
58 |
> |
MCPeak=find_peak(rawJZBeemmMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,MCSigmaError,method,saveas); |
59 |
> |
DataPeak=find_peak(rawJZBeemmData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,DataSigmaError,method,saveas); |
60 |
|
delete rawttbarjzbeemmMC; |
61 |
|
} |
62 |
|
else { |
65 |
|
reducedMC->Add(rawJZBemMC,-1); |
66 |
|
reducedData->Add(rawJZBemData,-1); |
67 |
|
//this is Kostas' way of doing it - we subtract em to get rid of some of the ttbar contribution (in reality, of flavor-symmetric contribution) |
68 |
< |
MCPeak=find_peak(reducedMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,method,saveas); |
69 |
< |
DataPeak=find_peak(reducedData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,method,saveas); |
68 |
> |
MCPeak=find_peak(reducedMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,MCSigmaError,method,saveas); |
69 |
> |
DataPeak=find_peak(reducedData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,DataSigmaError,method,saveas); |
70 |
|
delete reducedMC; |
71 |
|
delete reducedData; |
72 |
|
} |
76 |
|
|
77 |
|
// MCPeak=find_peak(rawJZBeemmMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,method); |
78 |
|
// DataPeak=find_peak(rawJZBeemmData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,method); |
79 |
< |
dout << " We have found the peak in Data at " << DataPeak << " +/- " << DataPeakError << " with sigma=" << DataSigma << " +/- ?? (not impl.)" << endl; |
80 |
< |
result << " We have found the peak in Data at " << DataPeak << " +/- " << DataPeakError << " with sigma=" << DataSigma << " +/- ?? (not impl.)" << endl; |
81 |
< |
dout << " We have found the peak in MC at " << MCPeak << " +/- " << MCPeakError << " with sigma=" << MCSigma << " +/- ?? (not impl.)" << endl; |
82 |
< |
result << " We have found the peak in MC at " << MCPeak << " +/- " << MCPeakError << " with sigma=" << MCSigma << " +/- ?? (not impl.)" << endl; |
79 |
> |
dout << " We have found the peak in Data at " << DataPeak << " +/- " << DataPeakError << " with sigma=" << DataSigma << " +/- " << DataSigmaError << endl; |
80 |
> |
result << " We have found the peak in Data at " << DataPeak << " +/- " << DataPeakError << " with sigma=" << DataSigma << " +/- " << DataSigmaError << endl; |
81 |
> |
dout << " We have found the peak in MC at " << MCPeak << " +/- " << MCPeakError << " with sigma=" << MCSigma << " +/- " << MCSigmaError << endl; |
82 |
> |
result << " We have found the peak in MC at " << MCPeak << " +/- " << MCPeakError << " with sigma=" << MCSigma << " +/- " << MCSigmaError << endl; |
83 |
|
delete rawJZBeemmData; |
84 |
|
delete rawJZBeemmMC; |
85 |
|
delete rawJZBemData; |
87 |
|
delete tempcan; |
88 |
|
} |
89 |
|
|
90 |
< |
void find_peaks(float &MCPeak,float &MCPeakError, float &DataPeak, float &DataPeakError, stringstream &result, bool doPUreweighting, stringstream &datajzb, stringstream &mcjzb) |
90 |
> |
void find_peaks(float &MCPeak,float &MCPeakError, float &DataPeak, float &DataPeakError, stringstream &result, bool doPUreweighting, stringstream &datajzb, stringstream &mcjzb, string sSpecialCut="", bool SwitchOffNJetsCut=false) |
91 |
|
{ |
92 |
+ |
bool overunderflowstatus=addoverunderflowbins; |
93 |
+ |
switch_overunderflow(false); |
94 |
+ |
|
95 |
+ |
TCut SpecialCut("mll>=0"); |
96 |
+ |
if(sSpecialCut!="") SpecialCut=TCut(sSpecialCut.c_str()); |
97 |
|
|
98 |
|
bool DoInvidualeemmPeaks=false; |
99 |
|
|
106 |
|
float datammpeak,dataeepeak; |
107 |
|
float datammpeakerr,dataeepeakerr; |
108 |
|
|
109 |
< |
float mcSigma, dataSigma; |
109 |
> |
float mcSigma,mcSigmaError, dataSigma, dataSigmaError; |
110 |
|
|
111 |
|
dout << "Finding global peak : " << endl; |
112 |
< |
find_one_peak_combination(TCut(""),mcpeak,mcpeakerr, datapeak,datapeakerr,mcSigma, dataSigma,result,doPUreweighting,""); |
112 |
> |
find_one_peak_combination(SpecialCut,SwitchOffNJetsCut,mcpeak,mcpeakerr, datapeak,datapeakerr,mcSigma,mcSigmaError, dataSigma,dataSigmaError,result,doPUreweighting,""); |
113 |
|
|
114 |
|
if(DoInvidualeemmPeaks) { |
115 |
|
dout << "Finding peak for electrons : " << endl; |
116 |
< |
find_one_peak_combination(TCut("id1==0"),mceepeak,mceepeakerr, dataeepeak,dataeepeakerr,mcSigma, dataSigma,result,doPUreweighting,"_ele"); |
116 |
> |
find_one_peak_combination(SpecialCut&&TCut("id1==0"),SwitchOffNJetsCut,mceepeak,mceepeakerr,dataeepeak,dataeepeakerr,mcSigma,mcSigmaError,dataSigma,dataSigmaError,result,doPUreweighting,"_ele"); |
117 |
|
dout << "Finding peak for muons : " << endl; |
118 |
< |
find_one_peak_combination(TCut("id1==1"),mcmmpeak,mcmmpeakerr, datammpeak,datammpeakerr,mcSigma, dataSigma,result,doPUreweighting,"_mu"); |
118 |
> |
find_one_peak_combination(SpecialCut&&TCut("id1==1"),SwitchOffNJetsCut,mcmmpeak,mcmmpeakerr,datammpeak,datammpeakerr,mcSigma,mcSigmaError,dataSigma,dataSigmaError,result,doPUreweighting,"_mu"); |
119 |
|
|
120 |
|
datajzb << "(" << jzbvariabledata; |
121 |
|
mcjzb << "(" << jzbvariablemc; |
141 |
|
else mcjzb << "+ (id1!=id2)*" << TMath::Abs(mcpeak) << " "; |
142 |
|
|
143 |
|
mcjzb << ")"; |
144 |
+ |
|
145 |
|
} else { |
146 |
|
datajzb << "(" << jzbvariabledata; |
147 |
|
mcjzb << "(" << jzbvariablemc; |
156 |
|
|
157 |
|
mcjzb << ")"; |
158 |
|
} |
150 |
– |
|
159 |
|
|
160 |
+ |
MCPeak=mcpeak; |
161 |
+ |
MCPeakError=mcpeakerr; |
162 |
+ |
DataPeak=datapeak; |
163 |
+ |
DataPeakError=datapeakerr; |
164 |
+ |
switch_overunderflow(overunderflowstatus); |
165 |
|
} |
166 |
|
|
167 |
< |
void make_special_obs_pred_mll_plot(string mcjzb, float jzbthreshold) { |
167 |
> |
void make_special_obs_pred_mll_plot(string datajzb, string mcjzb, float jzbthreshold, float binWidth = 5.0) { |
168 |
|
float min=70.0; |
169 |
|
float max=115.0; |
170 |
|
if(!PlottingSetup::RestrictToMassPeak) { |
171 |
< |
min=10; |
172 |
< |
max=150; |
171 |
> |
min=20; |
172 |
> |
max=300; |
173 |
|
} |
174 |
< |
int nbins=int((max-min)/5); |
174 |
> |
int nbins=int((max-min)/binWidth); |
175 |
|
|
176 |
|
TCanvas *ckin = new TCanvas("ckin","Kinematic Plots (in the making)",600,600); |
177 |
|
|
178 |
< |
/* stringstream largerzeroS; |
179 |
< |
largerzeroS << "(" << mcjzb << ">" << jzbthreshold << ")"; |
180 |
< |
TCut largerzero(largerzeroS.str().c_str()); |
178 |
> |
stringstream largerzeroS; |
179 |
> |
largerzeroS << "(" << datajzb << ">" << jzbthreshold << ")"; |
180 |
> |
TCut largerzeroD(largerzeroS.str().c_str()); |
181 |
|
|
182 |
|
stringstream smallerzeroS; |
183 |
< |
smallerzeroS << "(" << mcjzb << "<-" << jzbthreshold << ")"; |
184 |
< |
TCut smallerzero(smallerzeroS.str().c_str());*/ |
185 |
< |
|
186 |
< |
TH1F *RcorrJZBeemm = allsamples.Draw("RcorrJZBeemm", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSSF&&cutnJets,data,luminosity); |
187 |
< |
THStack mcRcorrJZBeemm = allsamples.DrawStack("mcRcorrJZBeemm","mll",nbins,min,max, "m_{ll} [GeV}", "events", cutmass&&cutOSSF&&cutnJets,mc,luminosity); |
188 |
< |
TH1F *LcorrJZBeemm = allsamples.Draw("LcorrJZBeemm", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSSF&&cutnJets,data,luminosity); |
189 |
< |
TH1F *RcorrJZBem = allsamples.Draw("RcorrJZBem", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSOF&&cutnJets,data,luminosity); |
190 |
< |
TH1F *LcorrJZBem = allsamples.Draw("LcorrJZBem", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSOF&&cutnJets,data,luminosity); |
183 |
> |
smallerzeroS << "(" << datajzb << "<-" << jzbthreshold << ")"; |
184 |
> |
TCut smallerzeroD(smallerzeroS.str().c_str()); |
185 |
> |
|
186 |
> |
|
187 |
> |
stringstream largerzeroMS; |
188 |
> |
largerzeroMS << "(" << mcjzb << ">" << jzbthreshold << ")"; |
189 |
> |
TCut largerzeroM(largerzeroMS.str().c_str()); |
190 |
> |
|
191 |
> |
TH1F *RcorrJZBeemm = allsamples.Draw("RcorrJZBeemm", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&largerzeroD,data,luminosity); |
192 |
> |
THStack mcRcorrJZBeemm = allsamples.DrawStack("mcRcorrJZBeemm","mll",nbins,min,max, "m_{ll} [GeV}", "events", cutmass&&cutOSSF&&cutnJets&&largerzeroM,mc,luminosity); |
193 |
> |
TH1F *LcorrJZBeemm = allsamples.Draw("LcorrJZBeemm", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&smallerzeroD,data,luminosity); |
194 |
> |
TH1F *RcorrJZBem = allsamples.Draw("RcorrJZBem", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&largerzeroD,data,luminosity); |
195 |
> |
TH1F *LcorrJZBem = allsamples.Draw("LcorrJZBem", "mll",nbins,min,max, "m_{ll} [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&smallerzeroD,data,luminosity); |
196 |
|
|
197 |
|
TH1F *RcorrJZBSBem; |
198 |
|
TH1F *LcorrJZBSBem; |
201 |
|
|
202 |
|
// TH1F *RcorrJZBeemmNoS; |
203 |
|
|
204 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
205 |
< |
RcorrJZBSBem = allsamples.Draw("RcorrJZBSBem", "mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,data, luminosity); |
206 |
< |
LcorrJZBSBem = allsamples.Draw("LcorrJZBSBem", "mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,data, luminosity); |
207 |
< |
RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm","mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,data, luminosity); |
208 |
< |
LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm","mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,data, luminosity); |
209 |
< |
} |
210 |
< |
|
211 |
< |
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
212 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
213 |
< |
Bpred->Add(RcorrJZBem,1.0/3.); |
214 |
< |
Bpred->Add(LcorrJZBem,-1.0/3.); |
215 |
< |
Bpred->Add(RcorrJZBSBem,1.0/3.); |
216 |
< |
Bpred->Add(LcorrJZBSBem,-1.0/3.); |
217 |
< |
Bpred->Add(RcorrJZBSBeemm,1.0/3.); |
218 |
< |
Bpred->Add(LcorrJZBSBeemm,-1.0/3.); |
219 |
< |
} else { |
220 |
< |
Bpred->Add(RcorrJZBem,1.0); |
221 |
< |
Bpred->Add(LcorrJZBem,-1.0); |
222 |
< |
} |
223 |
< |
|
204 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
205 |
> |
RcorrJZBSBem = allsamples.Draw("RcorrJZBSBem", "mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets&&largerzeroD,data, luminosity); |
206 |
> |
LcorrJZBSBem = allsamples.Draw("LcorrJZBSBem", "mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets&&smallerzeroD,data, luminosity); |
207 |
> |
RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm","mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets&&largerzeroD,data, luminosity); |
208 |
> |
LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm","mll",nbins,min,max, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets&&smallerzeroD,data, luminosity); |
209 |
> |
} |
210 |
> |
|
211 |
> |
// Separate predictions |
212 |
> |
TH1F* SFN = (TH1F*)LcorrJZBeemm->Clone("SFN"); |
213 |
> |
TH1F* OFP = (TH1F*)RcorrJZBem->Clone("OFP"); |
214 |
> |
TH1F* OFN = (TH1F*)LcorrJZBem->Clone("OFN"); |
215 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
216 |
> |
OFP->Scale(1.0/3.0); |
217 |
> |
OFP->Add(RcorrJZBSBem,1.0/3.); |
218 |
> |
OFP->Add(RcorrJZBSBeemm,1.0/3.); |
219 |
> |
OFN->Scale(1.0/3.0); |
220 |
> |
OFN->Add(LcorrJZBSBem,1.0/3.); |
221 |
> |
OFN->Add(LcorrJZBSBeemm,1.0/3.); |
222 |
> |
} |
223 |
> |
|
224 |
> |
TH1F* Bpred = (TH1F*)SFN->Clone("Bpred"); |
225 |
> |
Bpred->Add(OFP); |
226 |
> |
Bpred->Add(OFN,-1); |
227 |
|
Bpred->SetLineColor(kRed); |
228 |
|
|
229 |
+ |
RcorrJZBeemm->SetTitleOffset(1.3,"y"); |
230 |
|
RcorrJZBeemm->Draw(); |
231 |
|
mcRcorrJZBeemm.Draw("same"); |
232 |
|
Bpred->Draw("histo,same"); |
241 |
|
stringstream saveas; |
242 |
|
saveas << "kin/Mll_After_Cut/Cut_At" << jzbthreshold; |
243 |
|
CompleteSave(ckin,saveas.str()); |
244 |
< |
|
244 |
> |
|
245 |
> |
// Draw all predictions overlayed |
246 |
> |
unsigned int w = gStyle->GetHistLineWidth()+1; // Make line a bit wider, since we dash it |
247 |
> |
SFN->SetLineColor(kGreen+2); |
248 |
> |
SFN->SetLineStyle(2); |
249 |
> |
SFN->SetLineWidth(w); |
250 |
> |
OFP->SetLineColor(kBlue+2); |
251 |
> |
OFP->SetLineStyle(2); |
252 |
> |
OFP->SetLineWidth(w); |
253 |
> |
OFN->SetLineColor(kMagenta+2); |
254 |
> |
OFN->SetLineStyle(3); |
255 |
> |
OFN->SetLineWidth(w); |
256 |
> |
|
257 |
> |
RcorrJZBeemm->Draw(); |
258 |
> |
SFN->Draw("histo,same"); |
259 |
> |
OFP->Draw("histo,same"); |
260 |
> |
OFN->Draw("histo,same"); |
261 |
> |
Bpred->Draw("histo,same"); |
262 |
> |
RcorrJZBeemm->Draw("same"); |
263 |
> |
|
264 |
> |
TLegend *leg2 = make_legend("",0.52,0.7); |
265 |
> |
leg2->AddEntry(RcorrJZBeemm,"observed (data)","lp"); |
266 |
> |
leg2->AddEntry(Bpred,"predicted (data)","l"); |
267 |
> |
leg2->AddEntry(SFN, " SF JZB<0","l"); |
268 |
> |
leg2->AddEntry(OFN, " OF JZB<0","l"); |
269 |
> |
leg2->AddEntry(OFP, " OF JZB>0","l"); |
270 |
> |
leg2->Draw("same"); |
271 |
> |
|
272 |
> |
saveas.str(""); |
273 |
> |
saveas << "kin/Mll_After_Cut/Cut_At" << jzbthreshold << "_nomc"; |
274 |
> |
CompleteSave(ckin,saveas.str()); |
275 |
> |
|
276 |
|
delete RcorrJZBeemm; |
277 |
|
delete LcorrJZBeemm; |
278 |
|
delete RcorrJZBem; |
279 |
|
delete LcorrJZBem; |
280 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
280 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
281 |
|
delete RcorrJZBSBeemm; |
282 |
|
delete LcorrJZBSBeemm; |
283 |
|
delete RcorrJZBSBem; |
371 |
|
oneline->Draw("same"); |
372 |
|
} |
373 |
|
|
374 |
+ |
float make_one_OFSF_plot(string variable, string addcut, string legendTitle, int nbins, float min, float max, float ymax, bool logscale, |
375 |
+ |
string xlabel, string filename, float legendPosition=0.55) { |
376 |
+ |
|
377 |
+ |
TCut ibasiccut=basiccut; |
378 |
+ |
bool draw_separation_lines=false; |
379 |
+ |
|
380 |
+ |
if(addcut != "") ibasiccut = ibasiccut && addcut.c_str(); |
381 |
+ |
|
382 |
+ |
TCut cutSF; |
383 |
+ |
TCut cutOF; |
384 |
+ |
|
385 |
+ |
cutOF = cutOSOF&&cutnJets&&ibasiccut; |
386 |
+ |
cutSF = cutOSSF&&cutnJets&&ibasiccut; |
387 |
+ |
|
388 |
+ |
TCanvas *ckin = new TCanvas("ckin","Kinematic Plots (in the making)",600,600); |
389 |
+ |
TPad* rcan = new TPad("rcan","rcan",0,0,1,1); |
390 |
+ |
rcan->SetLogy(logscale); |
391 |
+ |
rcan->cd(); |
392 |
+ |
|
393 |
+ |
std::cout << "OF/SF comparison: variable = " << variable << ", cut = " << cutSF.GetTitle() << std::endl; |
394 |
+ |
TH1F *datahistoSF = allsamples.Draw("datahistoSF",variable,nbins,min,max, xlabel, "events",cutSF,data,luminosity); |
395 |
+ |
TH1F *datahistoOF = allsamples.Draw("datahistoOF",variable,nbins,min,max, xlabel, "events",cutOF,data,luminosity); |
396 |
+ |
// string signal("LM3"); |
397 |
+ |
// TH1F* signalhisto = new TH1F("signalhisto",signal.c_str(),nbins,min,max); |
398 |
+ |
// int idx = signalsamples.FindSample(signal)[0]; |
399 |
+ |
// (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cutSF); |
400 |
+ |
// signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity); |
401 |
+ |
// signalhisto->SetLineColor((signalsamples.collection)[idx].samplecolor); |
402 |
+ |
// signalhisto->SetLineStyle(2); |
403 |
+ |
datahistoSF->SetMarkerSize(DataMarkerSize); |
404 |
+ |
datahistoOF->SetLineColor(kRed); |
405 |
+ |
|
406 |
+ |
if ( !logscale ) { |
407 |
+ |
datahistoSF->SetMinimum(0); // Defaults |
408 |
+ |
} else { |
409 |
+ |
datahistoSF->SetMinimum(0.5); |
410 |
+ |
} |
411 |
+ |
if (ymax<0) { |
412 |
+ |
if ( logscale ) datahistoSF->SetMaximum(5.3*datahistoSF->GetMaximum()); |
413 |
+ |
else datahistoSF->SetMaximum(1.5*datahistoSF->GetMaximum()); |
414 |
+ |
} else { |
415 |
+ |
datahistoSF->SetMaximum(ymax); |
416 |
+ |
} |
417 |
+ |
|
418 |
+ |
float ymaxSet = datahistoSF->GetMaximum(); |
419 |
+ |
|
420 |
+ |
datahistoSF->GetXaxis()->SetTitle(xlabel.c_str()); |
421 |
+ |
datahistoSF->GetYaxis()->SetTitle("Events"); |
422 |
+ |
datahistoSF->GetXaxis()->CenterTitle(); |
423 |
+ |
datahistoSF->GetYaxis()->CenterTitle(); |
424 |
+ |
|
425 |
+ |
TLegend *mleg = make_legend(legendTitle.c_str(),legendPosition,0.7,false,legendPosition+0.2); |
426 |
+ |
mleg->AddEntry(datahistoSF, "Same-flavor", "PL"); |
427 |
+ |
if (datahistoOF->Integral()>0) { |
428 |
+ |
mleg->AddEntry(datahistoOF, "Opposite-flavor", "L"); |
429 |
+ |
} else { |
430 |
+ |
mleg->AddEntry((TObject*)0, "", ""); |
431 |
+ |
} |
432 |
+ |
//mleg->AddEntry(signalhisto, "LM3", "L"); |
433 |
+ |
|
434 |
+ |
datahistoSF->Draw("E1"); |
435 |
+ |
if (datahistoOF->Integral()>0) datahistoOF->Draw("HIST,SAMES"); |
436 |
+ |
//signalhisto->Draw("HIST,SAMES"); |
437 |
+ |
mleg->Draw(); |
438 |
+ |
DrawPrelim(); |
439 |
+ |
if (datahistoOF->Integral()>0) { |
440 |
+ |
save_with_ratio( datahistoSF, datahistoOF, rcan, "SFOF/" + filename, false, false, "SF/OF" ); |
441 |
+ |
} else { |
442 |
+ |
CompleteSave(rcan, "SFOF/" + filename); |
443 |
+ |
delete rcan; |
444 |
+ |
} |
445 |
+ |
|
446 |
+ |
datahistoSF->Delete(); |
447 |
+ |
datahistoOF->Delete(); |
448 |
+ |
//signalhisto->Delete(); |
449 |
+ |
delete mleg; |
450 |
+ |
delete ckin; |
451 |
+ |
|
452 |
+ |
return ymaxSet; |
453 |
+ |
|
454 |
+ |
} |
455 |
+ |
|
456 |
+ |
// Compare data to data |
457 |
+ |
float make_data_comparison_plot(string variable, TCut cut, int nbins, float min, float max, float ymax, bool logscale, |
458 |
+ |
string xlabel, string filename, float legendPosition=0.55) { |
459 |
+ |
|
460 |
+ |
TCut ibasiccut=basiccut&&cut; |
461 |
+ |
|
462 |
+ |
TCanvas *ckin = new TCanvas("ckin","Kinematic Plots (in the making)",600,600); |
463 |
+ |
TPad* rcan = new TPad("rcan","rcan",0,0,1,1); |
464 |
+ |
rcan->SetLogy(logscale); |
465 |
+ |
rcan->cd(); |
466 |
+ |
|
467 |
+ |
std::cout << "Data comparison: variable = " << variable << ", cut = " << ibasiccut.GetTitle() << std::endl; |
468 |
+ |
|
469 |
+ |
TH1F *data1 = allsamples.Draw("data1",variable,nbins,min,max, xlabel, "events",ibasiccut,data,luminosity); |
470 |
+ |
TH1F *data2 = comparesamples.Draw("data2",variable,nbins,min,max, xlabel, "events",ibasiccut,data,luminosity); |
471 |
+ |
|
472 |
+ |
data1->SetMarkerSize(DataMarkerSize); |
473 |
+ |
data2->SetLineColor(kRed); |
474 |
+ |
|
475 |
+ |
if ( !logscale ) { |
476 |
+ |
data1->SetMinimum(0); // Defaults |
477 |
+ |
} else { |
478 |
+ |
data1->SetMinimum(0.5); |
479 |
+ |
} |
480 |
+ |
if (ymax<0) { |
481 |
+ |
if ( logscale ) data1->SetMaximum(5.3*data1->GetMaximum()); |
482 |
+ |
else data1->SetMaximum(1.5*data1->GetMaximum()); |
483 |
+ |
} else { |
484 |
+ |
data1->SetMaximum(ymax); |
485 |
+ |
} |
486 |
+ |
|
487 |
+ |
float ymaxSet = data1->GetMaximum(); |
488 |
+ |
|
489 |
+ |
data1->GetXaxis()->SetTitle(xlabel.c_str()); |
490 |
+ |
data1->GetYaxis()->SetTitle("Events"); |
491 |
+ |
data1->GetXaxis()->CenterTitle(); |
492 |
+ |
data1->GetYaxis()->CenterTitle(); |
493 |
+ |
|
494 |
+ |
TLegend *mleg = make_legend("",legendPosition,0.7,false,legendPosition+0.2); |
495 |
+ |
mleg->AddEntry(data1, "New 3.8/fb", "PL"); |
496 |
+ |
mleg->AddEntry(data2, "Old 5.1/fb", "L"); |
497 |
+ |
|
498 |
+ |
data1->Draw("E1"); |
499 |
+ |
data2->Draw("HIST,SAMES"); |
500 |
+ |
mleg->Draw(); |
501 |
+ |
DrawPrelim(); |
502 |
+ |
save_with_ratio( data1, data2, rcan, "compareData/" + filename, false, false, "old/new" ); |
503 |
+ |
|
504 |
+ |
data1->Delete(); |
505 |
+ |
data2->Delete(); |
506 |
+ |
delete mleg; |
507 |
+ |
delete ckin; |
508 |
+ |
|
509 |
+ |
} |
510 |
+ |
|
511 |
+ |
void make_OFSF_plots(string variable, string addcut, int nbins, float min, float max, bool logscale, |
512 |
+ |
string xlabel, string filename, float legendPosition=0.55) { |
513 |
+ |
|
514 |
+ |
string mllcuts[] = { "mll>15","mll>15&&mll<70", "mll>75&&mll<105", "mll>120" }; |
515 |
+ |
string mllcutname[] = { "m_{ll} > 15 GeV", "15 < m_{ll} < 70 GeV", "70 < m_{ll} < 110 GeV", "m_{ll} > 120 GeV" }; |
516 |
+ |
string plotname[] = {"_all","_low","_peak","_high"}; |
517 |
+ |
float ymax; |
518 |
+ |
|
519 |
+ |
int start = 0; |
520 |
+ |
if ( !PlottingSetup::openBox ) start = 3; |
521 |
+ |
|
522 |
+ |
for ( int i=start; i<4; ++i ) { |
523 |
+ |
if ( addcut != "" ) mllcuts[i] += "&&"+addcut; |
524 |
+ |
if ( i==start ) { |
525 |
+ |
ymax = make_one_OFSF_plot(variable, mllcuts[i], mllcutname[i], nbins, min, max, -1, logscale, xlabel, |
526 |
+ |
filename+plotname[i], legendPosition ); |
527 |
+ |
} else { |
528 |
+ |
make_one_OFSF_plot(variable, mllcuts[i], mllcutname[i], nbins, min, max, ymax, logscale, xlabel, |
529 |
+ |
filename+plotname[i], legendPosition ); |
530 |
+ |
} |
531 |
+ |
make_one_OFSF_plot(variable, "id1==1&&id1==id2&&"+mllcuts[i], mllcutname[i], nbins, min, max, ymax, logscale, xlabel, |
532 |
+ |
filename+plotname[i]+"_mm", legendPosition ); |
533 |
+ |
make_one_OFSF_plot(variable, "id1==0&&id1==id2&&"+mllcuts[i], mllcutname[i], nbins, min, max, ymax, logscale, xlabel, |
534 |
+ |
filename+plotname[i]+"_ee", legendPosition ); |
535 |
+ |
} |
536 |
+ |
|
537 |
+ |
} |
538 |
+ |
|
539 |
+ |
|
540 |
|
float lastrange_min=0; |
541 |
|
float lastrange_max=0; |
542 |
|
|
545 |
|
// TCut basiccut("(pfJetGoodNum>=2&&pfJetGoodID[0])&&(pfJetGoodNum>=2&&pfJetGoodID[1])&&(passed_triggers||!is_data)"); |
546 |
|
TCut ibasiccut=basiccut; |
547 |
|
bool draw_separation_lines=false; |
548 |
+ |
bool drawsignal = false; |
549 |
|
|
550 |
|
if(isPF) ibasiccut=basiccut&&"pfjzb[0]>-998"; |
551 |
|
|
567 |
|
//Step 2: Refine the cut |
568 |
|
TCut cut; |
569 |
|
cut=cutmass&&cutOSSF&&cutnJets&&ibasiccut; |
570 |
< |
if(filename=="nJets") cut=cutmass&&cutOSSF&&ibasiccut; |
571 |
< |
if(filename=="nJets_osof") cut=cutmass&&cutOSOF&&ibasiccut; |
570 |
> |
if(filename=="nJets" || filename=="nJets_inclusive" || filename=="nJets_met100" || filename=="nJets_inclusive_met100") cut=cutmass&&cutOSSF&&ibasiccut; |
571 |
> |
if(filename=="nJets_osof" || filename=="nJets_osof_inclusive" || filename=="nJets_osof_met100" || filename=="nJets_osof_inclusive_met100") cut=cutmass&&cutOSOF&&ibasiccut; |
572 |
|
if(filename=="nJets_nocuts_except_mll_ossf") cut=cutmass&&cutOSSF; |
573 |
< |
if(filename=="mll") { |
573 |
> |
if(filename=="mll"||filename=="mll_met100") { |
574 |
|
cut=cutOSSF&&cutnJets&&ibasiccut; |
575 |
|
draw_separation_lines=true; |
576 |
|
} |
577 |
< |
if(filename=="mll_ee") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==0"; |
578 |
< |
if(filename=="mll_osof") { |
577 |
> |
if(filename=="mll_ee"||filename=="mll_ee_met100") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==0"; |
578 |
> |
if(filename=="mll_mm"||filename=="mll_mm_met100") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==1"; |
579 |
> |
if(filename=="mll_osof"||filename=="mll_osof_met100") { |
580 |
|
cut=cutOSOF&&cutnJets&&ibasiccut; |
581 |
|
draw_separation_lines=true; |
582 |
|
} |
583 |
< |
if(filename=="mll_mm") cut=cutOSSF&&cutnJets&&ibasiccut&&"id1==1"; |
584 |
< |
if(Contains(filename,"mll_aboveJZB100")) cut=cutOSSF&&cutnJets&&ibasiccut; |
583 |
> |
if(Contains(filename,"aboveJZB")) cut=cutOSSF&&cutnJets&&ibasiccut; |
584 |
> |
if(Contains(filename,"mll_ee_above")) cut=cut&&"id1==0"; |
585 |
> |
if(Contains(filename,"mll_mm_above")) cut=cut&&"id1==1"; |
586 |
|
if(Contains(filename,"mll_osof_aboveJZB")) cut=cutOSOF&&cutnJets&&ibasiccut; |
587 |
|
if(filename=="mll_inclusive"||filename=="mll_inclusive_highrange") cut=cutOSSF; |
588 |
|
if(filename=="mll_inclusive_osof") cut=cutOSOF; |
590 |
|
if(filename=="mll_inclusive_mm") cut=cutOSSF&&"id1==1"; |
591 |
|
if(filename=="pfJetGoodEta_0") cut=cutOSSF&&cutmass&&ibasiccut&&cutnJets; |
592 |
|
if(filename=="pfJetGoodPt_0") cut=cutOSSF&&cutmass&&ibasiccut&&cutnJets; |
593 |
+ |
if(filename=="numVtx") cut=cutmass&&ibasiccut; |
594 |
|
|
595 |
|
TCanvas *ckin = new TCanvas("ckin","Kinematic Plots (in the making)",600,600); |
596 |
|
ckin->SetLogy(logscale); |
597 |
|
TH1F *datahisto = allsamples.Draw("datahisto",variable,nbins,min,max, xlabel, "events",cut,data,luminosity); |
598 |
|
datahisto->SetMarkerSize(DataMarkerSize); |
599 |
< |
THStack mcstack = allsamples.DrawStack("mcstack",variable,nbins,min,max, xlabel, "events",cut,mc,luminosity); |
599 |
> |
if ( !logscale ) datahisto->SetMinimum(0); // Defaults |
600 |
> |
else datahisto->SetMinimum(0.5); |
601 |
> |
// Custom max. |
602 |
> |
if(variable=="TMath::Abs(pfJetDphiMet[0])") datahisto->SetMaximum(1.5*datahisto->GetMaximum()); |
603 |
|
if(variable=="pfJetGoodPt[0]") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
604 |
|
if(variable=="pt") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
605 |
|
if(filename=="mll_inclusive"||filename=="mll_inclusive_mm"||filename=="mll_inclusive_ee") datahisto->SetMinimum(1); |
606 |
|
if(filename=="mll_osof") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
607 |
|
if(filename=="mll_osof") datahisto->SetMinimum(9); |
608 |
< |
datahisto->SetMaximum(5.3*datahisto->GetMaximum()); |
609 |
< |
datahisto->Draw("e1"); |
610 |
< |
ckin->Update(); |
608 |
> |
if (logscale) datahisto->SetMaximum(5.3*datahisto->GetMaximum()); |
609 |
> |
else datahisto->SetMaximum(1.3*datahisto->GetMaximum()); |
610 |
> |
|
611 |
> |
cout << "******** Cut used : " << (const char*) cut << " for plot " << filename << endl; |
612 |
|
if(loadlastminmax) { |
613 |
|
datahisto->SetMinimum(lastrange_min); |
614 |
|
datahisto->SetMaximum(lastrange_max); |
618 |
|
} |
619 |
|
} |
620 |
|
|
621 |
+ |
// Draw signal by hand (for some reason I don't manage to use the sample class: it adds it to the stack!) |
622 |
+ |
string signal("LM3"); |
623 |
+ |
TH1F* signalhisto = new TH1F("signalhisto",signal.c_str(),nbins,min,max); |
624 |
+ |
int idx = signalsamples.FindSample(signal)[0]; |
625 |
+ |
if(drawsignal) (signalsamples.collection)[idx].events->Project("signalhisto",variable.c_str(),cut); |
626 |
+ |
if(drawsignal) signalhisto->Scale((signalsamples.collection)[idx].weight*luminosity); |
627 |
+ |
if(drawsignal) signalhisto->SetLineColor(kOrange); |
628 |
+ |
|
629 |
+ |
THStack mcstack = allsamples.DrawStack("mcstack", variable,nbins,min,max,xlabel,"events",cut,mc,luminosity); |
630 |
+ |
datahisto->Draw("e1"); |
631 |
+ |
ckin->Update(); |
632 |
|
mcstack.Draw("same"); |
633 |
+ |
|
634 |
|
datahisto->Draw("same,e1"); |
635 |
|
TLegend *kinleg = allsamples.allbglegend(); |
636 |
|
kinleg->Draw(); |
673 |
|
kinpad->SetLogy(logscale); |
674 |
|
datahisto->Draw("e1"); |
675 |
|
mcstack.Draw("same"); |
676 |
+ |
if(drawsignal) signalhisto->Draw("same"); |
677 |
|
datahisto->Draw("same,e1"); |
678 |
|
datahisto->Draw("same,axis"); |
679 |
|
if(RestrictToMassPeak&&draw_separation_lines) { |
681 |
|
upperboundary->Draw("same"); |
682 |
|
} |
683 |
|
|
684 |
+ |
if(drawsignal) kinleg->AddEntry("signalhisto",signal.c_str(),"l"); |
685 |
|
kinleg->Draw(); |
686 |
|
write_cut->Draw(); |
687 |
|
DrawPrelim(); |
696 |
|
else CompleteSave(ckin,"kin/"+filename); |
697 |
|
} |
698 |
|
datahisto->Delete(); |
699 |
+ |
delete signalhisto; |
700 |
|
delete ckin; |
701 |
|
} |
702 |
|
|
703 |
< |
void make_JES_plot() { |
703 |
> |
void make_JES_plot(TCut cut, string name) { |
704 |
|
|
705 |
|
int nbins=10; |
706 |
|
float min=-0.5; |
707 |
|
float max = 9.5; |
708 |
|
bool logscale=true; |
709 |
|
string xlabel="nJets"; |
468 |
– |
TCut cut=cutmass&&cutOSSF&&basiccut; |
710 |
|
|
711 |
|
TCanvas *ckin = new TCanvas("ckin","Kinematic Plots (in the making)",600,600); |
712 |
|
ckin->SetLogy(logscale); |
713 |
< |
TH1F *datahisto = allsamples.Draw("datahisto","pfJetGoodNum",nbins,min,max, xlabel, "events",cut,data,luminosity); |
713 |
> |
TH1F *datahisto = allsamples.Draw("datahisto","pfJetGoodNum40",nbins,min,max, xlabel, "events",cut,data,luminosity); |
714 |
|
datahisto->SetMarkerSize(DataMarkerSize); |
715 |
< |
THStack mcstack = allsamples.DrawStack("mcstack","pfJetGoodNum",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
716 |
< |
TH1F *JESup = allsamples.Draw("JESup","pfJetGoodNum315",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
717 |
< |
TH1F *JESdn = allsamples.Draw("JESdn","pfJetGoodNum285",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
715 |
> |
THStack mcstack = allsamples.DrawStack("mcstack","pfJetGoodNum40",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
716 |
> |
TH1F *JESup = allsamples.Draw("JESup","pfJetGoodNum40p1sigma",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
717 |
> |
TH1F *JESdn = allsamples.Draw("JESdn","pfJetGoodNum40n1sigma",nbins,min,max, xlabel, "events",cut,mc,luminosity); |
718 |
|
|
719 |
|
datahisto->SetMinimum(1); |
720 |
|
datahisto->SetMaximum(5.3*datahisto->GetMaximum()); // in line with kinematic plots style |
739 |
|
TLegend *kinleg = allsamples.allbglegend(); |
740 |
|
kinleg->AddEntry(JESunc,"JES uncertainty","f"); |
741 |
|
kinleg->Draw(); |
742 |
< |
CompleteSave(ckin,"Systematics/JES"); |
742 |
> |
CompleteSave(ckin,"Systematics/JES"+name); |
743 |
|
datahisto->Delete(); |
744 |
|
delete ckin; |
745 |
|
|
747 |
|
|
748 |
|
void do_kinematic_plots(string mcjzb, string datajzb, bool doPF=false) |
749 |
|
{ |
750 |
+ |
// switch_overunderflow(true); |
751 |
|
bool dolog=true; |
752 |
|
bool nolog=false; |
753 |
+ |
|
754 |
+ |
bool doOFSF = false; |
755 |
+ |
bool doKin = true; |
756 |
+ |
bool doDataComp = false; |
757 |
+ |
|
758 |
+ |
|
759 |
|
if(doPF) write_warning(__FUNCTION__,"Please use caution when trying to produce PF plots; not all versions of the JZB trees have these variables!"); |
760 |
|
float mll_low=50; |
761 |
|
float mll_hi=160; |
762 |
|
if(!PlottingSetup::RestrictToMassPeak) { |
763 |
|
mll_low=20; |
764 |
< |
mll_hi=210; |
764 |
> |
mll_hi=320; |
765 |
|
} |
766 |
< |
|
767 |
< |
make_kin_plot("met[4]","",40,0,200,dolog,"MET [GeV]","met",doPF,true); |
768 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll",doPF,true); |
769 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof",doPF,true,true); |
770 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee",doPF,true); |
771 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm",doPF,true); |
772 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive",doPF,true); |
773 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_ee",doPF,true); |
774 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_mm",doPF,true); |
775 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/2,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_osof",doPF,true); |
776 |
< |
make_kin_plot("mll","",(int)((350-mll_low)),mll_low,350,dolog,"m_{ll} [GeV]","mll_inclusive_highrange",doPF); |
777 |
< |
make_kin_plot("numVtx","",(int)(30.5-(-0.5)),-0.5,30.5,nolog,"N(Vtx)","numVtx",doPF); |
778 |
< |
// make_kin_plot("jetpt[0]","",40,0,200,dolog,"leading jet p_{T} [GeV]","pfJetGoodPt_0",doPF); |
779 |
< |
// make_kin_plot("jeteta[0]","",40,-5,5,nolog,"leading jet #eta","pfJetGoodEta_0",doPF); |
780 |
< |
make_kin_plot("pt","",50,0,400,dolog,"Z p_{T} [GeV]","Zpt",doPF); |
781 |
< |
make_kin_plot("pt1","",50,0,100,nolog,"p_{T} [GeV]","pt1",doPF); |
782 |
< |
make_kin_plot("pt2","",50,0,100,nolog,"p_{T} [GeV]","pt2",doPF); |
783 |
< |
make_kin_plot("eta1","",40,-5,5,nolog,"#eta_{l}","eta",doPF); |
784 |
< |
make_kin_plot("jzb[1]","",100,-150,150,dolog,"JZB [GeV]","jzb_ossf",doPF); |
785 |
< |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets",doPF); |
786 |
< |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_osof",doPF); |
787 |
< |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_nocuts_except_mll_ossf",doPF); |
788 |
< |
if(!doPF) make_special_mll_plot((int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]"); |
789 |
< |
stringstream jzbcut; |
790 |
< |
jzbcut << "((is_data&&("<<datajzb<<")>100)||(!is_data&&("<<mcjzb<<")>100))"; |
791 |
< |
make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB100",doPF,true); |
792 |
< |
make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_aboveJZB100",doPF,true); |
793 |
< |
make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB100",doPF,true); |
794 |
< |
make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_aboveJZB100",doPF,true); |
795 |
< |
stringstream jzbcut2; |
796 |
< |
jzbcut2 << "((is_data&&("<<datajzb<<")>150)||(!is_data&&("<<mcjzb<<")>150))"; |
797 |
< |
make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB150",doPF,true); |
798 |
< |
make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_aboveJZB150",doPF,true); |
799 |
< |
stringstream jzbcut3; |
800 |
< |
jzbcut3 << "((is_data&&("<<datajzb<<")>50)||(!is_data&&("<<mcjzb<<")>50))"; |
801 |
< |
make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB50",doPF,true); |
802 |
< |
make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_aboveJZB50",doPF,true,true); |
803 |
< |
|
804 |
< |
make_special_obs_pred_mll_plot(mcjzb,0); |
805 |
< |
make_special_obs_pred_mll_plot(mcjzb,50); |
806 |
< |
make_special_obs_pred_mll_plot(mcjzb,100); |
807 |
< |
make_special_obs_pred_mll_plot(mcjzb,150); |
808 |
< |
make_special_obs_pred_mll_plot(mcjzb,200); |
809 |
< |
make_special_obs_pred_mll_plot(mcjzb,250); |
766 |
> |
|
767 |
> |
if ( doOFSF ) { |
768 |
> |
make_OFSF_plots("mll", "met[4]>100", 60, 20., 320., false, "m_{ll}", "mll"); |
769 |
> |
|
770 |
> |
make_OFSF_plots("pfJetGoodNum40", "met[4]>100", 7, 3, 10, true, "#(jets)", "njets"); |
771 |
> |
make_OFSF_plots("pfJetGoodNum40", "met[4]>100&&pfJetGoodNumBtag30==0", 7, 3, 10, true, "#(jets)", "njets_btagVeto"); |
772 |
> |
make_OFSF_plots("pfJetGoodNum40", "met[4]>100&&pfJetGoodNumBtag30>0", 7, 3, 10, true, "#(jets)", "njets_AtLeastOneBJet30"); |
773 |
> |
|
774 |
> |
make_OFSF_plots("pfJetGoodNumBtag30", "met[4]>100", 5, 0, 5, true, "#(b-jets)", "nbjets"); |
775 |
> |
make_OFSF_plots("pfJetGoodPtBtag[0]", "met[4]>100&&pfJetGoodNumBtag30>0", 20, 0, 400, true, "p_{T}(leading b-jet)", "ptb1"); |
776 |
> |
|
777 |
> |
make_OFSF_plots("iso1", "met[4]>100", 20, 0, 0.3, true, "lepton 1 isolation", "iso1"); |
778 |
> |
make_OFSF_plots("iso2", "met[4]>100", 20, 0, 0.3, true, "lepton 2 isolation", "iso2"); |
779 |
> |
// make_OFSF_plots("pt1", "met[4]>100", 30, 0., 300., true, "p_{T,1}", "pt1"); |
780 |
> |
// make_OFSF_plots("pt2", "met[4]>100", 22, 0., 220., true, "p_{T,2}", "pt2"); |
781 |
> |
make_OFSF_plots("eta1", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{1}", "eta1", 0.15); |
782 |
> |
make_OFSF_plots("eta2", "met[4]>100", 10, -2.5, 2.5, false, "#eta_{2}", "eta2", 0.15); |
783 |
> |
// make_OFSF_plots("phi1", "met[4]>100", 10, -TMath::Pi(), TMath::Pi(), false, "#phi_{1}", "phi1", 0.2); |
784 |
> |
// make_OFSF_plots("phi2", "met[4]>100", 10, -TMath::Pi(), TMath::Pi(), false, "#phi_{2}", "phi2", 0.2); |
785 |
> |
// make_OFSF_plots("pfJetGoodPt[0]/pfJetGoodPt[1]", "met[4]>100", 20, 1, 10, true, "pt_{j}^{1}/pt_{j}^{2}", "jpt1pt2", 0.2); |
786 |
> |
make_OFSF_plots("TMath::Abs(pfJetDphiMet[0])", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(jet1,MET)|", "dphij1met", 0.2); |
787 |
> |
make_OFSF_plots("TMath::Abs(dphi)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l1,l2)|", "dphi", 0.2); |
788 |
> |
// make_OFSF_plots("TMath::Abs(dphiMet1)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l1,MET)|", "dphiMet1", 0.2); |
789 |
> |
// make_OFSF_plots("TMath::Abs(dphiMet2)", "met[4]>100", 16, 0, 3.2, false, "|#Delta#phi(l2,MET)|", "dphiMet2", 0.2); |
790 |
> |
make_OFSF_plots("TMath::Min(TMath::Abs(dphiMet1), TMath::Abs(dphiMet2))", "met[4]>100", 16, 0, 3.2, false, "Min(|#Delta#phi(l,MET)|)", "dphilc"); |
791 |
> |
make_OFSF_plots("TMath::Min(TMath::Abs(pfJetDphiMet[0]), TMath::Min(TMath::Abs(pfJetDphiMet[1]), TMath::Abs(pfJetDphiMet[2])))", "met[4]>100", 16, 0, 3.2, false, "Min(|#Delta#phi(jet,MET)|)", "dphijc"); |
792 |
> |
make_OFSF_plots("TMath::Min((TMath::Pi()-TMath::Abs(dphiMet1)), (TMath::Pi() - TMath::Abs(dphiMet2)))", "met[4]>100", 16, 0, 3.2, false, "Min(#pi - |#Delta#phi(l,MET)|)", "dphilco"); |
793 |
> |
make_OFSF_plots("TMath::Min((TMath::Pi()-TMath::Abs(pfJetDphiMet[0])), TMath::Min( (TMath::Pi()-TMath::Abs(pfJetDphiMet[1])), (TMath::Pi() - TMath::Abs(pfJetDphiMet[2]))))", "met[4]>100", 16, 0, 3.2, false, "Min(#pi - |#Delta#phi(jet,MET)|)", "dphijco"); |
794 |
> |
} |
795 |
> |
|
796 |
> |
if ( doDataComp && !PlottingSetup::openBox ) { |
797 |
> |
TCut mllCut(""); |
798 |
> |
float massmin = 15.; |
799 |
> |
float massmax = 315; |
800 |
> |
int massnbins = 60; |
801 |
> |
if ( !PlottingSetup::openBox ) { |
802 |
> |
mllCut = "mll>120"; |
803 |
> |
massmin = 120; |
804 |
> |
massmax = 360; |
805 |
> |
massnbins = 14; |
806 |
> |
} |
807 |
> |
|
808 |
> |
TCut cutSignal = cutmass&&cutnJets&&"met[4]>100"; |
809 |
> |
make_data_comparison_plot("mll", cutOSSF,60, 15., 315.,-1., true, "m_{ll}", "mll_SF_inclusive"); |
810 |
> |
make_data_comparison_plot("mll", cutOSOF,60, 15., 315.,-1., true, "m_{ll}", "mll_OF_inclusive"); |
811 |
> |
|
812 |
> |
make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut, massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig"); |
813 |
> |
make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30==0", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig_btagVeto"); |
814 |
> |
make_data_comparison_plot("mll", cutOSSF&&cutSignal&&mllCut&&"pfJetGoodNumBtag30>0", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_sig_AtLeastOneBJet"); |
815 |
> |
|
816 |
> |
make_data_comparison_plot("mll", mllCut&&cutOSOF&&cutSignal, massnbins, 15., 315.,-1., false, "m_{ll}", "mll_OF_sig"); |
817 |
> |
make_data_comparison_plot("mll", cutmass&&cutOSSF&&"met[4]>100&&met[4]<150&&pfJetGoodNum40==2", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_SF_CR"); |
818 |
> |
make_data_comparison_plot("mll", cutmass&&cutOSOF&&"met[4]>100&&met[4]<150&&pfJetGoodNum40==2", massnbins, 15., 315.,-1., false, "m_{ll}", "mll_OF_CR"); |
819 |
> |
|
820 |
> |
make_data_comparison_plot("pfJetGoodNum40", cutOSSF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(jets)", "njets_SF_sig"); |
821 |
> |
make_data_comparison_plot("pfJetGoodNum40", cutOSOF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(jets)", "njets_OF_sig"); |
822 |
> |
make_data_comparison_plot("pfJetGoodNumBtag30", cutOSSF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(b-jets)", "nbjets_SF_sig"); |
823 |
> |
make_data_comparison_plot("pfJetGoodNumBtag30", cutOSOF&&cutSignal&&mllCut, 8, 0., 8.,-1., false, "#(b-jets)", "nbjets_OF_sig"); |
824 |
> |
} |
825 |
> |
|
826 |
> |
|
827 |
> |
if ( doKin ) { |
828 |
> |
string mllCut(""); |
829 |
> |
if ( !PlottingSetup::openBox ) mllCut = "&&mll>120"; |
830 |
> |
|
831 |
> |
// Plots in signal region |
832 |
> |
// make_kin_plot("met[4]","",70,0,350,dolog,"MET [GeV]","met",doPF,true); |
833 |
> |
make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll",doPF,true); |
834 |
> |
make_kin_plot("mll","mll>20",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof",doPF,true,true); |
835 |
> |
make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee",doPF,true); |
836 |
> |
make_kin_plot("mll","mll>20"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm",doPF,true); |
837 |
> |
|
838 |
> |
make_kin_plot("pfJetGoodNum40",mllCut,9,-0.5,8.5,dolog,"nJets","nJets",doPF); |
839 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_osof",doPF); |
840 |
> |
|
841 |
> |
make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_met100",doPF,true); |
842 |
> |
make_kin_plot("mll","mll>20&&met[4]>100",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof_met100",doPF,true,true); |
843 |
> |
make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee_met100",doPF,true); |
844 |
> |
make_kin_plot("mll","mll>20&&met[4]>100"+mllCut,(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_mm_met100",doPF,true); |
845 |
> |
|
846 |
> |
make_kin_plot("pfJetGoodNum40","met[4]>100"+mllCut,9,-0.5,8.5,dolog,"nJets","nJets_met100",doPF); |
847 |
> |
make_kin_plot("pfJetGoodNum40","met[4]>100",9,-0.5,8.5,dolog,"nJets","nJets_osof_met100",doPF); |
848 |
> |
|
849 |
> |
// Further inclusive invariant mass plots |
850 |
> |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/5,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive",doPF,true); |
851 |
> |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/5,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_ee",doPF,true); |
852 |
> |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/5,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_mm",doPF,true); |
853 |
> |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/5,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_osof",doPF,true); |
854 |
> |
|
855 |
> |
//make_kin_plot("mll","",(int)((350-mll_low))/5,mll_low,350,dolog,"m_{ll} [GeV]","mll_inclusive_highrange",doPF); |
856 |
> |
//if(!doPF) make_special_mll_plot((int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]"); |
857 |
> |
|
858 |
> |
//make_kin_plot("pfJetGoodPt[0]/pfJetGoodPt[1]","",45,1,10,dolog,"pt_{j}^{1}/pt_{j}^{2}","j1j2ratio",doPF,true); |
859 |
> |
//make_kin_plot("TMath::Abs(pfJetDphiMet[0])","",32,0,3.2,nolog,"|#Delta#phi(jet1,MET)|","dphiJ1MET",doPF,true); |
860 |
> |
|
861 |
> |
// Number of jets |
862 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_inclusive",doPF); |
863 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_osof_inclusive",doPF); |
864 |
> |
//make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_nocuts_except_mll_ossf",doPF); |
865 |
> |
|
866 |
> |
// Others |
867 |
> |
make_kin_plot("numVtx","",(int)(30.5-(-0.5)),-0.5,30.5,nolog,"N(Vtx)","numVtx",doPF); |
868 |
> |
// make_kin_plot("jetpt[0]","",40,0,200,dolog,"leading jet p_{T} [GeV]","pfJetGoodPt_0",doPF); |
869 |
> |
// make_kin_plot("jeteta[0]","",40,-5,5,nolog,"leading jet #eta","pfJetGoodEta_0",doPF); |
870 |
> |
make_kin_plot("pt","",50,0,500,dolog,"Z p_{T} [GeV]","Zpt",doPF); |
871 |
> |
make_kin_plot("pt1","",50,0,200,nolog,"p_{T} [GeV]","pt1",doPF); |
872 |
> |
make_kin_plot("pt2","",50,0,200,nolog,"p_{T} [GeV]","pt2",doPF); |
873 |
> |
make_kin_plot("eta1","",40,-3,3,nolog,"#eta_{l}","eta",doPF); |
874 |
> |
make_kin_plot("jzb[1]","",100,-150,200,dolog,"JZB [GeV]","jzb_ossf",doPF); |
875 |
> |
// stringstream jzbcut; |
876 |
> |
// jzbcut << "((is_data&&("<<datajzb<<")>100)||(!is_data&&("<<mcjzb<<")>100))"; |
877 |
> |
// make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_aboveJZB100",doPF,true); |
878 |
> |
// make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_osof_aboveJZB100",doPF,true); |
879 |
> |
// make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_ee_aboveJZB100",doPF,true); |
880 |
> |
// make_kin_plot("mll",jzbcut.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_mm_aboveJZB100",doPF,true); |
881 |
> |
// stringstream jzbcut2; |
882 |
> |
// jzbcut2 << "((is_data&&("<<datajzb<<")>150)||(!is_data&&("<<mcjzb<<")>150))"; |
883 |
> |
// make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_aboveJZB150",doPF,true); |
884 |
> |
// make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_osof_aboveJZB150",doPF,true); |
885 |
> |
// make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_ee_aboveJZB150",doPF,true); |
886 |
> |
// make_kin_plot("mll",jzbcut2.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_mm_aboveJZB150",doPF,true); |
887 |
> |
// stringstream jzbcut3; |
888 |
> |
// jzbcut3 << "((is_data&&("<<datajzb<<")>50)||(!is_data&&("<<mcjzb<<")>50))"; |
889 |
> |
// make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_aboveJZB50",doPF,true); |
890 |
> |
// make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_osof_aboveJZB50",doPF,true,true); |
891 |
> |
// make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_ee_aboveJZB50",doPF,true); |
892 |
> |
// make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV]","mll_mm_aboveJZB50",doPF,true); |
893 |
> |
|
894 |
> |
// make_kin_plot("mll","met[4]>100",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ll} [GeV] (MET>100GeV)","mll_met100_ll",doPF,true); |
895 |
> |
//make_kin_plot("mll","met[4]>150&&id1==0",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{ee} [GeV] (MET>150GeV)","mll_met150_ee",doPF,true); |
896 |
> |
//make_kin_plot("mll","met[4]>150&&id1==1",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,nolog,"m_{#mu#mu} [GeV] (MET>150GeV)","mll_met150_mm",doPF,true); |
897 |
> |
} |
898 |
> |
|
899 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,0); |
900 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,50); |
901 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,80); |
902 |
> |
make_special_obs_pred_mll_plot(datajzb,mcjzb,100); |
903 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,150); |
904 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,200); |
905 |
> |
// make_special_obs_pred_mll_plot(datajzb,mcjzb,250); |
906 |
> |
|
907 |
> |
// make_JES_plot(cutmass&&cutOSSF&&basiccut,"_ossf"); |
908 |
> |
// make_JES_plot(cutmass&&cutOSOF&&basiccut,"_osof"); |
909 |
> |
|
910 |
> |
switch_overunderflow(false); |
911 |
|
} |
912 |
|
|
913 |
|
void make_comp_plot( string var, string xlabel, string filename, float jzbcut, string mcjzb, string datajzb, |
914 |
|
int nbins, float xmin, float xmax, bool log, |
915 |
|
float ymin=0, float ymax=0, bool leftJustified=false ) { |
916 |
< |
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- WATCH OUT: the argument in the function changed! |
916 |
> |
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- WATCH OUT: the argument in the function changed! |
917 |
|
|
918 |
|
TCut weightbackup=cutWeight;//backing up the correct weight (restoring below!) |
919 |
|
if(weightbackup==TCut("1.0")||weightbackup==TCut("1")) write_warning(__FUNCTION__,"WATCH OUT THE WEIGHT HAS POSSIBLY NOT BEEN RESET!!!! PLEASE CHANGE LINE "+any2string(__LINE__)); |
920 |
< |
if(var=="numVtx") cutWeight=TCut("1.0"); |
920 |
> |
//if(var=="numVtx") cutWeight=TCut("1.0"); |
921 |
|
TCut jzbData[]= { TCut(TString(datajzb+">"+any2string(jzbcut))),TCut(TString(datajzb+"<-"+any2string(jzbcut))) }; |
922 |
|
TCut jzbMC[] = { TCut(TString(mcjzb+">"+any2string(jzbcut))),TCut(TString(mcjzb+"<-"+any2string(jzbcut))) }; |
923 |
|
|
924 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- below: the next ~20 lines changed! |
925 |
|
int nRegions=4; |
926 |
< |
if(!PlottingSetup::RestrictToMassPeak) { |
926 |
> |
if(!PlottingSetup::RestrictToMassPeak||!PlottingSetup::UseSidebandsForcJZB) { |
927 |
|
nRegions=2; |
928 |
|
} |
929 |
|
|
941 |
|
TCanvas *ccomp = new TCanvas("ccomp","Comparison plot",600,400); |
942 |
|
ccomp->SetLogy(log); |
943 |
|
TH1F *datahisto = allsamples.Draw("datahisto", var,nbins,xmin,xmax,xlabel,"events",kRegions[iregion]&&jzbData[ijzb],data,luminosity); |
944 |
< |
TH1F *lm4histo = signalsamples.Draw("lm4histo", var,nbins,xmin,xmax,xlabel,"events",kRegions[iregion]&&jzbData[ijzb],data,luminosity,signalsamples.FindSample("LM4")); |
944 |
> |
TH1F *lm3histo = signalsamples.Draw("lm3histo", var,nbins,xmin,xmax,xlabel,"events",kRegions[iregion]&&jzbMC[ijzb],data,luminosity,signalsamples.FindSample("LM3")); |
945 |
|
THStack mcstack = allsamples.DrawStack("mcstack",var,nbins,xmin,xmax,xlabel,"events",kRegions[iregion]&&jzbMC[ijzb], mc, luminosity); |
946 |
|
datahisto->SetMarkerSize(DataMarkerSize); |
947 |
|
if (ymax>ymin) datahisto->SetMaximum(ymax); |
948 |
< |
lm4histo->SetLineStyle(2); |
948 |
> |
lm3histo->SetLineStyle(2); |
949 |
|
datahisto->Draw("e1"); |
950 |
|
mcstack.Draw("same"); |
951 |
|
datahisto->Draw("same,e1"); |
952 |
< |
// lm4histo->Draw("hist,same"); |
952 |
> |
lm3histo->Draw("hist,same"); |
953 |
|
TLegend *kinleg = allsamples.allbglegend((sRegions[iregion]+(ijzb?"neg":"pos")).c_str()); |
954 |
|
if ( leftJustified ) { |
955 |
|
Float_t w = kinleg->GetX2()-kinleg->GetX1(); |
956 |
|
kinleg->SetX1(0.2); |
957 |
|
kinleg->SetX2(0.2+w); |
958 |
|
} |
959 |
< |
// kinleg->AddEntry(lm4histo,"LM4","l"); |
959 |
> |
kinleg->AddEntry(lm3histo,"LM3","l"); |
960 |
|
kinleg->Draw(); |
961 |
|
TText* write_variable = write_text(0.99,0.01,var); |
962 |
|
write_variable->SetTextAlign(31); |
965 |
|
CompleteSave(ccomp,"compare/JZBcut_at_"+any2string(jzbcut)+"/"+filename+"/"+filename+sRegions[iregion]+(ijzb?"neg":"pos")); |
966 |
|
delete datahisto; |
967 |
|
delete ccomp; |
968 |
< |
delete lm4histo; |
968 |
> |
delete lm3histo; |
969 |
|
} |
970 |
|
cutWeight=weightbackup; |
971 |
|
} |
977 |
|
|
978 |
|
// switch_overunderflow(true); // switching overflow/underflow bins on |
979 |
|
|
980 |
< |
|
980 |
> |
switch_overunderflow(true); |
981 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- the arguments changed |
982 |
|
for(int ijzb=0;ijzb<(int)jzb_cuts.size();ijzb++) { |
983 |
|
float jzbcut=jzb_cuts[ijzb]; // Comparison plots are done for this JZB cut |
984 |
|
float mll_low=50;float mll_high=170; |
985 |
|
if(!PlottingSetup::RestrictToMassPeak) { |
986 |
< |
mll_high=200; |
987 |
< |
mll_low=50; |
986 |
> |
mll_high=300; |
987 |
> |
mll_low=20; |
988 |
|
} |
989 |
< |
make_comp_plot("mll","m_{ll} [GeV]","mll",jzbcut,mcjzb,datajzb,30,mll_low,mll_high,false,0,16.); |
989 |
> |
make_comp_plot("pfJetGoodPt[0]/pfJetGoodPt[1]","pt_{j}^{1}/pt_{j}^{2}","j1j2ratio",jzbcut,mcjzb,datajzb,100,0,10,true); |
990 |
> |
make_comp_plot("TMath::Abs(pfJetDphiMet[0])","|#Delta#phi(jet1,MET)|","dphiJ1MET",jzbcut,mcjzb,datajzb,32,0,3.2,false,0,0,true); |
991 |
> |
|
992 |
> |
make_comp_plot("mll","m_{ll} [GeV]","mll",jzbcut,mcjzb,datajzb,56,mll_low,mll_high,false,0,16.); |
993 |
|
make_comp_plot("met[4]","pfMET [GeV]","pfmet",jzbcut,mcjzb,datajzb,18,0,360,false,0,16.); |
994 |
< |
make_comp_plot("pfJetGoodNum","#(jets)","njets",jzbcut,mcjzb,datajzb,10,0,10, false,0,35.); |
994 |
> |
make_comp_plot("pfJetGoodNum40","#(jets)","njets",jzbcut,mcjzb,datajzb,10,0,10, false,0,35.); |
995 |
> |
make_comp_plot("pfJetGoodNumBtag","#(b-jets)","nBjets",jzbcut,mcjzb,datajzb,10,0,10, false,0,35.); |
996 |
|
make_comp_plot("pt","Z p_{T} [GeV]","Zpt",jzbcut,mcjzb,datajzb,26,0,525,false,0.,21.); |
997 |
< |
make_comp_plot("numVtx","#(prim. vertices)","nvtx",jzbcut,mcjzb,datajzb,20,0.,20.,false,0,16.); |
997 |
> |
make_comp_plot("numVtx","#(prim. vertices)","nvtx",jzbcut,mcjzb,datajzb,40,0.,40.,false,0,16.); |
998 |
|
make_comp_plot("TMath::Abs(dphi)","#Delta#phi(leptons)","dphilep",jzbcut,mcjzb,datajzb,10,0.,3.1415,false,0,16.,true); |
999 |
|
make_comp_plot("TMath::Abs(dphi_sumJetVSZ[1])","#Delta#phi(Z,jets)","dphiZjets",jzbcut,mcjzb,datajzb,10,0.,3.1415,false,0,16.,true); |
1000 |
+ |
make_comp_plot("eta1","#eta_1","eta1",jzbcut,mcjzb,datajzb,10,0.,2.5,false,0,16.); |
1001 |
+ |
make_comp_plot("eta2","#eta_2","eta2",jzbcut,mcjzb,datajzb,10,0.,2.5,false,0,16.); |
1002 |
|
} |
1003 |
|
|
1004 |
|
switch_overunderflow(false); // switching overflow/underflow bins off |
1197 |
|
// the line above is not necessary anymore as we're now looking at a prediction without Z+Jets, and not multiplied with (1.0/3) |
1198 |
|
TF1 *ttbarlogpar = do_logpar_fit_to_plot(Tprediction); |
1199 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
1200 |
< |
if(PlottingSetup::RestrictToMassPeak) ttbarlogpar->SetParameter(0,1.0/3*ttbarlogpar->GetParameter(0));//correcting for the fact that we didn't multiply with (1.0/3); |
1200 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) ttbarlogpar->SetParameter(0,1.0/3*ttbarlogpar->GetParameter(0));//correcting for the fact that we didn't multiply with (1.0/3); |
1201 |
|
|
1202 |
|
|
1203 |
|
TF1 *ttbarlogparP = new TF1("ttbarlogparP",LogParabolaP,0,(prediction->GetXaxis()->GetBinLowEdge(prediction->GetNbinsX())+prediction->GetXaxis()->GetBinWidth(prediction->GetNbinsX())),8); |
1294 |
|
|
1295 |
|
void do_prediction_plot(string jzb, TCanvas *globalcanvas, float high, int use_data, bool overlay_signal = false,string subdir="" ) |
1296 |
|
{ |
1297 |
< |
// switch_overunderflow(true); |
1297 |
> |
|
1298 |
|
bool is_data=false; |
1299 |
|
bool use_signal=false; |
1300 |
|
if(use_data==1) is_data=true; |
1301 |
|
if(use_data==2) use_signal=true; |
1302 |
< |
int nbins=50;//100; |
1303 |
< |
if(is_data) nbins=50; |
1302 |
> |
int nbins=int(high/10);//100; |
1303 |
> |
if(is_data) nbins=int(high/10); |
1304 |
|
float low=0; |
1305 |
< |
float hi=500; |
1305 |
> |
float hi=high; |
1306 |
> |
|
1307 |
> |
stringstream cutpositiveS; |
1308 |
> |
cutpositiveS << "(" << jzb << ">0)"; |
1309 |
> |
TCut cutpositive(cutpositiveS.str().c_str()); |
1310 |
> |
stringstream cutnegativeS; |
1311 |
> |
cutnegativeS << "(" << jzb << "<0)"; |
1312 |
> |
TCut cutnegative(cutnegativeS.str().c_str()); |
1313 |
> |
|
1314 |
|
|
1315 |
|
TH1F *blankback = new TH1F("blankback","blankback",int(high/10),0,high); |
1316 |
< |
TH1F *RcorrJZBeemm = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1317 |
< |
TH1F *LcorrJZBeemm = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1318 |
< |
TH1F *RcorrJZBem = allsamples.Draw("RcorrJZBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1319 |
< |
TH1F *LcorrJZBem = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1316 |
> |
TH1F *RcorrJZBeemm = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1317 |
> |
TH1F *LcorrJZBeemm = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1318 |
> |
TH1F *RcorrJZBem = allsamples.Draw("RcorrJZBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1319 |
> |
TH1F *LcorrJZBem = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1320 |
|
|
1321 |
|
blankback->GetXaxis()->SetTitle(RcorrJZBeemm->GetXaxis()->GetTitle()); |
1322 |
|
blankback->GetYaxis()->SetTitle(RcorrJZBeemm->GetYaxis()->GetTitle()); |
1331 |
|
|
1332 |
|
TH1F *RcorrJZBeemmNoS; |
1333 |
|
|
1334 |
< |
//these are for the ratio |
1335 |
< |
|
1336 |
< |
TH1F *JRcorrJZBeemm = allsamples.Draw("JRcorrJZBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1337 |
< |
TH1F *JLcorrJZBeemm = allsamples.Draw("JLcorrJZBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1338 |
< |
TH1F *JRcorrJZBem = allsamples.Draw("JRcorrJZBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
976 |
< |
TH1F *JLcorrJZBem = allsamples.Draw("JLcorrJZBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1334 |
> |
//these are for the ratio |
1335 |
> |
TH1F *JRcorrJZBeemm = allsamples.Draw("JRcorrJZBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1336 |
> |
TH1F *JLcorrJZBeemm = allsamples.Draw("JLcorrJZBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1337 |
> |
TH1F *JRcorrJZBem = allsamples.Draw("JRcorrJZBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1338 |
> |
TH1F *JLcorrJZBem = allsamples.Draw("JLcorrJZBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&cutmass&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1339 |
|
|
1340 |
|
TH1F *JRcorrJZBSBem; |
1341 |
|
TH1F *JLcorrJZBSBem; |
1342 |
|
TH1F *JRcorrJZBSBeemm; |
1343 |
|
TH1F *JLcorrJZBSBeemm; |
1344 |
|
|
1345 |
< |
if(use_data==2 || overlay_signal) RcorrJZBeemmNoS = allsamples.Draw("RcorrJZBeemmNoS",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,false); |
1345 |
> |
if(use_data==2 || overlay_signal) RcorrJZBeemmNoS = allsamples.Draw("RcorrJZBeemmNoS",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,false); |
1346 |
|
|
1347 |
|
|
1348 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1349 |
< |
RcorrJZBSBem = allsamples.Draw("RcorrJZBSBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1350 |
< |
LcorrJZBSBem = allsamples.Draw("LcorrJZBSBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1351 |
< |
RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1352 |
< |
LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1348 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
1349 |
> |
RcorrJZBSBem = allsamples.Draw("RcorrJZBSBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1350 |
> |
LcorrJZBSBem = allsamples.Draw("LcorrJZBSBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1351 |
> |
RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1352 |
> |
LcorrJZBSBeemm = allsamples.Draw("LcorrJZBSBeemm",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1353 |
|
|
1354 |
|
//these are for the ratio |
1355 |
< |
JRcorrJZBSBem = allsamples.Draw("JRcorrJZBSBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1356 |
< |
JLcorrJZBSBem = allsamples.Draw("JLcorrJZBSBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1357 |
< |
JRcorrJZBSBeemm = allsamples.Draw("JRcorrJZBSBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1358 |
< |
JLcorrJZBSBeemm = allsamples.Draw("JLcorrJZBSBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1355 |
> |
JRcorrJZBSBem = allsamples.Draw("JRcorrJZBSBem",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1356 |
> |
JLcorrJZBSBem = allsamples.Draw("JLcorrJZBSBem",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
1357 |
> |
JRcorrJZBSBeemm = allsamples.Draw("JRcorrJZBSBeemm",jzb.c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutpositive&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1358 |
> |
JLcorrJZBSBeemm = allsamples.Draw("JLcorrJZBSBeemm",("-"+jzb).c_str(),PlottingSetup::global_ratio_binning, "JZB [GeV]", "events", cutnegative&&sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
1359 |
|
} |
1360 |
|
|
1361 |
|
TH1F *lm4RcorrJZBeemm; |
1362 |
< |
if(overlay_signal || use_data == 2 || use_data == 1) lm4RcorrJZBeemm = allsamples.Draw("lm4RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,is_data, luminosity,allsamples.FindSample("LM")); |
1362 |
> |
if(overlay_signal || use_data == 2 || use_data == 1) lm4RcorrJZBeemm = allsamples.Draw("lm4RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutpositive&&cutmass&&cutOSSF&&cutnJets,is_data, luminosity,allsamples.FindSample("LM")); |
1363 |
|
|
1364 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- prediction changed. |
1365 |
|
|
1372 |
|
TH1F *BpredSys = new TH1F("Bpredsys","Bpredsys",PlottingSetup::global_ratio_binning.size()-1,&PlottingSetup::global_ratio_binning[0]); |
1373 |
|
ClearHisto(BpredSys); |
1374 |
|
|
1375 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1375 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
1376 |
|
Bpred->Add(RcorrJZBem,1.0/3.); |
1377 |
|
Bpred->Add(LcorrJZBem,-1.0/3.); |
1378 |
|
Bpred->Add(RcorrJZBSBem,1.0/3.); |
1423 |
|
SQRT(BpredSys); |
1424 |
|
BpredSys->Divide(JBpred); |
1425 |
|
|
1064 |
– |
|
1426 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- prediction changed |
1427 |
|
TH1F *Tpred = (TH1F*)RcorrJZBem->Clone("Bpred"); |
1428 |
|
Tpred->Add(LcorrJZBem,-1.0); |
1429 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1429 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
1430 |
|
Tpred->Add(RcorrJZBSBem,1.0); |
1431 |
|
Tpred->Add(LcorrJZBSBem,-1.0); |
1432 |
|
Tpred->Add(RcorrJZBSBeemm,1.0); |
1475 |
|
Bpred->Draw("hist,same"); |
1476 |
|
//analytical_function[0]->Draw("same"); analytical_function[1]->Draw("same");analytical_function[2]->Draw("same"); |
1477 |
|
RcorrJZBeemm->Draw("e1x0,same");//HAVE IT ON TOP! |
1478 |
< |
lm4RcorrJZBeemm->Draw("hist,same"); |
1478 |
> |
//lm4RcorrJZBeemm->Draw("hist,same"); |
1479 |
|
legBpred->AddEntry(RcorrJZBeemm,"observed","p"); |
1480 |
|
legBpred->AddEntry(Bpred,"predicted","l"); |
1481 |
|
// legBpred->AddEntry(analytical_function[1],"predicted fit","l"); |
1482 |
|
// legBpred->AddEntry(analytical_function[2],"stat. uncert.","l"); |
1483 |
< |
legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1483 |
> |
// legBpred->AddEntry(lm4RcorrJZBeemm,(allsamples.collection[allsamples.FindSample("LM")[0]].samplename).c_str(),"l"); |
1484 |
|
legBpred->Draw(); |
1485 |
|
DrawPrelim(); |
1486 |
|
|
1490 |
|
Bpred->SetLineWidth(2); |
1491 |
|
predcomppad->cd(); |
1492 |
|
predcomppad->SetLogy(1); |
1132 |
– |
|
1493 |
|
TH1F *jzbnegative = (TH1F*)LcorrJZBeemm->Clone("jzbnegative"); |
1494 |
|
TH1F *sidebandsemu = (TH1F*)Bpred->Clone("sidebandsemu"); |
1495 |
|
sidebandsemu->Add(jzbnegative,-1); |
1511 |
|
// lm4RcorrJZBeemm->SetLineColor(kOrange+1); |
1512 |
|
lm4RcorrJZBeemm->SetLineWidth(2); |
1513 |
|
//lm4RcorrJZBeemm->SetLineWidth(2); // paper style. overruled. |
1514 |
< |
lm4RcorrJZBeemm->Draw("histo,same"); |
1514 |
> |
// lm4RcorrJZBeemm->Draw("histo,same"); |
1515 |
|
DrawPrelim(); |
1516 |
|
TLegend *speciallegBpred = make_legend("",0.45,0.55); |
1517 |
|
//TLegend *speciallegBpred = make_legend("",0.35,0.55); // paper style. overruled. |
1518 |
|
speciallegBpred->AddEntry(RcorrJZBeemm,"Data","pl"); |
1519 |
|
speciallegBpred->AddEntry(Bpred,"Total background","l"); |
1520 |
|
speciallegBpred->AddEntry(jzbnegative,"JZB<0 (data)","f"); |
1521 |
< |
if(PlottingSetup::RestrictToMassPeak) speciallegBpred->AddEntry(sidebandsemu,"Sidebands/e#mu (data)","f"); |
1521 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) speciallegBpred->AddEntry(sidebandsemu,"Sidebands/e#mu (data)","f"); |
1522 |
|
else speciallegBpred->AddEntry(sidebandsemu,"e#mu (data)","f"); |
1523 |
|
// speciallegBpred->AddEntry(lm4RcorrJZBeemmC,"LM4","l"); |
1524 |
< |
speciallegBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1524 |
> |
// speciallegBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1525 |
|
speciallegBpred->Draw(); |
1526 |
|
save_with_ratio(JRcorrJZBeemm,JBpred,predcomppad,subdir+"Bpred_Data_____PredictionComposition",true,true,"data/pred",BpredSys); |
1527 |
|
|
1539 |
|
CompleteSave(specialcanv,subdir+"Bpred_Data_____PredictionCompositioninMC"); |
1540 |
|
Bpred->SetLineWidth((int)CurrentBpredLineWidth); |
1541 |
|
|
1542 |
+ |
|
1543 |
+ |
//for(int i=1;i<=Bpred->GetNbinsX();i++) cout << Bpred->GetBinLowEdge(i) << ";" << Bpred->GetBinLowEdge(i)+Bpred->GetBinWidth(i) << ";;" << RcorrJZBeemm->GetBinContent(i) << ";" << LcorrJZBeemm->GetBinContent(i) << ";" << RcorrJZBem->GetBinContent(i) << ";" << LcorrJZBem->GetBinContent(i) << endl; |
1544 |
+ |
|
1545 |
|
delete speciallegBpred; |
1546 |
|
delete Zjetspred; |
1547 |
|
delete TTbarpred; |
1557 |
|
legBpred->AddEntry(Bpred,"MC predicted","l"); |
1558 |
|
if(versok) legBpred->AddEntry((TObject*)0,"",""); // Just for alignment // causes seg fault on root v5.18 |
1559 |
|
if(versok) legBpred->AddEntry((TObject*)0,"",""); // causes seg fault on root v5.18 |
1560 |
< |
if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1560 |
> |
// if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1561 |
|
legBpred->Draw(); |
1562 |
|
DrawMCPrelim(); |
1563 |
|
Bpredsaveas="Bpred_MC"; |
1589 |
|
|
1590 |
|
RcorrJZBeemmNoS->SetLineStyle(2); |
1591 |
|
legBpred2->AddEntry(RcorrJZBeemmNoS,"MC B","l"); |
1592 |
< |
legBpred2->AddEntry(lm4RcorrJZBeemm,"MC S","l"); |
1592 |
> |
// legBpred2->AddEntry(lm4RcorrJZBeemm,"MC S","l"); |
1593 |
|
legBpred2->Draw(); |
1594 |
|
RcorrJZBeemmNoS->SetLineColor(TColor::GetColor("#61210B")); |
1595 |
|
RcorrJZBeemmNoS->Draw("histo,same"); |
1606 |
|
string ytitle("ratio"); |
1607 |
|
if ( use_data==1 ) ytitle = "data/pred"; |
1608 |
|
//save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,Bpredsaveas,true,use_data!=1,ytitle); |
1609 |
< |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,subdir+Bpredsaveas,true,true,ytitle,BpredSys);//not extending the y range anymore up to 4 |
1609 |
> |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,subdir+Bpredsaveas,true,false,ytitle,BpredSys);//not extending the y range anymore up to 4 |
1610 |
> |
|
1611 |
|
|
1612 |
|
|
1613 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
1614 |
|
// The part below is meaningless for the offpeak analysis (it's a comparison of the different estimates but there is but one estimate!) |
1615 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1615 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
1616 |
|
TH1F *Bpredem = (TH1F*)LcorrJZBeemm->Clone("Bpredem"); |
1617 |
|
Bpredem->Add(RcorrJZBem); |
1618 |
|
Bpredem->Add(LcorrJZBem,-1); |
1667 |
|
legBpredc->AddEntry(Bpredem,"MC OFZP","l"); |
1668 |
|
legBpredc->AddEntry(BpredSBem,"MC OFSB","l"); |
1669 |
|
legBpredc->AddEntry(BpredSBeemm,"MC SFSB","l"); |
1670 |
< |
if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1670 |
> |
// if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1671 |
|
legBpredc->Draw(); |
1672 |
|
CompleteSave(globalcanvas,subdir+"Bpred_MCwithS_comparison"); |
1673 |
|
} |
1691 |
|
delete blankback; |
1692 |
|
|
1693 |
|
delete BpredSys; |
1694 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1694 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
1695 |
|
delete RcorrJZBSBem; |
1696 |
|
delete LcorrJZBSBem; |
1697 |
|
delete RcorrJZBSBeemm; |
1703 |
|
delete JLcorrJZBSBeemm; |
1704 |
|
} |
1705 |
|
if(overlay_signal || use_data==2) delete lm4RcorrJZBeemm; |
1342 |
– |
switch_overunderflow(false); |
1706 |
|
} |
1707 |
|
|
1708 |
|
void do_prediction_plots(string mcjzb, string datajzb, float DataSigma, float MCSigma, bool overlay_signal ) { |
1709 |
+ |
switch_overunderflow(true); |
1710 |
|
TCanvas *globalcanvas = new TCanvas("globalcanvas","Prediction Canvas"); |
1711 |
|
do_prediction_plot(datajzb,globalcanvas,jzbHigh ,data,overlay_signal); |
1712 |
|
if ( !PlottingSetup::Approved ) { |
1715 |
|
} else { |
1716 |
|
write_info(__FUNCTION__,"You set approved to true, therefore not producing prediction/observation plots for MC with and without signal."); |
1717 |
|
} |
1718 |
< |
} |
1719 |
< |
|
1356 |
< |
void do_ratio_plot(int is_data,vector<float> binning, string jzb, TCanvas *can, float high=-9999) { |
1357 |
< |
bool do_data=0; |
1358 |
< |
bool dosignal=0; |
1359 |
< |
if(is_data==1) do_data=1; |
1360 |
< |
if(is_data==2) dosignal=1; |
1361 |
< |
TH1F *RcorrJZBeemm = allsamples.Draw("RcorrJZBeemm",jzb.c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,do_data, luminosity,dosignal); |
1362 |
< |
TH1F *LcorrJZBeemm = allsamples.Draw("LcorrJZBeemm",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,do_data, luminosity,dosignal); |
1363 |
< |
TH1F *RcorrJZBem = allsamples.Draw("RcorrJZBem",jzb.c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,do_data, luminosity,dosignal); |
1364 |
< |
TH1F *LcorrJZBem = allsamples.Draw("LcorrJZBem",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,do_data, luminosity,dosignal); |
1365 |
< |
|
1366 |
< |
TH1F *RcorrJZBSBem; |
1367 |
< |
TH1F *LcorrJZBSBem; |
1368 |
< |
TH1F *RcorrJZBSBeemm; |
1369 |
< |
TH1F *LcorrJZBSbeemm; |
1370 |
< |
|
1371 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1372 |
< |
RcorrJZBSBem = allsamples.Draw("RcorrJZBSbem",jzb.c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,do_data, luminosity,dosignal); |
1373 |
< |
LcorrJZBSBem = allsamples.Draw("LcorrJZBSbem",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,do_data, luminosity,dosignal); |
1374 |
< |
RcorrJZBSBeemm = allsamples.Draw("RcorrJZBSbeemm",jzb.c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,do_data, luminosity,dosignal); |
1375 |
< |
LcorrJZBSbeemm = allsamples.Draw("LcorrJZBSbeemm",("-"+jzb).c_str(),binning, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,do_data, luminosity,dosignal); |
1376 |
< |
} |
1377 |
< |
|
1378 |
< |
|
1379 |
< |
|
1380 |
< |
|
1381 |
< |
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
1382 |
< |
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
1383 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
1384 |
< |
Bpred->Add(RcorrJZBem,1.0/3); |
1385 |
< |
Bpred->Add(LcorrJZBem,-1.0/3); |
1386 |
< |
Bpred->Add(RcorrJZBSBem,1.0/3); |
1387 |
< |
Bpred->Add(LcorrJZBSBem,-1.0/3); |
1388 |
< |
Bpred->Add(RcorrJZBSBeemm,1.0/3); |
1389 |
< |
Bpred->Add(LcorrJZBSbeemm,-1.0/3); |
1390 |
< |
} else { |
1391 |
< |
Bpred->Add(RcorrJZBem,1.0); |
1392 |
< |
Bpred->Add(LcorrJZBem,-1.0); |
1393 |
< |
} |
1394 |
< |
|
1395 |
< |
can->cd(); |
1396 |
< |
can->SetLogy(0); |
1397 |
< |
Bpred->SetLineColor(kRed); |
1398 |
< |
Bpred->SetStats(0); |
1399 |
< |
if(high>0) Bpred->GetXaxis()->SetRangeUser(0,high); |
1400 |
< |
TH1F *JZBratioforfitting=(TH1F*)RcorrJZBeemm->Clone("JZBratioforfitting"); |
1401 |
< |
JZBratioforfitting->Divide(Bpred); |
1402 |
< |
TGraphAsymmErrors *JZBratio = histRatio(RcorrJZBeemm,Bpred,is_data,binning,false); |
1403 |
< |
|
1404 |
< |
|
1405 |
< |
JZBratio->SetTitle(""); |
1406 |
< |
JZBratio->GetYaxis()->SetRangeUser(0.0,9.0); |
1407 |
< |
// if(is_data==1) JZBratio->GetXaxis()->SetRangeUser(0,jzbHigh ); |
1408 |
< |
|
1409 |
< |
TF1 *pol0 = new TF1("pol0","[0]",0,1000); |
1410 |
< |
TF1 *pol0d = new TF1("pol0","[0]",0,1000); |
1411 |
< |
// straightline_fit->SetParameter(0,1); |
1412 |
< |
JZBratioforfitting->Fit(pol0,"Q0R","",0,30); |
1413 |
< |
pol0d->SetParameter(0,pol0->GetParameter(0)); |
1414 |
< |
|
1415 |
< |
JZBratio->GetYaxis()->SetTitle("Observed/Predicted"); |
1416 |
< |
JZBratio->GetXaxis()->SetTitle("JZB [GeV]"); |
1417 |
< |
if ( high>0 ) JZBratio->GetXaxis()->SetRangeUser(0.0,high); |
1418 |
< |
JZBratio->GetYaxis()->SetNdivisions(519); |
1419 |
< |
JZBratio->GetYaxis()->SetRangeUser(0.0,4.0); |
1420 |
< |
JZBratio->GetYaxis()->CenterTitle(); |
1421 |
< |
JZBratio->GetXaxis()->CenterTitle(); |
1422 |
< |
JZBratio->SetMarkerSize(DataMarkerSize); |
1423 |
< |
JZBratio->Draw("AP"); |
1424 |
< |
/////---------------------------- |
1425 |
< |
TPaveText *writeresult = new TPaveText(0.15,0.78,0.49,0.91,"blNDC"); |
1426 |
< |
writeresult->SetFillStyle(4000); |
1427 |
< |
writeresult->SetFillColor(kWhite); |
1428 |
< |
writeresult->SetTextFont(42); |
1429 |
< |
writeresult->SetTextSize(0.03); |
1430 |
< |
writeresult->SetTextAlign(12); |
1431 |
< |
ostringstream jzb_agreement_data_text; |
1432 |
< |
jzb_agreement_data_text<< setprecision(2) << "mean =" << pol0->GetParameter(0) << " #pm " << setprecision(1) << pol0->GetParError(0); |
1433 |
< |
if(is_data==1) fitresultconstdata=pol0->GetParameter(0);// data |
1434 |
< |
if(is_data==0) fitresultconstmc=pol0->GetParameter(0); // monte carlo, no signal |
1435 |
< |
/* if(is_data) writeresult->AddText("Data closure test"); |
1436 |
< |
else writeresult->AddText("MC closure test"); |
1437 |
< |
*/ |
1438 |
< |
writeresult->AddText(jzb_agreement_data_text.str().c_str()); |
1439 |
< |
// writeresult->Draw("same"); |
1440 |
< |
// pol0d->Draw("same"); |
1441 |
< |
TF1 *topline = new TF1("","1.5",0,1000); |
1442 |
< |
TF1 *bottomline = new TF1("","0.5",0,1000); |
1443 |
< |
topline->SetLineColor(kBlue); |
1444 |
< |
topline->SetLineStyle(2); |
1445 |
< |
bottomline->SetLineColor(kBlue); |
1446 |
< |
bottomline->SetLineStyle(2); |
1447 |
< |
// topline->Draw("same"); |
1448 |
< |
// bottomline->Draw("same"); |
1449 |
< |
TF1 *oneline = new TF1("","1.0",0,1000); |
1450 |
< |
oneline->SetLineColor(kBlue); |
1451 |
< |
oneline->SetLineStyle(1); |
1452 |
< |
oneline->Draw("same"); |
1453 |
< |
TLegend *phony_leg = make_legend("ratio",0.6,0.55,false);//this line is just to have the default CMS Preliminary (...) on the canvas as well. |
1454 |
< |
if(is_data==1) DrawPrelim(); |
1455 |
< |
else DrawMCPrelim(); |
1456 |
< |
TLegend *leg = new TLegend(0.55,0.75,0.89,0.89); |
1457 |
< |
leg->SetTextFont(42); |
1458 |
< |
leg->SetTextSize(0.04); |
1459 |
< |
// if(is_data==1) leg->SetHeader("Ratio (data)"); |
1460 |
< |
// else leg->SetHeader("Ratio (MC)"); |
1461 |
< |
|
1462 |
< |
TString MCtitle("MC "); |
1463 |
< |
if (is_data==1) MCtitle = ""; |
1464 |
< |
|
1465 |
< |
leg->SetFillStyle(4000); |
1466 |
< |
leg->SetFillColor(kWhite); |
1467 |
< |
leg->SetTextFont(42); |
1468 |
< |
// leg->AddEntry(topline,"+20\% sys envelope","l"); |
1469 |
< |
leg->AddEntry(JZBratio,MCtitle+"obs / "+MCtitle+"pred","p"); |
1470 |
< |
leg->AddEntry(oneline,"ratio = 1","l"); |
1471 |
< |
// leg->AddEntry(pol0d,"fit in [0,30] GeV","l"); |
1472 |
< |
// leg->AddEntry(bottomline,"#pm50% envelope","l"); |
1473 |
< |
|
1474 |
< |
|
1475 |
< |
//leg->Draw("same"); // no longer drawing legend |
1476 |
< |
|
1477 |
< |
if(is_data==1) CompleteSave(can, "jzb_ratio_data"); |
1478 |
< |
if(is_data==0) CompleteSave(can, "jzb_ratio_mc"); |
1479 |
< |
if(is_data==2) CompleteSave(can, "jzb_ratio_mc_BandS");//special case, MC with signal! |
1480 |
< |
|
1481 |
< |
delete RcorrJZBeemm; |
1482 |
< |
delete LcorrJZBeemm; |
1483 |
< |
delete RcorrJZBem; |
1484 |
< |
delete LcorrJZBem; |
1485 |
< |
|
1486 |
< |
delete RcorrJZBSBem; |
1487 |
< |
delete LcorrJZBSBem; |
1488 |
< |
delete RcorrJZBSBeemm; |
1489 |
< |
delete LcorrJZBSbeemm; |
1490 |
< |
} |
1491 |
< |
|
1492 |
< |
void do_ratio_plots(string mcjzb,string datajzb,vector<float> ratio_binning) { |
1493 |
< |
TCanvas *globalc = new TCanvas("globalc","Ratio Plot Canvas"); |
1494 |
< |
globalc->SetLogy(0); |
1495 |
< |
|
1496 |
< |
do_ratio_plot(mc,ratio_binning,mcjzb,globalc, jzbHigh ); |
1497 |
< |
do_ratio_plot(data,ratio_binning,datajzb,globalc, jzbHigh ); |
1498 |
< |
do_ratio_plot(mcwithsignal,ratio_binning,mcjzb,globalc, jzbHigh ); |
1718 |
> |
delete globalcanvas; |
1719 |
> |
switch_overunderflow(false); |
1720 |
|
} |
1721 |
|
|
1722 |
|
string give_jzb_expression(float peak, int type) { |
1908 |
|
datahisto->Draw("same,e1"); |
1909 |
|
|
1910 |
|
TLegend *leg; |
1911 |
< |
if(is_OF(cut) && is_ZP(cut)) leg = allsamples.allbglegend("OFZP",datahisto); |
1912 |
< |
else if(!is_OF(cut) && is_ZP(cut)) leg = allsamples.allbglegend("SFZP",datahisto); |
1913 |
< |
else if( is_OF(cut) && !is_ZP(cut)) leg = allsamples.allbglegend("OFSB",datahisto); |
1914 |
< |
else if(!is_OF(cut) && !is_ZP(cut)) leg = allsamples.allbglegend("SFSB",datahisto); |
1915 |
< |
else { |
1916 |
< |
std::cerr << "Unable to decode cut: " << cut.GetTitle() << std::endl; |
1917 |
< |
exit(-1); |
1918 |
< |
} |
1911 |
> |
if (!PlottingSetup::RestrictToMassPeak||!PlottingSetup::UseSidebandsForcJZB) { |
1912 |
> |
if(is_OF(cut)) leg = allsamples.allbglegend("Opposite flavor",datahisto); |
1913 |
> |
else leg = allsamples.allbglegend("Same flavor",datahisto); |
1914 |
> |
} else { |
1915 |
> |
if(is_OF(cut) && is_ZP(cut)) leg = allsamples.allbglegend("OFZP",datahisto); |
1916 |
> |
else if(!is_OF(cut) && is_ZP(cut)) leg = allsamples.allbglegend("SFZP",datahisto); |
1917 |
> |
else if( is_OF(cut) && !is_ZP(cut)) leg = allsamples.allbglegend("OFSB",datahisto); |
1918 |
> |
else if(!is_OF(cut) && !is_ZP(cut)) leg = allsamples.allbglegend("SFSB",datahisto); |
1919 |
> |
else { |
1920 |
> |
std::cerr << "Unable to decode cut: " << cut.GetTitle() << std::endl; |
1921 |
> |
exit(-1); |
1922 |
> |
} |
1923 |
> |
} |
1924 |
|
leg->Draw(); |
1925 |
|
string write_cut = decipher_cut(cut,""); |
1926 |
|
TText *writeline1 = write_cut_on_canvas(write_cut.c_str()); |
1971 |
|
draw_pure_jzb_histo(cutOSSF&&cutnJets&&cutmass&&"id1==1",datajzb,mcjzb,"Dibosons/mm/jzb_OS_SFZP",dican,binning); |
1972 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass&&"id1==0",datajzb,mcjzb,"Dibosons/ee/jzb_OS_OFZP",dican,binning); |
1973 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass&&"id1==1",datajzb,mcjzb,"Dibosons/mm/jzb_OS_OFZP",dican,binning); |
1974 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_SFSB",dican,binning); |
1975 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_OFSB",dican,binning); |
1974 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_SFSB",dican,binning); |
1975 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_OFSB",dican,binning); |
1976 |
|
|
1977 |
|
draw_pure_jzb_histo(cutOSSF&&cutnJets&&cutmass,datajzb,mcjzb,"Dibosons/jzb_OS_SFZP_coarse",dican,coarse_binning); |
1978 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass,datajzb,mcjzb,"Dibosons/jzb_OS_OFZP_coarse",dican,coarse_binning); |
1979 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_SFSB_coarse",dican,coarse_binning); |
1980 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_OFSB_coarse",dican,coarse_binning); |
1979 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_SFSB_coarse",dican,coarse_binning); |
1980 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"Dibosons/jzb_OS_OFSB_coarse",dican,coarse_binning); |
1981 |
|
|
1982 |
|
delete dican; |
1983 |
|
} |
1984 |
|
|
1985 |
|
|
1986 |
|
void diboson_plots(string mcjzb, string datajzb,vector<float> ratio_binning) { |
1987 |
+ |
switch_overunderflow(true); |
1988 |
|
vector<int> SamplesToBeModified = allsamples.FindSampleBySampleName("WW/WZ/ZZ"); |
1989 |
|
|
1990 |
|
if(SamplesToBeModified.size()==0 || SamplesToBeModified[0]==-1) { |
2024 |
|
dout << " Reset xs for sample " << (allsamples.collection)[SamplesToBeModified[i]].samplename << " from " << Upxs << " to " << (allsamples.collection)[SamplesToBeModified[i]].xs << " (by a factor of " << stretchfactor << ") and reset the correct name (from " << Upname << ")" << endl; |
2025 |
|
|
2026 |
|
} |
2027 |
+ |
// switch_overunderflow(false); |
2028 |
+ |
} |
2029 |
+ |
|
2030 |
+ |
|
2031 |
+ |
void draw_normalized_data_vs_data_histo(TCut cut1, TCut cut2, string variable, string legentry1, string legentry2, string savename, TCanvas *can,vector<float> binning) { |
2032 |
+ |
TPad *jzbpad = new TPad("jzbpad","jzbpad",0,0,1,1); |
2033 |
+ |
jzbpad->cd(); |
2034 |
+ |
jzbpad->SetLogy(1); |
2035 |
+ |
string xlabel="JZB [GeV]"; |
2036 |
+ |
|
2037 |
+ |
TH1F *datahisto1 = allsamples.Draw("datahisto1",variable,binning, xlabel, "events",cut1,data,luminosity); |
2038 |
+ |
datahisto1->SetLineColor(kRed); |
2039 |
+ |
datahisto1->SetMarkerColor(kRed); |
2040 |
+ |
TH1F *datahisto2 = allsamples.Draw("datahisto2",variable,binning, xlabel, "events",cut2,data,luminosity); |
2041 |
+ |
datahisto2->SetLineColor(kBlue); |
2042 |
+ |
datahisto2->SetMarkerColor(kBlue); |
2043 |
+ |
|
2044 |
+ |
datahisto2->SetMarkerSize(DataMarkerSize); |
2045 |
+ |
datahisto1->DrawNormalized("e1"); |
2046 |
+ |
datahisto2->DrawNormalized("histo,same"); |
2047 |
+ |
datahisto1->DrawNormalized("same,e1"); |
2048 |
+ |
|
2049 |
+ |
TLegend *leg = make_legend(); |
2050 |
+ |
leg->AddEntry(datahisto1,legentry1.c_str()); |
2051 |
+ |
leg->AddEntry(datahisto2,legentry2.c_str()); |
2052 |
+ |
leg->Draw(); |
2053 |
+ |
|
2054 |
+ |
save_with_ratio(datahisto1,datahisto2,jzbpad->cd(),("jzb/"+savename)); |
2055 |
|
|
2056 |
+ |
datahisto1->Delete(); |
2057 |
+ |
datahisto2->Delete(); |
2058 |
|
} |
2059 |
+ |
|
2060 |
+ |
|
2061 |
|
void jzb_plots(string mcjzb, string datajzb,vector<float> ratio_binning) { |
2062 |
+ |
switch_overunderflow(true); |
2063 |
|
TCanvas *can = new TCanvas("can","JZB Plots Canvas"); |
2064 |
|
float max=jzbHigh ; |
2065 |
|
float min=-120; |
2080 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass&&"id1==0",datajzb,mcjzb,"ee/jzb_OS_OFZP",can,binning); |
2081 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass&&"id1==1",datajzb,mcjzb,"mm/jzb_OS_OFZP",can,binning); |
2082 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
2083 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_SFSB",can,binning); |
2084 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_OFSB",can,binning); |
2083 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_SFSB",can,binning); |
2084 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_OFSB",can,binning); |
2085 |
> |
draw_normalized_data_vs_data_histo(cutOSOF&&cutnJets&&cutmass&&"id1==0",cutOSOF&&cutnJets&&cutmass&&"id1==1",datajzb,"ee","mm","jzb_ee_vs_mm",can,binning); |
2086 |
> |
draw_normalized_data_vs_data_histo(cutOSOF&&cutnJets&&cutmass&&"id1==0",cutOSOF&&cutnJets&&cutmass&&"id1==1",datajzb,"ee","mm","jzb_ee_vs_mm_coarse",can,coarse_binning); |
2087 |
> |
draw_normalized_data_vs_data_histo(cutOSOF&&cutnJets&&cutmass&&"id1==0",cutOSOF&&cutnJets&&cutmass&&"id1==1",datajzb,"ee","mm","jzb_ee_vs_mm_coarsest",can,coarsest_binning); |
2088 |
> |
|
2089 |
|
} |
2090 |
|
|
2091 |
|
draw_pure_jzb_histo(cutOSSF&&cutnJets&&cutmass,datajzb,mcjzb,"jzb_OS_SFZP_coarse",can,coarse_binning); |
2092 |
|
if ( !PlottingSetup::Approved ) { |
2093 |
|
draw_pure_jzb_histo(cutOSOF&&cutnJets&&cutmass,datajzb,mcjzb,"jzb_OS_OFZP_coarse",can,coarse_binning); |
2094 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
2095 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_SFSB_coarse",can,coarse_binning); |
2096 |
< |
if(PlottingSetup::RestrictToMassPeak) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_OFSB_coarse",can,coarse_binning); |
2095 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSSF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_SFSB_coarse",can,coarse_binning); |
2096 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) draw_pure_jzb_histo(cutOSOF&&cutnJets&&sidebandcut,datajzb,mcjzb,"jzb_OS_OFSB_coarse",can,coarse_binning); |
2097 |
|
} |
2098 |
|
delete can; |
2099 |
+ |
switch_overunderflow(false); |
2100 |
|
} |
2101 |
|
|
2102 |
|
|
2146 |
|
TCanvas *yica = new TCanvas("yica","yield canvas"); |
2147 |
|
|
2148 |
|
int nRegions=4; |
2149 |
< |
if(!PlottingSetup::RestrictToMassPeak) nRegions=2; |
2149 |
> |
if(!PlottingSetup::RestrictToMassPeak||!PlottingSetup::UseSidebandsForcJZB) nRegions=2; |
2150 |
|
string tsRegions[] = {"SFZP","OFZP","SFSB","OFSB"}; |
2151 |
|
string posneg[] = {"pos","neg"}; |
2152 |
|
TCut tkRegions[] = {cutOSSF&&cutnJets&&cutmass,cutOSOF&&cutnJets&&cutmass,cutOSSF&&cutnJets&&sidebandcut,cutOSOF&&cutnJets&&sidebandcut}; |
2437 |
|
TCanvas *cancorr = new TCanvas("cancorr","Canvas for Response Correction"); |
2438 |
|
cancorr->SetLogz(); |
2439 |
|
cancorr->SetRightMargin(0.13); |
2440 |
< |
TCut zptforresponsepresentation("pt<600"&&cutmass&&cutOSSF&&"((sumJetPt[1]/pt)<5.0)"&&SpecialCut&&passtrig); |
2440 |
> |
TCut zptforresponsepresentation(Restrmasscut&&SpecialCut&&passtrig); |
2441 |
> |
|
2442 |
|
if(PlottingSetup::DoBTag) zptforresponsepresentation=zptforresponsepresentation&&PlottingSetup::bTagRequirement; |
2443 |
|
TH2F *niceresponseplotd = new TH2F("niceresponseplotd","",100,0,600,100,0,5); |
2444 |
+ |
niceresponseplotd->Sumw2(); |
2445 |
+ |
TH2F* emuResponse = (TH2F*)niceresponseplotd->Clone("emuResponse"); |
2446 |
|
vector<int> SampleIndices=allsamples.FindSample(FindKeyword); |
2447 |
|
for(int iSample=0;iSample<(int)SampleIndices.size();iSample++) { |
2448 |
|
if((allsamples.collection)[SampleIndices[iSample]].is_data && !dodata) continue; |
2449 |
|
if((allsamples.collection)[SampleIndices[iSample]].is_data ==false && dodata) continue; |
2450 |
|
|
2451 |
|
dout << " Response correction : Using sample " << (allsamples.collection)[SampleIndices[iSample]].filename << " for " << FindKeyword << endl; |
2452 |
< |
(allsamples.collection)[SampleIndices[iSample]].events->Draw("sumJetPt[1]/pt:pt>>+niceresponseplotd",zptforresponsepresentation*cutWeight); |
2452 |
> |
(allsamples.collection)[SampleIndices[iSample]].events->Draw("sumJetPt[1]/pt:pt>>+niceresponseplotd",(zptforresponsepresentation&&cutOSSF)*cutWeight); |
2453 |
> |
(allsamples.collection)[SampleIndices[iSample]].events->Draw("sumJetPt[1]/pt:pt>>+emuResponse",(zptforresponsepresentation&&cutOSOF)*cutWeight); |
2454 |
|
} |
2455 |
< |
|
2455 |
> |
niceresponseplotd->Add(emuResponse,-1); |
2456 |
> |
|
2457 |
|
niceresponseplotd->SetStats(0); |
2458 |
|
niceresponseplotd->GetXaxis()->SetTitle("Z p_{T} [GeV]"); |
2459 |
|
niceresponseplotd->GetYaxis()->SetTitle("Response"); |
2461 |
|
niceresponseplotd->GetYaxis()->CenterTitle(); |
2462 |
|
niceresponseplotd->Draw("COLZ"); |
2463 |
|
TProfile * profd = (TProfile*)niceresponseplotd->ProfileX(); |
2464 |
+ |
profd->Rebin(2); |
2465 |
|
profd->SetMarkerSize(DataMarkerSize); |
2466 |
|
profd->Fit("pol0","","same,e1",100,400); |
2467 |
|
DrawPrelim(); |
2481 |
|
CompleteSave(cancorr,"ResponseCorrection/Response_Correction_Illustration_New_"+SaveAs); |
2482 |
|
delete cancorr; |
2483 |
|
delete niceresponseplotd; |
2484 |
+ |
delete profd; |
2485 |
|
return correction; |
2486 |
|
} |
2487 |
|
|
2594 |
|
configfile<<"\n\n"; |
2595 |
|
configfile<<"luminosity="<<luminosity<<";\n"; |
2596 |
|
configfile<<"RestrictToMassPeak="<<RestrictToMassPeak<<";//defines the type of analysis we're running\n"; |
2597 |
+ |
configfile<<"UseSidebandsForcJZB="<<UseSidebandsForcJZB<<";//tells us whether to use the sidebands or not\n"; |
2598 |
|
|
2599 |
|
configfile<<"\n\ncout << \"Configuration successfully loaded!\" << endl; \n \n } \n \n"; |
2600 |
|
|
2637 |
|
//in the case of the on peak analysis, we compare the 3 control regions to the real value |
2638 |
|
//in the case of the OFF peak analysis, we compare our control region to the real value |
2639 |
|
TCut weightbackup=cutWeight; |
2640 |
< |
// cutWeight="1.0"; |
2640 |
> |
switch_overunderflow(true); |
2641 |
> |
|
2642 |
> |
bool doPURW=false; |
2643 |
> |
|
2644 |
> |
|
2645 |
> |
if(!doPURW) { |
2646 |
> |
dout << "Not doing PU reweighting for ttbar closure test" << endl; |
2647 |
> |
cutWeight="1.0"; |
2648 |
> |
// Do it without PU re-weighting |
2649 |
> |
float MCPeakNoPU=0,MCPeakErrorNoPU=0,DataPeakNoPU=0,DataPeakErrorNoPU=0,MCSigma=0,DataSigma=0; |
2650 |
> |
stringstream resultsNoPU; |
2651 |
> |
stringstream noPUdatajzb; |
2652 |
> |
stringstream noPUmcjzb; |
2653 |
> |
|
2654 |
> |
stringstream mcjzbnoPU; |
2655 |
> |
find_peaks(MCPeakNoPU,MCPeakErrorNoPU, DataPeakNoPU, DataPeakErrorNoPU,resultsNoPU,true,noPUdatajzb,noPUmcjzb); |
2656 |
> |
mcjzb = noPUmcjzb.str(); |
2657 |
> |
} |
2658 |
> |
|
2659 |
> |
|
2660 |
|
float simulatedlumi = luminosity; //in pb please - adjust to your likings |
2661 |
|
|
2662 |
< |
TH1F *TZem = systsamples.Draw("TZem",mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2662 |
> |
TH1F *TZem = systsamples.Draw("TZem", mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2663 |
|
TH1F *nTZem = systsamples.Draw("nTZem","-"+mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2664 |
|
TH1F *TSem; |
2665 |
|
TH1F *nTSem; |
2666 |
< |
TH1F *TZeemm = systsamples.Draw("TZeemm",mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2666 |
> |
TH1F *TZeemm = systsamples.Draw("TZeemm", mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2667 |
|
TH1F *nTZeemm = systsamples.Draw("nTZeemm","-"+mcjzb,binning,"JZB [GeV]","events",cutmass&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2668 |
|
TH1F *TSeemm; |
2669 |
|
TH1F *nTSeemm; |
2670 |
|
|
2671 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2672 |
< |
TSem = systsamples.Draw("TSem",mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2673 |
< |
nTSem = systsamples.Draw("nTSem","-"+mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2674 |
< |
TSeemm = systsamples.Draw("TSeemm",mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2671 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2672 |
> |
TSem = systsamples.Draw("TSem", mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2673 |
> |
nTSem = systsamples.Draw("nTSem", "-"+mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSOF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2674 |
> |
TSeemm = systsamples.Draw("TSeemm", mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2675 |
|
nTSeemm = systsamples.Draw("nTSeemm","-"+mcjzb,binning,"JZB [GeV]","events",sidebandcut&&cutOSSF&&cutnJets,mc,simulatedlumi,systsamples.FindSample("TTJets")); |
2676 |
|
} |
2677 |
|
|
2678 |
|
TCanvas *tcan = new TCanvas("tcan","tcan"); |
2387 |
– |
|
2679 |
|
tcan->SetLogy(1); |
2680 |
|
|
2681 |
|
TZeemm->SetLineColor(kBlack); |
2684 |
|
TZem->SetMarkerColor(kRed); |
2685 |
|
|
2686 |
|
|
2687 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2687 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2688 |
|
TSem->SetLineColor(TColor::GetColor("#00A616")); |
2689 |
|
TSeemm->SetLineColor(kMagenta+2); |
2690 |
|
TSem->SetMarkerColor(TColor::GetColor("#00A616")); |
2698 |
|
TZeemm->GetXaxis()->SetRangeUser(-100,binning[binning.size()-1]); |
2699 |
|
histos.push_back(TZem); |
2700 |
|
histos.push_back(TZeemm); |
2701 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2701 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2702 |
|
TSeemm->GetXaxis()->SetRangeUser(-100,binning[binning.size()-1]); |
2703 |
|
TSem->GetXaxis()->SetRangeUser(-100,binning[binning.size()-1]); |
2704 |
|
histos.push_back(TSem); |
2705 |
|
histos.push_back(TSeemm); |
2706 |
|
} |
2707 |
< |
draw_all_ttbar_histos(tcan,histos,"histo",0.04); |
2707 |
> |
draw_all_ttbar_histos(tcan,histos,"histo",8); |
2708 |
|
|
2709 |
|
TLegend *leg = make_legend("MC t#bar{t}",0.6,0.65,false); |
2710 |
|
leg->AddEntry(TZeemm,"SFZP","l"); |
2711 |
|
leg->AddEntry(TZem,"OFZP","l"); |
2712 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2712 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2713 |
|
leg->AddEntry(TSeemm,"SFSB","l"); |
2714 |
|
leg->AddEntry(TSem,"OFSB","l"); |
2715 |
|
} |
2716 |
|
leg->Draw("same"); |
2717 |
|
DrawMCPrelim(simulatedlumi); |
2718 |
|
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_shape_comparison"); |
2719 |
+ |
|
2720 |
|
TH1F *TZemcopy = (TH1F*)TZem->Clone("TZemcopy"); |
2721 |
|
TH1F *TZeemmcopy = (TH1F*)TZeemm->Clone("TZeemmcopy"); |
2722 |
|
TH1F *TSeemmcopy; |
2723 |
|
TH1F *TSemcopy; |
2724 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2724 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2725 |
|
TSeemmcopy = (TH1F*)TSeemm->Clone("TSeemmcopy"); |
2726 |
|
TSemcopy = (TH1F*)TSem->Clone("TSemcopy"); |
2727 |
|
} |
2728 |
|
|
2729 |
|
TZem->Divide(TZeemm); |
2730 |
|
TZem->SetMarkerStyle(21); |
2731 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2731 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2732 |
|
TSem->Divide(TZeemm); |
2733 |
|
TSeemm->Divide(TZeemm); |
2734 |
|
TSem->SetMarkerStyle(24); |
2735 |
|
TSeemm->SetMarkerStyle(32); |
2736 |
< |
} |
2736 |
> |
} |
2737 |
|
|
2738 |
|
tcan->SetLogy(0); |
2739 |
|
TZem->GetYaxis()->SetRangeUser(0,2.5); |
2740 |
|
TZem->GetYaxis()->SetTitle("ratio"); |
2741 |
|
TZem->Draw(); |
2742 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2742 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2743 |
|
TSem->Draw("same"); |
2744 |
|
TSeemm->Draw("same"); |
2745 |
|
} |
2769 |
|
|
2770 |
|
TLegend *leg2 = make_legend("MC t#bar{t}",0.55,0.75,false); |
2771 |
|
leg2->AddEntry(TZem,"OFZP / SFZP","ple"); |
2772 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2772 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2773 |
|
leg2->AddEntry(TSeemm,"SFSB / SFZP","ple"); |
2774 |
|
leg2->AddEntry(TSem,"OFSB / SFZP","ple"); |
2775 |
|
} |
2782 |
|
DrawMCPrelim(simulatedlumi); |
2783 |
|
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_shape_comparison_ratio"); |
2784 |
|
|
2785 |
+ |
|
2786 |
+ |
if (0) { // Turn this off: we don't need this |
2787 |
|
|
2788 |
< |
///-------------- second part: only look at the quantity we actually care about! |
2789 |
< |
TH1F *leftsfzp = (TH1F*)nTZeemm->Clone("leftsfzp"); |
2790 |
< |
TH1F *rightsfzp = (TH1F*)TZeemmcopy->Clone("rightsfzp"); |
2791 |
< |
rightsfzp->Add(leftsfzp,-1); |
2792 |
< |
TH1F *leftofzp = (TH1F*)nTZem->Clone("leftofzp"); |
2793 |
< |
TH1F *rightofzp = (TH1F*)TZemcopy->Clone("rightofzp"); |
2794 |
< |
rightofzp->Add(leftofzp,-1); |
2795 |
< |
TH1F *leftofsb; |
2796 |
< |
TH1F *rightofsb; |
2797 |
< |
TH1F *leftsfsb; |
2798 |
< |
TH1F *rightsfsb; |
2799 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2800 |
< |
leftofsb = (TH1F*)nTSem->Clone("leftofsb"); |
2801 |
< |
rightofsb = (TH1F*)TSemcopy->Clone("rightofsb"); |
2802 |
< |
rightofsb->Add(leftofsb,-1); |
2803 |
< |
leftsfsb = (TH1F*)nTSeemm->Clone("leftsfsb"); |
2804 |
< |
rightsfsb = (TH1F*)TSeemmcopy->Clone("rightsfsb"); |
2805 |
< |
rightsfsb->Add(leftsfsb,-1); |
2806 |
< |
} |
2788 |
> |
///-------------- second part: only look at the quantity we actually care about! |
2789 |
> |
TH1F *leftsfzp = (TH1F*)nTZeemm->Clone("leftsfzp"); |
2790 |
> |
TH1F *rightsfzp = (TH1F*)TZeemmcopy->Clone("rightsfzp"); |
2791 |
> |
rightsfzp->Add(leftsfzp,-1); |
2792 |
> |
TH1F *leftofzp = (TH1F*)nTZem->Clone("leftofzp"); |
2793 |
> |
TH1F *rightofzp = (TH1F*)TZemcopy->Clone("rightofzp"); |
2794 |
> |
rightofzp->Add(leftofzp,-1); |
2795 |
> |
TH1F *leftofsb; |
2796 |
> |
TH1F *rightofsb; |
2797 |
> |
TH1F *leftsfsb; |
2798 |
> |
TH1F *rightsfsb; |
2799 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2800 |
> |
leftofsb = (TH1F*)nTSem->Clone("leftofsb"); |
2801 |
> |
rightofsb = (TH1F*)TSemcopy->Clone("rightofsb"); |
2802 |
> |
rightofsb->Add(leftofsb,-1); |
2803 |
> |
leftsfsb = (TH1F*)nTSeemm->Clone("leftsfsb"); |
2804 |
> |
rightsfsb = (TH1F*)TSeemmcopy->Clone("rightsfsb"); |
2805 |
> |
rightsfsb->Add(leftsfsb,-1); |
2806 |
> |
} |
2807 |
|
|
2808 |
< |
tcan->SetLogy(1); |
2809 |
< |
rightsfzp->GetXaxis()->SetRangeUser(0,binning[binning.size()-1]); |
2810 |
< |
rightsfzp->GetYaxis()->SetTitle("#deltaJZB / 25 GeV"); |
2811 |
< |
rightsfzp->Draw("histo"); |
2812 |
< |
rightofzp->Draw("histo,same"); |
2813 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2814 |
< |
rightofsb->Draw("histo,same"); |
2815 |
< |
rightsfsb->Draw("histo,same"); |
2816 |
< |
} |
2817 |
< |
DrawMCPrelim(simulatedlumi); |
2808 |
> |
tcan->SetLogy(1); |
2809 |
> |
rightsfzp->GetXaxis()->SetRangeUser(0,binning[binning.size()-1]); |
2810 |
> |
rightsfzp->GetYaxis()->SetTitle("#deltaJZB / 25 GeV"); |
2811 |
> |
rightsfzp->Draw("histo"); |
2812 |
> |
rightofzp->Draw("histo,same"); |
2813 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2814 |
> |
rightofsb->Draw("histo,same"); |
2815 |
> |
rightsfsb->Draw("histo,same"); |
2816 |
> |
} |
2817 |
> |
DrawMCPrelim(simulatedlumi); |
2818 |
|
|
2819 |
< |
TLegend *legA = make_legend("MC t#bar{t}",0.6,0.65,false); |
2820 |
< |
legA->AddEntry(rightsfzp,"SFZP","l"); |
2821 |
< |
legA->AddEntry(rightofzp,"OFZP","l"); |
2822 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2823 |
< |
legA->AddEntry(rightofsb,"SFSB","l"); |
2824 |
< |
legA->AddEntry(rightsfsb,"OFSB","l"); |
2825 |
< |
} |
2826 |
< |
legA->Draw(); |
2819 |
> |
TLegend *legA = make_legend("MC t#bar{t}",0.6,0.65,false); |
2820 |
> |
legA->AddEntry(rightsfzp,"SFZP","l"); |
2821 |
> |
legA->AddEntry(rightofzp,"OFZP","l"); |
2822 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2823 |
> |
legA->AddEntry(rightofsb,"SFSB","l"); |
2824 |
> |
legA->AddEntry(rightsfsb,"OFSB","l"); |
2825 |
> |
} |
2826 |
> |
legA->Draw(); |
2827 |
|
|
2828 |
< |
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_deltajzb_comparison"); |
2828 |
> |
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_deltajzb_comparison"); |
2829 |
|
|
2830 |
< |
tcan->SetLogy(0); |
2831 |
< |
rightofzp->Divide(rightsfzp); |
2832 |
< |
rightofzp->GetXaxis()->SetRangeUser(0.0,binning[binning.size()-1]); |
2833 |
< |
rightofzp->GetYaxis()->SetRangeUser(0.0,2.5); |
2834 |
< |
rightofzp->GetYaxis()->SetTitle("#deltaJZB ratio"); |
2835 |
< |
rightofzp->Draw(); |
2836 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2837 |
< |
rightofsb->Divide(rightsfzp); |
2838 |
< |
rightsfsb->Divide(rightsfzp); |
2839 |
< |
rightofsb->Draw("same"); |
2840 |
< |
rightsfsb->Draw("same"); |
2841 |
< |
} |
2842 |
< |
|
2843 |
< |
TLine *top2 = new TLine(0.0,1.0+linepos,binning[binning.size()-1],1.0+linepos); |
2844 |
< |
TLine *center2 = new TLine(0.0,1.0,binning[binning.size()-1],1.0); |
2845 |
< |
TLine *bottom2 = new TLine(0.0,1.0-linepos,binning[binning.size()-1],1.0-linepos); |
2846 |
< |
|
2847 |
< |
top2->SetLineColor(kBlue);top2->SetLineStyle(2); |
2848 |
< |
bottom2->SetLineColor(kBlue);bottom2->SetLineStyle(2); |
2849 |
< |
center2->SetLineColor(kBlue); |
2850 |
< |
|
2851 |
< |
top2->Draw("same"); |
2852 |
< |
center2->Draw("same"); |
2853 |
< |
bottom2->Draw("same"); |
2854 |
< |
|
2855 |
< |
rightofzp->SetMarkerStyle(21); |
2856 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2857 |
< |
rightofsb->SetMarkerStyle(24); |
2858 |
< |
rightsfsb->SetMarkerStyle(32); |
2859 |
< |
} |
2860 |
< |
|
2861 |
< |
TLegend *leg3 = make_legend("MC t#bar{t}",0.55,0.75,false); |
2862 |
< |
leg3->AddEntry(rightofzp,"OFZP / SFZP","ple"); |
2863 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2864 |
< |
leg3->AddEntry(rightsfsb,"SFSB / SFZP","ple"); |
2865 |
< |
leg3->AddEntry(rightofsb,"OFSB / SFZP","ple"); |
2866 |
< |
} |
2867 |
< |
leg3->AddEntry(bottom,"syst. envelope","l"); |
2868 |
< |
leg3->SetX1(0.25);leg3->SetX2(0.6); |
2869 |
< |
leg3->SetY1(0.65); |
2830 |
> |
tcan->SetLogy(0); |
2831 |
> |
rightofzp->Divide(rightsfzp); |
2832 |
> |
rightofzp->GetXaxis()->SetRangeUser(0.0,binning[binning.size()-1]); |
2833 |
> |
rightofzp->GetYaxis()->SetRangeUser(0.0,2.5); |
2834 |
> |
rightofzp->GetYaxis()->SetTitle("#deltaJZB ratio"); |
2835 |
> |
rightofzp->Draw(); |
2836 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2837 |
> |
rightofsb->Divide(rightsfzp); |
2838 |
> |
rightsfsb->Divide(rightsfzp); |
2839 |
> |
rightofsb->Draw("same"); |
2840 |
> |
rightsfsb->Draw("same"); |
2841 |
> |
} |
2842 |
> |
|
2843 |
> |
TLine *top2 = new TLine(0.0,1.0+linepos,binning[binning.size()-1],1.0+linepos); |
2844 |
> |
TLine *center2 = new TLine(0.0,1.0,binning[binning.size()-1],1.0); |
2845 |
> |
TLine *bottom2 = new TLine(0.0,1.0-linepos,binning[binning.size()-1],1.0-linepos); |
2846 |
> |
|
2847 |
> |
top2->SetLineColor(kBlue);top2->SetLineStyle(2); |
2848 |
> |
bottom2->SetLineColor(kBlue);bottom2->SetLineStyle(2); |
2849 |
> |
center2->SetLineColor(kBlue); |
2850 |
> |
|
2851 |
> |
top2->Draw("same"); |
2852 |
> |
center2->Draw("same"); |
2853 |
> |
bottom2->Draw("same"); |
2854 |
> |
|
2855 |
> |
rightofzp->SetMarkerStyle(21); |
2856 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2857 |
> |
rightofsb->SetMarkerStyle(24); |
2858 |
> |
rightsfsb->SetMarkerStyle(32); |
2859 |
> |
} |
2860 |
> |
|
2861 |
> |
TLegend *leg3 = make_legend("MC t#bar{t}",0.55,0.75,false); |
2862 |
> |
leg3->AddEntry(rightofzp,"OFZP / SFZP","ple"); |
2863 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2864 |
> |
leg3->AddEntry(rightsfsb,"SFSB / SFZP","ple"); |
2865 |
> |
leg3->AddEntry(rightofsb,"OFSB / SFZP","ple"); |
2866 |
> |
} |
2867 |
> |
leg3->AddEntry(bottom,"syst. envelope","l"); |
2868 |
> |
leg3->SetX1(0.25);leg3->SetX2(0.6); |
2869 |
> |
leg3->SetY1(0.65); |
2870 |
|
|
2871 |
< |
leg3->Draw("same"); |
2871 |
> |
leg3->Draw("same"); |
2872 |
|
|
2873 |
< |
DrawMCPrelim(simulatedlumi); |
2874 |
< |
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_deltajzb_comparison_ratio"); |
2873 |
> |
DrawMCPrelim(simulatedlumi); |
2874 |
> |
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_deltajzb_comparison_ratio"); |
2875 |
> |
|
2876 |
> |
} |
2877 |
|
|
2878 |
|
delete TZem; |
2879 |
|
delete nTZem; |
2880 |
|
delete TZeemm; |
2881 |
|
delete nTZeemm; |
2882 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
2882 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
2883 |
|
delete TSem; |
2884 |
|
delete nTSem; |
2885 |
|
delete TSeemm; |
2888 |
|
|
2889 |
|
delete tcan; |
2890 |
|
cutWeight=weightbackup; |
2891 |
+ |
switch_overunderflow(false); |
2892 |
|
} |
2893 |
|
|
2894 |
|
void ttbar_sidebands_comparison(string mcjzb, vector<float> jzb_binning) { |
2921 |
|
nicer_binning.push_back(100); |
2922 |
|
nicer_binning.push_back(125); |
2923 |
|
nicer_binning.push_back(150); |
2924 |
< |
nicer_binning.push_back(175); |
2924 |
> |
//nicer_binning.push_back(175); |
2925 |
|
nicer_binning.push_back(200); |
2926 |
< |
nicer_binning.push_back(230); |
2927 |
< |
nicer_binning.push_back(280); |
2928 |
< |
nicer_binning.push_back(400); |
2926 |
> |
// nicer_binning.push_back(250); |
2927 |
> |
// nicer_binning.push_back(300); |
2928 |
> |
// nicer_binning.push_back(400); |
2929 |
|
|
2930 |
|
ttbar_sidebands_comparison(mcjzb,nicer_binning, "ttbar/"); |
2931 |
|
} |
2932 |
|
|
2933 |
|
|
2934 |
< |
void zjets_prediction_comparison(string mcjzbWithPU) { |
2934 |
> |
void zjets_prediction_comparison(string mcjzbWithPUa) { |
2935 |
> |
cout << "****************************************************************************************************************************************************************" << endl; |
2936 |
|
TCanvas *zcan = new TCanvas("zcan","zcan"); |
2937 |
< |
zcan->SetLogy(1); |
2937 |
> |
// zcan->SetLogy(1); |
2938 |
|
TCut weightbackup=cutWeight; |
2939 |
+ |
|
2940 |
+ |
bool UsePURW=true; |
2941 |
+ |
|
2942 |
+ |
|
2943 |
+ |
string mcjzb; |
2944 |
+ |
if(UsePURW) { |
2945 |
+ |
mcjzb=mcjzbWithPUa; |
2946 |
+ |
cout << "Using PURW peak positions" << endl; |
2947 |
+ |
} else { |
2948 |
+ |
// Do it without PU re-weighting |
2949 |
+ |
cutWeight="1.0"; |
2950 |
+ |
float MCPeakNoPU=0,MCPeakErrorNoPU=0,DataPeakNoPU=0,DataPeakErrorNoPU=0,MCSigma=0,DataSigma=0; |
2951 |
+ |
stringstream resultsNoPU; |
2952 |
+ |
stringstream noPUdatajzb; |
2953 |
+ |
stringstream noPUmcjzb; |
2954 |
+ |
|
2955 |
+ |
find_peaks(MCPeakNoPU,MCPeakErrorNoPU, DataPeakNoPU, DataPeakErrorNoPU,resultsNoPU,false,noPUdatajzb,noPUmcjzb); |
2956 |
+ |
dout << "The peak corrected JZB expression for MC without pileup is : " << noPUmcjzb.str() << endl; |
2957 |
+ |
|
2958 |
+ |
mcjzb = noPUmcjzb.str(); |
2959 |
+ |
|
2960 |
+ |
} |
2961 |
|
|
2642 |
– |
/* |
2643 |
– |
// Do it without PU re-weighting |
2644 |
– |
float MCPeakNoPU=0,MCPeakErrorNoPU=0,DataPeakNoPU=0,DataPeakErrorNoPU=0,MCSigma=0,DataSigma=0; |
2645 |
– |
stringstream resultsNoPU; |
2646 |
– |
|
2647 |
– |
stringstream mcjzbnoPU; |
2648 |
– |
find_peaks(MCPeakNoPU,MCPeakErrorNoPU, DataPeakNoPU, DataPeakErrorNoPU,MCSigma,DataSigma,resultsNoPU,true); |
2649 |
– |
if(MCPeakNoPU>0) mcjzbnoPU<<"("<<jzbvariablemc<<"-"<<TMath::Abs(MCPeakNoPU)<<")"; |
2650 |
– |
else mcjzbnoPU<<"("<<jzbvariablemc<<"+"<<TMath::Abs(MCPeakNoPU)<<")"; |
2651 |
– |
|
2652 |
– |
string mcjzb = mcjzbnoPU.str(); |
2653 |
– |
dout << "The peak corrected JZB expression for MC without pileup is : " << mcjzb << endl; |
2654 |
– |
*/ |
2655 |
– |
// cutWeight="1.0"; |
2656 |
– |
|
2657 |
– |
string mcjzb = mcjzbWithPU; // this is with PURW, if you want without it you have to uncomment the part above (and comment out this line) |
2962 |
|
|
2963 |
|
vector<float> binning; |
2964 |
|
binning.push_back(0); |
2965 |
|
binning.push_back(10); |
2966 |
< |
binning.push_back(30); |
2967 |
< |
binning.push_back(50); |
2968 |
< |
// binning.push_back(80); |
2966 |
> |
binning.push_back(20); |
2967 |
> |
binning.push_back(40); |
2968 |
> |
binning.push_back(60); |
2969 |
> |
// binning.push_back(50); |
2970 |
> |
// binning.push_back(60); |
2971 |
> |
// binning.push_back(70); |
2972 |
> |
// binning.push_back(80); |
2973 |
> |
// binning.push_back(90); |
2974 |
|
binning.push_back(100); |
2975 |
< |
// float sbg_min=0.; |
2667 |
< |
// float sbg_max=100.; |
2668 |
< |
// int sbg_nbins=5; |
2975 |
> |
|
2976 |
|
float simulatedlumi = luminosity;//in pb please - adjust to your likings |
2977 |
|
|
2978 |
|
TCut kPos((mcjzb+">0").c_str()); |
2979 |
|
TCut kNeg((mcjzb+"<0").c_str()); |
2980 |
|
string var( "abs("+mcjzb+")" ); |
2981 |
+ |
|
2982 |
+ |
TCut notTau("abs(genMID1)!=15"); |
2983 |
+ |
TCut ee_mm_tautau("mll>0"); |
2984 |
+ |
|
2985 |
|
|
2986 |
< |
TCut kcut(cutmass&&cutOSSF&&cutnJets); |
2987 |
< |
TH1F *hJZBpos = systsamples.Draw("hJZBpos",var,binning, "JZB [GeV]", "events",kcut&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2988 |
< |
TH1F *hJZBneg = systsamples.Draw("hJZBneg",var,binning, "JZB [GeV]", "events",kcut&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2986 |
> |
TH1F *hJZBpos = systsamples.Draw("hJZBpos",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets&¬Tau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2987 |
> |
TH1F *hJZBneg = systsamples.Draw("hJZBneg",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets&¬Tau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2988 |
> |
|
2989 |
|
hJZBpos->SetLineColor(kBlack); |
2990 |
|
hJZBneg->SetLineColor(kRed); |
2991 |
|
|
2994 |
|
hJZBneg->Draw("same,hist"); |
2995 |
|
hJZBpos->Draw("same,e1"); // So it's on top... |
2996 |
|
|
2997 |
< |
TLegend *leg = make_legend("MC Z+jets",0.55,0.75,false); |
2997 |
> |
TLegend *leg = make_legend("MC Z+jets #rightarrow ee,#mu#mu",0.55,0.75,false); |
2998 |
|
leg->AddEntry(hJZBpos,"Observed","pe"); |
2999 |
|
leg->AddEntry(hJZBneg,"Predicted","l"); |
3000 |
|
leg->Draw("same"); |
3001 |
|
DrawMCPrelim(simulatedlumi); |
3002 |
< |
CompleteSave(zcan,"Systematics/zjets_prediction"); |
3002 |
> |
CompleteSave(zcan,"Systematics/ZJets/zjets_eemm_prediction"); |
3003 |
|
|
3004 |
|
TH1F* hratio = (TH1F*)hJZBpos->Clone("hratio"); |
3005 |
|
hratio->Divide(hJZBneg); |
3006 |
|
|
3007 |
|
for(int i=1;i<=hJZBpos->GetNbinsX();i++) { |
3008 |
< |
cout << "Positive: " << hJZBpos->GetBinContent(i) << " vs Negative : " << hJZBneg->GetBinContent(i) << endl; |
3008 |
> |
cout << "Positive: " << hJZBpos->GetBinContent(i) << " vs Negative : " << hJZBneg->GetBinContent(i) << " (ratio : " << hJZBpos->GetBinContent(i) / hJZBneg->GetBinContent(i) << endl; |
3009 |
|
} |
3010 |
|
|
3011 |
|
zcan->SetLogy(0); |
3026 |
|
center->Draw("same"); |
3027 |
|
bottom->Draw("same"); |
3028 |
|
|
3029 |
< |
TLegend *leg2 = make_legend("MC Z+jets",0.25,0.75,false); |
3029 |
> |
TLegend *leg2 = make_legend("MC Z+jets #rightarrow ee,#mu#mu",0.25,0.75,false); |
3030 |
|
leg2->AddEntry(hratio,"obs / pred","pe"); |
3031 |
|
leg2->AddEntry(bottom,"syst. envelope","l"); |
3032 |
|
leg2->Draw("same"); |
3033 |
|
DrawMCPrelim(simulatedlumi); |
3034 |
< |
CompleteSave(zcan,"Systematics/zjets_prediction_ratio"); |
3034 |
> |
CompleteSave(zcan,"Systematics/ZJets/zjets_eemm_prediction_ratio"); |
3035 |
> |
|
3036 |
> |
TCut reducedNJets(cutnJets); |
3037 |
> |
|
3038 |
> |
TH1F *TAUhJZBpos = systsamples.Draw("TAUhJZBpos",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3039 |
> |
TH1F *LcorrJZBeemm = systsamples.Draw("LcorrJZBeemm",var,binning, "JZB [GeV]", "events",cutmass&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3040 |
> |
TH1F *RcorrJZBem = systsamples.Draw("RcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3041 |
> |
TH1F *LcorrJZBem = systsamples.Draw("LcorrJZBem",var,binning, "JZB [GeV]", "events",cutmass&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3042 |
> |
|
3043 |
> |
TH1F *RcorrJZBSBem; |
3044 |
> |
TH1F *LcorrJZBSBem; |
3045 |
> |
TH1F *RcorrJZBSBeemm; |
3046 |
> |
TH1F *LcorrJZBSBeemm; |
3047 |
> |
|
3048 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3049 |
> |
RcorrJZBSBem = systsamples.Draw("RcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3050 |
> |
LcorrJZBSBem = systsamples.Draw("LcorrJZBSBem",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSOF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3051 |
> |
RcorrJZBSBeemm = systsamples.Draw("RcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3052 |
> |
LcorrJZBSBeemm = systsamples.Draw("LcorrJZBSBeemm",var,binning, "JZB [GeV]", "events",sidebandcut&&cutOSSF&&reducedNJets&&ee_mm_tautau&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
3053 |
> |
} |
3054 |
> |
|
3055 |
> |
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
3056 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3057 |
> |
Bpred->Add(RcorrJZBem,1.0/3.); |
3058 |
> |
Bpred->Add(LcorrJZBem,-1.0/3.); |
3059 |
> |
Bpred->Add(RcorrJZBSBem,1.0/3.); |
3060 |
> |
Bpred->Add(LcorrJZBSBem,-1.0/3.); |
3061 |
> |
Bpred->Add(RcorrJZBSBeemm,1.0/3.); |
3062 |
> |
Bpred->Add(LcorrJZBSBeemm,-1.0/3.); |
3063 |
> |
} else { |
3064 |
> |
Bpred->Add(RcorrJZBem,1.0); |
3065 |
> |
Bpred->Add(LcorrJZBem,-1.0); |
3066 |
> |
} |
3067 |
> |
|
3068 |
> |
Bpred->SetLineColor(kRed); |
3069 |
> |
|
3070 |
> |
TAUhJZBpos->SetLineColor(kBlack); |
3071 |
> |
Bpred->SetLineColor(kRed); |
3072 |
> |
|
3073 |
> |
TAUhJZBpos->SetMinimum(1.0); |
3074 |
> |
TAUhJZBpos->Draw("e1"); |
3075 |
> |
Bpred->Draw("same,hist"); |
3076 |
> |
TAUhJZBpos->Draw("same,e1"); |
3077 |
> |
|
3078 |
> |
TLegend *TAUleg = make_legend("MC Z+jets #rightarrow ee,#mu#mu,#tau#tau",0.55,0.75,false); |
3079 |
> |
TAUleg->AddEntry(TAUhJZBpos,"Observed","pe"); |
3080 |
> |
TAUleg->AddEntry(Bpred,"Predicted","l"); |
3081 |
> |
TAUleg->Draw("same"); |
3082 |
> |
DrawMCPrelim(simulatedlumi); |
3083 |
> |
CompleteSave(zcan,"Systematics/ZJets/zjets_eemumutautau_prediction"); |
3084 |
> |
|
3085 |
> |
TH1F* TAUhratio = (TH1F*)TAUhJZBpos->Clone("TAUhratio"); |
3086 |
> |
TAUhratio->Divide(Bpred); |
3087 |
> |
|
3088 |
> |
for(int i=1;i<=TAUhJZBpos->GetNbinsX();i++) { |
3089 |
> |
cout << "ee/mm/tautau observed: " << TAUhJZBpos->GetBinContent(i) << " vs predicted : " << Bpred->GetBinContent(i) << " (ratio : " << TAUhJZBpos->GetBinContent(i) / Bpred->GetBinContent(i) << endl; |
3090 |
> |
} |
3091 |
> |
|
3092 |
> |
zcan->SetLogy(0); |
3093 |
> |
TAUhratio->GetYaxis()->SetRangeUser(0,2.5); |
3094 |
> |
TAUhratio->GetYaxis()->SetTitle("Observed/Predicted"); |
3095 |
> |
TAUhratio->Draw("e1"); |
3096 |
> |
|
3097 |
> |
top->Draw("same"); |
3098 |
> |
center->Draw("same"); |
3099 |
> |
bottom->Draw("same"); |
3100 |
> |
|
3101 |
> |
TLegend *TAUleg2 = make_legend("MC Z+jets #rightarrow ee,#mu#mu",0.25,0.75,false); |
3102 |
> |
TAUleg2->AddEntry(TAUhratio,"obs / pred","pe"); |
3103 |
> |
TAUleg2->AddEntry(bottom,"syst. envelope","l"); |
3104 |
> |
TAUleg2->Draw("same"); |
3105 |
> |
DrawMCPrelim(simulatedlumi); |
3106 |
> |
CompleteSave(zcan,"Systematics/ZJets/zjets_eemumutautau_prediction_ratio"); |
3107 |
> |
|
3108 |
> |
delete Bpred; |
3109 |
> |
delete TAUhJZBpos; |
3110 |
> |
delete LcorrJZBeemm; |
3111 |
> |
delete RcorrJZBem; |
3112 |
> |
delete LcorrJZBem; |
3113 |
> |
|
3114 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3115 |
> |
delete RcorrJZBSBem; |
3116 |
> |
delete LcorrJZBSBem; |
3117 |
> |
delete RcorrJZBSBeemm; |
3118 |
> |
delete LcorrJZBSBeemm; |
3119 |
> |
} |
3120 |
> |
|
3121 |
|
|
3122 |
|
delete zcan; |
3123 |
|
cutWeight=weightbackup; |
3176 |
|
TH1F *RcorrJZBSBeemm; |
3177 |
|
TH1F *LcorrJZBSBeemm; |
3178 |
|
|
3179 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3179 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3180 |
|
RcorrJZBSBem = coll.Draw("RcorrJZBSBem",jzbexpr.c_str(),nbins,low,14000, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity, mysample); |
3181 |
|
LcorrJZBSBem = coll.Draw("LcorrJZBSBem",("-("+jzbexpr+")").c_str(),nbins,low,14000, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity, mysample); |
3182 |
|
RcorrJZBSBeemm = coll.Draw("RcorrJZBSBeemm",jzbexpr.c_str(),nbins,low,14000, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity, mysample); |
3184 |
|
} |
3185 |
|
|
3186 |
|
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
3187 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3187 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3188 |
|
Bpred->Add(RcorrJZBem,1.0/3.); |
3189 |
|
Bpred->Add(LcorrJZBem,-1.0/3.); |
3190 |
|
Bpred->Add(RcorrJZBSBem,1.0/3.); |
3395 |
|
TH1F *JRcorrJZBSBeemm; |
3396 |
|
TH1F *JLcorrJZBSBeemm; |
3397 |
|
|
3398 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3398 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3399 |
|
RcorrJZBSBem = qcdsamples.Draw("RcorrJZBSBem",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
3400 |
|
LcorrJZBSBem = qcdsamples.Draw("LcorrJZBSBem",("-"+jzb).c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSOF&&cutnJets,is_data, luminosity,use_signal); |
3401 |
|
RcorrJZBSBeemm = qcdsamples.Draw("RcorrJZBSBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", sidebandcut&&cutOSSF&&cutnJets,is_data, luminosity,use_signal); |
3416 |
|
|
3417 |
|
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
3418 |
|
TH1F *JBpred = (TH1F*)JLcorrJZBeemm->Clone("Bpred"); |
3419 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3419 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3420 |
|
Bpred->Add(RcorrJZBem,1.0/3.); |
3421 |
|
Bpred->Add(LcorrJZBem,-1.0/3.); |
3422 |
|
Bpred->Add(RcorrJZBSBem,1.0/3.); |
3486 |
|
dout << "______________________________________________" << endl; |
3487 |
|
dout << "How QCD shows up in the different regions: " << endl; |
3488 |
|
dout << "OSSF: " << endl; |
3489 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3489 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3490 |
|
dout << " Z window: \t" << RcorrJZBeemm->Integral() << " (JZB>0) , " << LcorrJZBeemm->Integral() << " (JZB<0) --> total: " << RcorrJZBeemm->Integral() + LcorrJZBeemm->Integral() << endl; |
3491 |
|
dout << " sideband: \t" << RcorrJZBSBeemm->Integral() << " (JZB>0) , " << LcorrJZBSBeemm->Integral() << " (JZB<0) --> total: " << RcorrJZBSBeemm->Integral() + LcorrJZBSBeemm->Integral() << endl; |
3492 |
|
} else { |
3493 |
|
dout << " " << RcorrJZBeemm->Integral() << " (JZB>0) , " << LcorrJZBeemm->Integral() << " (JZB<0) --> total: " << RcorrJZBeemm->Integral() + LcorrJZBeemm->Integral() << endl; |
3494 |
|
} |
3495 |
|
dout << "OSOF: " << endl; |
3496 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3496 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3497 |
|
dout << " Z window: \t" << RcorrJZBem->Integral() << " (JZB>0) , " << LcorrJZBem->Integral() << " (JZB<0) --> total: " << RcorrJZBem->Integral() + LcorrJZBem->Integral() << endl; |
3498 |
|
dout << " sideband: \t" << RcorrJZBSBem->Integral() << " (JZB>0) , " << LcorrJZBSBem->Integral() << " (JZB<0) --> total: " << RcorrJZBSBem->Integral() + LcorrJZBSBem->Integral() << endl; |
3499 |
|
} else { |
3500 |
|
dout << " Z window: \t" << RcorrJZBem->Integral() << " (JZB>0) , " << LcorrJZBem->Integral() << " (JZB<0) --> total: " << RcorrJZBem->Integral() + LcorrJZBem->Integral() << endl; |
3501 |
|
} |
3502 |
|
dout << "Therefore: " << endl; |
3503 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3503 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3504 |
|
dout << " Prediction increases by : " << LcorrJZBeemm->Integral() << " + (1.0/3)*(" << RcorrJZBSBeemm->Integral() <<"-"<< LcorrJZBSBeemm->Integral() << ") (SFSB) "; |
3505 |
|
dout << " + (1.0/3)*(" << RcorrJZBem->Integral() <<"-"<< LcorrJZBem->Integral() << ") (OFZP) "; |
3506 |
|
dout << " + (1.0/3)*(" << RcorrJZBSBem->Integral() <<"-"<< LcorrJZBSBem->Integral() << ") (OFSB) "; |
3516 |
|
for(int i=0;i<(int)bins.size();i++) { |
3517 |
|
dout << " JZB > " << bins[i] << " : " << endl; |
3518 |
|
dout << " Observation increases by : " << RcorrJZBeemm->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) << endl; |
3519 |
< |
if(PlottingSetup::RestrictToMassPeak) { |
3519 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB) { |
3520 |
|
dout << " Prediction increases by : " << LcorrJZBeemm->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) + (1.0/3)*(RcorrJZBSBeemm->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) - LcorrJZBSBeemm->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) + RcorrJZBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) - LcorrJZBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) + RcorrJZBSBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) - LcorrJZBSBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX())) << endl; |
3521 |
|
} else { |
3522 |
|
dout << " Prediction increases by : " << LcorrJZBeemm->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) + RcorrJZBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) - LcorrJZBem->Integral(RcorrJZBeemm->FindBin(bins[i]),RcorrJZBeemm->GetNbinsX()) << endl; |
3530 |
|
if(LcorrJZBem) delete LcorrJZBem; |
3531 |
|
if(RcorrJZBeemm) delete RcorrJZBeemm; |
3532 |
|
if(LcorrJZBeemm) delete LcorrJZBeemm; |
3533 |
< |
if(PlottingSetup::RestrictToMassPeak&&RcorrJZBSBem) delete RcorrJZBSBem; |
3534 |
< |
if(PlottingSetup::RestrictToMassPeak&&LcorrJZBSBem) delete LcorrJZBSBem; |
3535 |
< |
if(PlottingSetup::RestrictToMassPeak&&RcorrJZBSBeemm) delete RcorrJZBSBeemm; |
3536 |
< |
if(PlottingSetup::RestrictToMassPeak&&LcorrJZBSBeemm) delete LcorrJZBSBeemm; |
3533 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB&&RcorrJZBSBem) delete RcorrJZBSBem; |
3534 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB&&LcorrJZBSBem) delete LcorrJZBSBem; |
3535 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB&&RcorrJZBSBeemm) delete RcorrJZBSBeemm; |
3536 |
> |
if(PlottingSetup::RestrictToMassPeak&&PlottingSetup::UseSidebandsForcJZB&&LcorrJZBSBeemm) delete LcorrJZBSBeemm; |
3537 |
|
} |
3538 |
|
|
3539 |
|
void check_ptsanity() { |
3630 |
|
} |
3631 |
|
} |
3632 |
|
|
3633 |
< |
void met_vs_jzb_plots() { |
3633 |
> |
void met_vs_jzb_plots(string datajzb, string mcjzb) { |
3634 |
|
|
3635 |
|
TCanvas *canmetjzb = new TCanvas("canmet","MET vs JZB canvas"); |
3636 |
|
canmetjzb->SetRightMargin(0.16); |
3639 |
|
findme.push_back("DY"); |
3640 |
|
findme.push_back("TTJets"); |
3641 |
|
findme.push_back("LM"); |
3642 |
< |
|
3642 |
> |
/* |
3643 |
|
for(int ifind=0;ifind<(int)findme.size();ifind++) { |
3644 |
|
vector<int> selsamples = allsamples.FindSample(findme[ifind]); |
3645 |
|
TH2F *metvsjzb = new TH2F("metvsjzb","metvsjzb",200,0,100,400,-100,100); |
3646 |
|
for(int isel=0;isel<(int)selsamples.size();isel++) { |
3647 |
< |
cout << "Producing MET:JZB plot ... working on sample: " << allsamples.collection[selsamples[isel]].filename << endl; |
3648 |
< |
allsamples.collection[selsamples[isel]].events->Draw("jzb[1]:met[4]>>+metvsjzb",cutmass&&cutOSSF); |
3647 |
> |
dout << "Producing MET:JZB plot ... working on sample: " << allsamples.collection[selsamples[isel]].filename << endl; |
3648 |
> |
allsamples.collection[selsamples[isel]].events->Draw("jzb[1]:met[4]>>+metvsjzb",cutmass&&cutOSSF&&cutnJets); |
3649 |
|
} |
3650 |
|
metvsjzb->Scale(allsamples.collection[selsamples[0]].weight); |
3651 |
|
metvsjzb->SetStats(0); |
3659 |
|
title->Draw(); |
3660 |
|
CompleteSave(canmetjzb,(string)"METvsJZBplots/"+findme[ifind]); |
3661 |
|
} |
3662 |
+ |
*/ |
3663 |
+ |
|
3664 |
+ |
dout << "About to produce MET plot for DY split up by JZB" << endl; |
3665 |
+ |
|
3666 |
+ |
int nbins=14; |
3667 |
+ |
float low=0; |
3668 |
+ |
float high=140; |
3669 |
+ |
|
3670 |
+ |
stringstream sLEFT; |
3671 |
+ |
sLEFT << "((" << mcjzb << ")<0)"; |
3672 |
+ |
TCut LEFT(sLEFT.str().c_str()); |
3673 |
+ |
stringstream sRIGHT; |
3674 |
+ |
sRIGHT << "((" << mcjzb << ")>0)"; |
3675 |
+ |
TCut RIGHT(sRIGHT.str().c_str()); |
3676 |
+ |
|
3677 |
+ |
TH1F *metleft = allsamples.Draw("metleft","met[4]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&LEFT,mc, luminosity, allsamples.FindSample("DYJets")); |
3678 |
+ |
TH1F *metleftO = allsamples.Draw("metleftO","met[4]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&LEFT,mc, luminosity, allsamples.FindSample("DYJets")); |
3679 |
+ |
TH1F *metright = allsamples.Draw("metright","met[4]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&RIGHT,mc, luminosity, allsamples.FindSample("DYJets")); |
3680 |
+ |
TH1F *metrightO = allsamples.Draw("metrightO","met[4]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&RIGHT,mc, luminosity, allsamples.FindSample("DYJets")); |
3681 |
+ |
|
3682 |
+ |
|
3683 |
+ |
TH1F *Bpred = (TH1F*)metleft->Clone("Bpred"); |
3684 |
+ |
Bpred->Add(metleftO,-1); |
3685 |
+ |
Bpred->Add(metrightO); |
3686 |
+ |
TH1F *obs = (TH1F*)metright->Clone("obs"); |
3687 |
+ |
|
3688 |
+ |
metleft->Add(metleftO,-1); |
3689 |
+ |
metright->Add(metrightO,-1); |
3690 |
+ |
|
3691 |
+ |
metleft->SetLineColor(kRed); |
3692 |
+ |
metright->SetLineColor(kBlack); |
3693 |
+ |
TPad *metpad = new TPad("metpad","metpad",0,0,1,1); |
3694 |
+ |
metpad->cd(); |
3695 |
+ |
metpad->SetLogy(1); |
3696 |
+ |
metleft->Draw("histo"); |
3697 |
+ |
metright->Draw("same"); |
3698 |
+ |
TLegend *lg = make_legend(); |
3699 |
+ |
lg->SetX1(0.5); |
3700 |
+ |
lg->SetY1(0.7); |
3701 |
+ |
lg->AddEntry(metright,"JZB>0 (OSOF corrected)","P"); |
3702 |
+ |
lg->AddEntry(metleft,"JZB<0 (OSOF corrected)","L"); |
3703 |
+ |
lg->SetHeader("DY"); |
3704 |
+ |
|
3705 |
+ |
lg->Draw(); |
3706 |
+ |
save_with_ratio(metright,metleft,metpad->cd(),"METvsJZBplots/ComparingLeftToRightinMETspectrum"); |
3707 |
+ |
|
3708 |
+ |
TPad *metpad3 = new TPad("metpad3","metpad3",0,0,1,1); |
3709 |
+ |
metpad3->cd(); |
3710 |
+ |
metpad3->SetLogy(1); |
3711 |
+ |
Bpred->SetLineColor(kRed); |
3712 |
+ |
Bpred->Draw("histo"); |
3713 |
+ |
obs->SetLineColor(kBlack); |
3714 |
+ |
obs->Draw("same"); |
3715 |
+ |
TLegend *lg2 = make_legend(); |
3716 |
+ |
lg2->SetX1(0.5); |
3717 |
+ |
lg2->SetY1(0.7); |
3718 |
+ |
lg2->AddEntry(obs,"observed","P"); |
3719 |
+ |
lg2->AddEntry(Bpred,"predicted","L"); |
3720 |
+ |
lg2->SetHeader("DY"); |
3721 |
+ |
|
3722 |
+ |
lg2->Draw(); |
3723 |
+ |
|
3724 |
+ |
save_with_ratio(obs,Bpred,metpad3->cd(),"METvsJZBplots/ComparingPredObsinMET"); |
3725 |
+ |
|
3726 |
+ |
TPad *metpad2 = new TPad("metpad2","metpad2",0,0,1,1); |
3727 |
+ |
metpad2->cd(); |
3728 |
+ |
metpad2->SetLogy(1); |
3729 |
+ |
|
3730 |
+ |
TH1F *metlefta = allsamples.Draw("metlefta","met[2]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&LEFT,mc, luminosity, allsamples.FindSample("DYJets")); |
3731 |
+ |
TH1F *metleftOa = allsamples.Draw("metleftOa","met[2]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&LEFT,mc, luminosity, allsamples.FindSample("DYJets")); |
3732 |
+ |
TH1F *metrighta = allsamples.Draw("metrighta","met[2]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&RIGHT,mc, luminosity, allsamples.FindSample("DYJets")); |
3733 |
+ |
TH1F *metrightOa = allsamples.Draw("metrightOa","met[2]",nbins,low,high, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&RIGHT,mc, luminosity, allsamples.FindSample("DYJets")); |
3734 |
+ |
|
3735 |
+ |
metlefta->Add(metleftOa,-1); |
3736 |
+ |
metrighta->Add(metrightOa,-1); |
3737 |
+ |
|
3738 |
+ |
metlefta->SetLineColor(kRed); |
3739 |
+ |
metpad2->cd(); |
3740 |
+ |
metlefta->Draw("histo"); |
3741 |
+ |
metrighta->Draw("same"); |
3742 |
+ |
lg->Draw(); |
3743 |
+ |
save_with_ratio(metrighta,metlefta,metpad2->cd(),"METvsJZBplots/ComparingLeftToRightinMET_type1_spectrum"); |
3744 |
+ |
|
3745 |
+ |
delete Bpred; |
3746 |
+ |
delete obs; |
3747 |
+ |
|
3748 |
+ |
float newhigh=300; |
3749 |
+ |
int newNBins=30; |
3750 |
+ |
|
3751 |
+ |
TPad *metpad4 = new TPad("metpad4","metpad4",0,0,1,1); |
3752 |
+ |
TH1F *Ametleft = allsamples.Draw("Ametleft","met[4]",newNBins,low,newhigh, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&LEFT,mc, luminosity); |
3753 |
+ |
TH1F *AmetleftO = allsamples.Draw("AmetleftO","met[4]",newNBins,low,newhigh, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&LEFT,mc, luminosity); |
3754 |
+ |
TH1F *Ametright = allsamples.Draw("Ametright","met[4]",newNBins,low,newhigh, "MET [GeV]", "events", cutmass&&cutOSSF&&cutnJets&&RIGHT,mc, luminosity); |
3755 |
+ |
TH1F *AmetrightO = allsamples.Draw("AmetrightO","met[4]",newNBins,low,newhigh, "MET [GeV]", "events", cutmass&&cutOSOF&&cutnJets&&RIGHT,mc, luminosity); |
3756 |
+ |
|
3757 |
+ |
TH1F *aBpred = (TH1F*)Ametleft->Clone("aBpred"); |
3758 |
+ |
aBpred->Add(AmetleftO,-1); |
3759 |
+ |
aBpred->Add(AmetrightO); |
3760 |
+ |
aBpred->SetLineColor(kRed); |
3761 |
+ |
|
3762 |
+ |
TH1F *aobs = (TH1F*)Ametright->Clone("aobs"); |
3763 |
+ |
metpad4->cd(); |
3764 |
+ |
metpad4->SetLogy(1); |
3765 |
+ |
aobs->Draw(); |
3766 |
+ |
aBpred->Draw("histo,same"); |
3767 |
+ |
aobs->Draw("same"); |
3768 |
+ |
lg->SetHeader("All MC"); |
3769 |
+ |
lg->Draw(); |
3770 |
+ |
save_with_ratio(aobs,aBpred,metpad4->cd(),"METvsJZBplots/ComparingPredObsinMET_ALLSAMPLES"); |
3771 |
+ |
|
3772 |
+ |
|
3773 |
+ |
delete lg; |
3774 |
+ |
delete canmetjzb; |
3775 |
+ |
delete metleft; |
3776 |
+ |
delete metleftO; |
3777 |
+ |
delete metright; |
3778 |
+ |
delete metrightO; |
3779 |
|
} |
3780 |
|
|
3781 |
|
|