35 |
|
// Temporarily switch off PU reweighting, if asked |
36 |
|
TCut weightbackup=cutWeight; |
37 |
|
if ( !doPUreweighting ) cutWeight="1.0"; |
38 |
< |
|
38 |
> |
|
39 |
> |
int nbins=100; |
40 |
> |
if(PlottingSetup::DoBTag) nbins=25; |
41 |
> |
|
42 |
|
TCanvas *tempcan = new TCanvas("tempcan","Temporary canvas for peak finding preparations"); |
43 |
< |
TH1F *rawJZBeemmMC = allsamples.Draw("rawJZBeemmMC",jzbvariablemc,100,-50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,mc, luminosity); |
44 |
< |
TH1F *rawJZBeemmData = allsamples.Draw("rawJZBeemmData",jzbvariabledata,100, -50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,data, luminosity); |
45 |
< |
TH1F *rawJZBemMC = allsamples.Draw("rawJZBemMC",jzbvariablemc,100,-50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,mc, luminosity); |
46 |
< |
TH1F *rawJZBemData = allsamples.Draw("rawJZBemData",jzbvariabledata,100, -50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,data, luminosity); |
43 |
> |
TH1F *rawJZBeemmMC = allsamples.Draw("rawJZBeemmMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,mc, luminosity); |
44 |
> |
TH1F *rawJZBeemmData = allsamples.Draw("rawJZBeemmData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,data, luminosity); |
45 |
> |
TH1F *rawJZBemMC = allsamples.Draw("rawJZBemMC",jzbvariablemc,nbins,-50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,mc, luminosity); |
46 |
> |
TH1F *rawJZBemData = allsamples.Draw("rawJZBemData",jzbvariabledata,nbins, -50,50, "JZB [GeV]", "events", cutmass&&cutOSOF&&cutnJets,data, luminosity); |
47 |
|
TH1F *rawttbarjzbeemmMC; |
48 |
|
|
49 |
|
if(method==doKM) { |
50 |
|
//we only need this histo for the KM fitting... |
51 |
< |
rawttbarjzbeemmMC = allsamples.Draw("rawttbarjzbeemmMC",jzbvariablemc,100, -50,50, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets,mc,luminosity,allsamples.FindSample("TTJet")); |
51 |
> |
rawttbarjzbeemmMC = allsamples.Draw("rawttbarjzbeemmMC",jzbvariablemc,nbins, -50,50, "JZB [GeV]", "events",cutmass&&cutOSSF&&cutnJets,mc,luminosity,allsamples.FindSample("TTJet")); |
52 |
|
MCPeak=find_peak(rawJZBeemmMC, rawttbarjzbeemmMC, -40, 40, mc, MCPeakError,MCSigma,method); |
53 |
|
DataPeak=find_peak(rawJZBeemmData, rawJZBeemmData, -40, 40, data, DataPeakError,DataSigma,method); |
54 |
|
} |
272 |
|
TCut cut; |
273 |
|
cut=cutmass&&cutOSSF&&cutnJets&&ibasiccut; |
274 |
|
if(filename=="nJets") cut=cutmass&&cutOSSF&&ibasiccut; |
275 |
+ |
if(filename=="nJets_osof") cut=cutmass&&cutOSOF&&ibasiccut; |
276 |
|
if(filename=="nJets_nocuts_except_mll_ossf") cut=cutmass&&cutOSSF; |
277 |
|
if(filename=="mll") { |
278 |
|
cut=cutOSSF&&cutnJets&&ibasiccut; |
300 |
|
THStack mcstack = allsamples.DrawStack("mcstack",variable,nbins,min,max, xlabel, "events",cut,mc,luminosity); |
301 |
|
if(variable=="pfJetGoodPt[0]") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
302 |
|
if(variable=="pt") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
303 |
< |
if(filename=="mll_inclusive") datahisto->SetMinimum(1); |
303 |
> |
if(filename=="mll_inclusive"||filename=="mll_inclusive_mm"||filename=="mll_inclusive_ee") datahisto->SetMinimum(1); |
304 |
|
if(filename=="mll_osof") datahisto->SetMaximum(10*datahisto->GetMaximum()); |
305 |
|
if(filename=="mll_osof") datahisto->SetMinimum(9); |
302 |
– |
|
306 |
|
datahisto->SetMaximum(5.3*datahisto->GetMaximum()); |
307 |
|
datahisto->Draw("e1"); |
308 |
|
ckin->Update(); |
440 |
|
mll_hi=210; |
441 |
|
} |
442 |
|
|
443 |
+ |
make_kin_plot("met[4]","",40,0,200,dolog,"MET [GeV]","met",doPF,true); |
444 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll",doPF,true); |
445 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_osof",doPF,true,true); |
446 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_ee",doPF,true); |
448 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive",doPF,true); |
449 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_ee",doPF,true); |
450 |
|
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_mm",doPF,true); |
451 |
< |
make_kin_plot("mll","",(int)((mll_hi-mll_low)),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_osof",doPF,true); |
451 |
> |
make_kin_plot("mll","",(int)((mll_hi-mll_low))/2,mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_inclusive_osof",doPF,true); |
452 |
|
make_kin_plot("mll","",(int)((350-mll_low)),mll_low,350,dolog,"m_{ll} [GeV]","mll_inclusive_highrange",doPF); |
453 |
|
make_kin_plot("numVtx","",(int)(30.5-(-0.5)),-0.5,30.5,nolog,"N(Vtx)","numVtx",doPF); |
454 |
< |
make_kin_plot("jetpt[0]","",40,0,200,dolog,"leading jet p_{T} [GeV]","pfJetGoodPt_0",doPF); |
455 |
< |
make_kin_plot("jeteta[0]","",40,-5,5,nolog,"leading jet #eta","pfJetGoodEta_0",doPF); |
454 |
> |
// make_kin_plot("jetpt[0]","",40,0,200,dolog,"leading jet p_{T} [GeV]","pfJetGoodPt_0",doPF); |
455 |
> |
// make_kin_plot("jeteta[0]","",40,-5,5,nolog,"leading jet #eta","pfJetGoodEta_0",doPF); |
456 |
|
make_kin_plot("pt","",50,0,400,dolog,"Z p_{T} [GeV]","Zpt",doPF); |
457 |
|
make_kin_plot("pt1","",50,0,100,nolog,"p_{T} [GeV]","pt1",doPF); |
458 |
|
make_kin_plot("pt2","",50,0,100,nolog,"p_{T} [GeV]","pt2",doPF); |
459 |
|
make_kin_plot("eta1","",40,-5,5,nolog,"#eta_{l}","eta",doPF); |
460 |
|
make_kin_plot("jzb[1]","",100,-150,150,dolog,"JZB [GeV]","jzb_ossf",doPF); |
461 |
< |
make_kin_plot("pfJetGoodNum","",8,0.5,8.5,dolog,"nJets","nJets",doPF); |
462 |
< |
make_kin_plot("pfJetGoodNum","",8,0.5,8.5,dolog,"nJets","nJets_nocuts_except_mll_ossf",doPF); |
461 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets",doPF); |
462 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_osof",doPF); |
463 |
> |
make_kin_plot("pfJetGoodNum40","",9,-0.5,8.5,dolog,"nJets","nJets_nocuts_except_mll_ossf",doPF); |
464 |
|
if(!doPF) make_special_mll_plot((int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]"); |
465 |
|
stringstream jzbcut; |
466 |
|
jzbcut << "((is_data&&("<<datajzb<<")>100)||(!is_data&&("<<mcjzb<<")>100))"; |
474 |
|
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); |
475 |
|
stringstream jzbcut3; |
476 |
|
jzbcut3 << "((is_data&&("<<datajzb<<")>50)||(!is_data&&("<<mcjzb<<")>50))"; |
477 |
< |
make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB50",doPF,true); 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); |
477 |
> |
make_kin_plot("mll",jzbcut3.str(),(int)((mll_hi-mll_low)/5),mll_low,mll_hi,dolog,"m_{ll} [GeV]","mll_aboveJZB50",doPF,true); |
478 |
> |
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); |
479 |
|
|
480 |
|
make_special_obs_pred_mll_plot(mcjzb,0); |
481 |
|
make_special_obs_pred_mll_plot(mcjzb,50); |
938 |
|
|
939 |
|
TH1F *Bpred = (TH1F*)LcorrJZBeemm->Clone("Bpred"); |
940 |
|
TH1F *JBpred = (TH1F*)JLcorrJZBeemm->Clone("Bpred"); |
941 |
+ |
|
942 |
+ |
TH1F *BpredSys = new TH1F("Bpredsys","Bpredsys",PlottingSetup::global_ratio_binning.size()-1,&PlottingSetup::global_ratio_binning[0]); |
943 |
+ |
ClearHisto(BpredSys); |
944 |
+ |
|
945 |
|
if(PlottingSetup::RestrictToMassPeak) { |
946 |
|
Bpred->Add(RcorrJZBem,1.0/3.); |
947 |
|
Bpred->Add(LcorrJZBem,-1.0/3.); |
964 |
|
JBpred->Add(JLcorrJZBSBem,-1.0/3.); |
965 |
|
JBpred->Add(JRcorrJZBSBeemm,1.0/3.); |
966 |
|
JBpred->Add(JLcorrJZBSBeemm,-1.0/3.); |
967 |
+ |
|
968 |
+ |
//Systematics: |
969 |
+ |
AddSquared(BpredSys,JLcorrJZBeemm,zjetsestimateuncertONPEAK*zjetsestimateuncertONPEAK); |
970 |
+ |
AddSquared(BpredSys,JRcorrJZBem,emuncertONPEAK*emuncertONPEAK*(1.0/9)); |
971 |
+ |
AddSquared(BpredSys,JLcorrJZBem,emuncertONPEAK*emuncertONPEAK*(1.0/9)); |
972 |
+ |
AddSquared(BpredSys,JRcorrJZBSBem,emsidebanduncertONPEAK*emsidebanduncertONPEAK*(1.0/9)); |
973 |
+ |
AddSquared(BpredSys,JLcorrJZBSBem,emsidebanduncertONPEAK*emsidebanduncertONPEAK*(1.0/9)); |
974 |
+ |
AddSquared(BpredSys,JRcorrJZBSBeemm,eemmsidebanduncertONPEAK*eemmsidebanduncertONPEAK*(1.0/9)); |
975 |
+ |
AddSquared(BpredSys,JLcorrJZBSBeemm,eemmsidebanduncertONPEAK*eemmsidebanduncertONPEAK*(1.0/9)); |
976 |
|
} else { |
977 |
|
Bpred->Add(RcorrJZBem,1.0); |
978 |
|
Bpred->Add(LcorrJZBem,-1.0); |
982 |
|
//these are for the ratio |
983 |
|
JBpred->Add(JRcorrJZBem,1.0); |
984 |
|
JBpred->Add(JLcorrJZBem,-1.0); |
985 |
+ |
|
986 |
+ |
//Systematics |
987 |
+ |
AddSquared(BpredSys,JLcorrJZBeemm,zjetsestimateuncertOFFPEAK*zjetsestimateuncertOFFPEAK); |
988 |
+ |
AddSquared(BpredSys,JRcorrJZBem,emuncertOFFPEAK*emuncertOFFPEAK); |
989 |
+ |
AddSquared(BpredSys,JLcorrJZBem,emuncertOFFPEAK*emuncertOFFPEAK); |
990 |
+ |
|
991 |
|
} |
992 |
|
|
993 |
< |
|
993 |
> |
SQRT(BpredSys); |
994 |
> |
BpredSys->Divide(JBpred); |
995 |
> |
|
996 |
|
|
997 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak ---- prediction changed |
998 |
|
TH1F *Tpred = (TH1F*)RcorrJZBem->Clone("Bpred"); |
1049 |
|
lm4RcorrJZBeemm->Draw("hist,same"); |
1050 |
|
legBpred->AddEntry(RcorrJZBeemm,"observed","p"); |
1051 |
|
legBpred->AddEntry(Bpred,"predicted","l"); |
1052 |
< |
legBpred->AddEntry(analytical_function[1],"predicted fit","l"); |
1053 |
< |
legBpred->AddEntry(analytical_function[2],"stat. uncert.","l"); |
1054 |
< |
if ( overlay_signal ) legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1052 |
> |
// legBpred->AddEntry(analytical_function[1],"predicted fit","l"); |
1053 |
> |
// legBpred->AddEntry(analytical_function[2],"stat. uncert.","l"); |
1054 |
> |
legBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1055 |
|
legBpred->Draw(); |
1056 |
|
DrawPrelim(); |
1057 |
|
|
1094 |
|
// speciallegBpred->AddEntry(lm4RcorrJZBeemmC,"LM4","l"); |
1095 |
|
speciallegBpred->AddEntry(lm4RcorrJZBeemm,"LM4","l"); |
1096 |
|
speciallegBpred->Draw(); |
1097 |
< |
save_with_ratio(JRcorrJZBeemm,JBpred,predcomppad,subdir+"Bpred_Data_____PredictionComposition",true,use_data!=1,"data/pred"); |
1097 |
> |
save_with_ratio(JRcorrJZBeemm,JBpred,predcomppad,subdir+"Bpred_Data_____PredictionComposition",true,true,"data/pred",BpredSys); |
1098 |
|
|
1099 |
|
TCanvas *specialcanv = new TCanvas("specialcanv","specialcanv"); |
1100 |
|
THStack kostack = allsamples.DrawStack("RcorrJZBeemm",jzb.c_str(),nbins,low,hi, "JZB [GeV]", "events", cutmass&&cutOSSF&&cutnJets,!is_data, luminosity,use_signal); |
1172 |
|
string ytitle("ratio"); |
1173 |
|
if ( use_data==1 ) ytitle = "data/pred"; |
1174 |
|
//save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,Bpredsaveas,true,use_data!=1,ytitle); |
1175 |
< |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,subdir+Bpredsaveas,true,false,ytitle);//not extending the y range anymore up to 4 |
1175 |
> |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,subdir+Bpredsaveas,true,true,ytitle,BpredSys);//not extending the y range anymore up to 4 |
1176 |
|
|
1177 |
|
|
1178 |
|
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
1179 |
< |
/// The part below is meaningless for the offpeak analysis (it's a comparison of the different estimates but there is but one estimate!) |
1179 |
> |
// The part below is meaningless for the offpeak analysis (it's a comparison of the different estimates but there is but one estimate!) |
1180 |
|
if(PlottingSetup::RestrictToMassPeak) { |
1181 |
|
TH1F *Bpredem = (TH1F*)LcorrJZBeemm->Clone("Bpredem"); |
1182 |
|
Bpredem->Add(RcorrJZBem); |
2092 |
|
draw_ttbar_and_zjets_shape_for_one_configuration(mcjzb,datajzb,all_leptons,threejetswith30gev,true); |
2093 |
|
} |
2094 |
|
|
2095 |
< |
void find_correction_factors(string &jzbvardata,string &jzbvarmc) { |
2069 |
< |
//first: colorful plots |
2095 |
> |
float find_one_correction_factor(string FindKeyword, TCut SpecialCut, string SaveAs) { |
2096 |
|
TCanvas *cancorr = new TCanvas("cancorr","Canvas for Response Correction"); |
2097 |
|
cancorr->SetLogz(); |
2098 |
|
cancorr->SetRightMargin(0.13); |
2099 |
< |
flag_this_change(__FUNCTION__,__LINE__,true);//PlottingSetup::RestrictToMassPeak |
2074 |
< |
TCut zptforresponsepresentation("pt<600"&&cutmass&&cutOSSF&&"((sumJetPt[1]/pt)<5.0)"); |
2099 |
> |
TCut zptforresponsepresentation("pt<600"&&cutmass&&cutOSSF&&"((sumJetPt[1]/pt)<5.0)"&&SpecialCut); |
2100 |
|
if(PlottingSetup::DoBTag) zptforresponsepresentation=zptforresponsepresentation&&PlottingSetup::bTagRequirement; |
2101 |
|
TH2F *niceresponseplotd = new TH2F("niceresponseplotd","",100,0,600,100,0,5); |
2102 |
< |
(allsamples.collection)[allsamples.FindSample("Data")[0]].events->Draw("sumJetPt[1]/pt:pt>>niceresponseplotd",zptforresponsepresentation); |
2102 |
> |
vector<int> SampleIndices=allsamples.FindSample(FindKeyword); |
2103 |
> |
for(int iSample=0;iSample<SampleIndices.size();iSample++) { |
2104 |
> |
dout << " Response correction : Using sample " << (allsamples.collection)[SampleIndices[iSample]].filename << endl; |
2105 |
> |
(allsamples.collection)[SampleIndices[iSample]].events->Draw("sumJetPt[1]/pt:pt>>+niceresponseplotd",zptforresponsepresentation*cutWeight); |
2106 |
> |
} |
2107 |
> |
|
2108 |
|
niceresponseplotd->SetStats(0); |
2109 |
|
niceresponseplotd->GetXaxis()->SetTitle("Z p_{T} [GeV]"); |
2110 |
|
niceresponseplotd->GetYaxis()->SetTitle("Response"); |
2115 |
|
profd->SetMarkerSize(DataMarkerSize); |
2116 |
|
profd->Fit("pol0","","same,e1",100,400); |
2117 |
|
DrawPrelim(); |
2118 |
< |
TText* title = write_text(0.5,0.7,"Data"); |
2118 |
> |
string stitle="Data"; |
2119 |
> |
if(!Contains(FindKeyword,"Data")) stitle="MC"; |
2120 |
> |
TText* title = write_text(0.5,0.7,stitle.c_str()); |
2121 |
|
title->SetTextAlign(12); |
2122 |
|
title->Draw(); |
2123 |
|
TF1 *datapol=(TF1*)profd->GetFunction("pol0"); |
2124 |
< |
float datacorrection=datapol->GetParameter(0); |
2125 |
< |
stringstream dataresstring; |
2126 |
< |
dataresstring<<"Response: "<<std::setprecision(2)<<100*datacorrection<<" %"; |
2127 |
< |
TText* restitle = write_text(0.5,0.65,dataresstring.str()); |
2124 |
> |
float correction=datapol->GetParameter(0); |
2125 |
> |
stringstream resstring; |
2126 |
> |
resstring<<"Response: "<<std::setprecision(2)<<100*correction<<" %"; |
2127 |
> |
TText* restitle = write_text(0.5,0.65,resstring.str()); |
2128 |
|
restitle->SetTextAlign(12); |
2129 |
|
restitle->SetTextSize(0.03); |
2130 |
|
restitle->Draw(); |
2131 |
< |
CompleteSave(cancorr,"ResponseCorrection/Response_Correction_Illustration_Data"); |
2131 |
> |
CompleteSave(cancorr,"ResponseCorrection/Response_Correction_Illustration_New_"+SaveAs); |
2132 |
> |
delete cancorr; |
2133 |
> |
delete niceresponseplotd; |
2134 |
> |
return correction; |
2135 |
> |
} |
2136 |
> |
|
2137 |
> |
void find_correction_factors(string &jzbvardata,string &jzbvarmc) { |
2138 |
|
|
2139 |
< |
TH2F *niceresponseplotm = new TH2F("niceresponseplotm","",100,0,600,100,0,5); |
2140 |
< |
(allsamples.collection)[allsamples.FindSample("DY")[0]].events->Draw("sumJetPt[1]/pt:pt>>niceresponseplotm",zptforresponsepresentation); |
2141 |
< |
niceresponseplotm->SetStats(0); |
2142 |
< |
niceresponseplotm->GetXaxis()->SetTitle("Z p_{T} [GeV]"); |
2143 |
< |
niceresponseplotm->GetYaxis()->SetTitle("Response"); |
2144 |
< |
niceresponseplotm->GetXaxis()->CenterTitle(); |
2145 |
< |
niceresponseplotm->GetYaxis()->CenterTitle(); |
2146 |
< |
niceresponseplotm->Draw("COLZ"); |
2147 |
< |
(allsamples.collection)[allsamples.FindSample("DY")[0]].events->Draw("sumJetPt[1]/pt:pt",zptforresponsepresentation,"PROF,same"); |
2148 |
< |
TProfile * profm = (TProfile*)niceresponseplotm->ProfileX(); |
2149 |
< |
profm->SetMarkerSize(DataMarkerSize); |
2150 |
< |
profm->Fit("pol0","","same,e1",100,400); |
2151 |
< |
DrawMCPrelim(); |
2152 |
< |
title = write_text(0.5,0.7,"MC simulation"); |
2153 |
< |
title->SetTextAlign(12); |
2154 |
< |
title->Draw(); |
2155 |
< |
TF1 *mcpol=(TF1*)profm->GetFunction("pol0"); |
2156 |
< |
float mccorrection=mcpol->GetParameter(0); |
2157 |
< |
stringstream mcresstring; |
2158 |
< |
mcresstring<<"Response: "<<std::setprecision(2)<<100*mccorrection<<" %"; |
2121 |
< |
TText* mcrestitle = write_text(0.5,0.65,mcresstring.str()); |
2122 |
< |
mcrestitle->SetTextAlign(12); |
2123 |
< |
mcrestitle->SetTextSize(0.03); |
2124 |
< |
mcrestitle->Draw(); |
2125 |
< |
CompleteSave(cancorr,"ResponseCorrection/Response_Correction_Illustration_MC"); |
2139 |
> |
//Step 1 : Get results |
2140 |
> |
float datacorrection=find_one_correction_factor("Data","","Data"); |
2141 |
> |
float mccorrection=find_one_correction_factor("DY","","MC"); |
2142 |
> |
|
2143 |
> |
float dataEEcorrection=find_one_correction_factor("Data","id1==0","Data_ee"); |
2144 |
> |
float mcEEcorrection=find_one_correction_factor("DY","id1==0","MC_ee"); |
2145 |
> |
|
2146 |
> |
float dataMMcorrection=find_one_correction_factor("Data","id1==1","Data_mm"); |
2147 |
> |
float mcMMcorrection=find_one_correction_factor("DY","id1==1","MC_mm"); |
2148 |
> |
|
2149 |
> |
cout << "Corrections : " << endl; |
2150 |
> |
cout << " Data : " << datacorrection << endl; |
2151 |
> |
cout << " ee (" << dataEEcorrection << ") , mm (" << dataMMcorrection << ")" << endl; |
2152 |
> |
cout << " MC : " << mccorrection << endl; |
2153 |
> |
cout << " ee (" << mcEEcorrection << ") , mm (" << mcMMcorrection << ")" << endl; |
2154 |
> |
|
2155 |
> |
cout << " result from new one for data: " << 0.937097 << endl; |
2156 |
> |
cout << " result from old one for data: " << 0.937097 << endl; |
2157 |
> |
cout << " result from new one for MC: " << 0.96848 << endl; |
2158 |
> |
cout << " result from old one for MC: " << 0.963502 << endl; |
2159 |
|
|
2160 |
|
|
2161 |
< |
//Step 2: Getting the result |
2129 |
< |
// TCut zptcutforresponse("pt>30&&pt<300&&TMath::Abs(91.2-mll)<20&&id1==id2&&(ch1*ch2<0)"); |
2161 |
> |
//Step 2: Processing the result and making it into something useful :-) |
2162 |
|
stringstream jzbvardatas; |
2163 |
< |
if(datacorrection>1) jzbvardatas<<"(jzb[1]-"<<datacorrection-1<<"*pt)"; |
2164 |
< |
if(datacorrection<1) jzbvardatas<<"(jzb[1]+"<<1-datacorrection<<"*pt)"; |
2163 |
> |
jzbvardatas << "("; |
2164 |
> |
|
2165 |
> |
if(dataEEcorrection>=1) jzbvardatas<<"((id1==0&&id1==id2)*(jzb[1]-" << dataEEcorrection-1 << "*pt))"; |
2166 |
> |
if(dataEEcorrection<1) jzbvardatas<<"((id1==0&&id1==id2)*(jzb[1]+" << 1-dataEEcorrection << "*pt))"; |
2167 |
> |
|
2168 |
> |
if(dataMMcorrection>=1) jzbvardatas<<"+((id1==1&&id1==id2)*(jzb[1]-" << dataMMcorrection-1 << "*pt))"; |
2169 |
> |
if(dataMMcorrection<1) jzbvardatas<<"+((id1==1&&id1==id2)*(jzb[1]+" << 1-dataMMcorrection << "*pt))"; |
2170 |
> |
|
2171 |
> |
float averagecorrection=(dataMMcorrection+dataEEcorrection)/2.0; |
2172 |
> |
|
2173 |
> |
if(averagecorrection>1) jzbvardatas<<"+((id1!=id2)*(jzb[1]-" << averagecorrection-1 << "*pt))"; |
2174 |
> |
if(averagecorrection<1) jzbvardatas<<"+((id1!=id2)*(jzb[1]-" << 1-averagecorrection << "*pt))"; |
2175 |
> |
|
2176 |
> |
jzbvardatas << ")"; |
2177 |
|
jzbvardata=jzbvardatas.str(); |
2178 |
+ |
|
2179 |
|
stringstream jzbvarmcs; |
2180 |
< |
if(mccorrection>1) jzbvarmcs<<"(jzb[1]-"<<mccorrection-1<<"*pt)"; |
2181 |
< |
if(mccorrection<1) jzbvarmcs<<"(jzb[1]+"<<1-mccorrection<<"*pt)"; |
2180 |
> |
jzbvarmcs << "("; |
2181 |
> |
|
2182 |
> |
if(mcEEcorrection>=1) jzbvarmcs<<"((id1==0&&id1==id2)*(jzb[1]-" << mcEEcorrection-1 << "*pt))"; |
2183 |
> |
if(mcEEcorrection<1) jzbvarmcs<<"((id1==0&&id1==id2)*(jzb[1]+" << 1-mcEEcorrection << "*pt))"; |
2184 |
> |
|
2185 |
> |
if(mcMMcorrection>=1) jzbvarmcs<<"+((id1==1&&id1==id2)*(jzb[1]-" << mcMMcorrection-1 << "*pt))"; |
2186 |
> |
if(mcMMcorrection<1) jzbvarmcs<<"+((id1==1&&id1==id2)*(jzb[1]+" << 1-mcMMcorrection << "*pt))"; |
2187 |
> |
|
2188 |
> |
float averagemccorrection=(mcMMcorrection+mcEEcorrection)/2.0; |
2189 |
> |
|
2190 |
> |
if(averagemccorrection>1) jzbvarmcs<<"+((id1!=id2)*(jzb[1]-" << averagemccorrection-1 << "*pt))"; |
2191 |
> |
if(averagemccorrection<1) jzbvarmcs<<"+((id1!=id2)*(jzb[1]-" << 1-averagemccorrection << "*pt))"; |
2192 |
> |
|
2193 |
> |
jzbvarmcs << ")"; |
2194 |
|
jzbvarmc=jzbvarmcs.str(); |
2195 |
+ |
|
2196 |
|
dout << "JZB Z pt correction summary : " << endl; |
2197 |
|
dout << " Data: The response is " << datacorrection << " --> jzb variable is now : " << jzbvardata << endl; |
2198 |
|
dout << " MC : The response is " << mccorrection << " --> jzb variable is now : " << jzbvarmc << endl; |
2199 |
+ |
|
2200 |
|
} |
2201 |
|
|
2202 |
|
void pick_up_events(string cut) { |
2242 |
|
configfile<<"\n\n"; |
2243 |
|
for(int i=0;i<(int)flippedNobs.size();i++) configfile<<"flippedNobs.push_back("<<flippedNobs[i]<<"); // JZB cut at " << jzb_cuts[i] << "\n"; |
2244 |
|
for(int i=0;i<(int)flippedNpred.size();i++) configfile<<"flippedNpred.push_back("<<flippedNpred[i]<<"); // JZB cut at " << jzb_cuts[i] << "\n"; |
2245 |
< |
for(int i=0;i<(int)flippedNprederr.size();i++) configfile<<"flippedNprederr.push_back("<<flippedNprederr[i]<<"); // JZB cut at " << jzb_cuts[i] << "\n\n"; |
2245 |
> |
for(int i=0;i<(int)flippedNprederr.size();i++) configfile<<"flippedNprederr.push_back("<<flippedNprederr[i]<<"); // JZB cut at " << jzb_cuts[i] << "\n"; |
2246 |
|
for(int i=0;i<(int)jzb_shape_limit_bins.size();i++) configfile<<"jzb_shape_limit_bins.push_back("<<jzb_shape_limit_bins[i]<<"); // JZB shape bin boundary at " << jzb_shape_limit_bins[i] << "\n"; |
2247 |
|
configfile<<"\n\n"; |
2248 |
|
configfile<<"\n\n"; |
2290 |
|
//in the case of the on peak analysis, we compare the 3 control regions to the real value |
2291 |
|
//in the case of the OFF peak analysis, we compare our control region to the real value |
2292 |
|
TCut weightbackup=cutWeight; |
2293 |
< |
cutWeight="1.0"; |
2293 |
> |
// cutWeight="1.0"; |
2294 |
|
float simulatedlumi = luminosity; //in pb please - adjust to your likings |
2295 |
|
|
2296 |
|
|
2348 |
|
leg->Draw("same"); |
2349 |
|
DrawMCPrelim(simulatedlumi); |
2350 |
|
CompleteSave(tcan,"Systematics/"+prestring+"/ttbar_shape_comparison"); |
2292 |
– |
cout << __LINE__ << endl; |
2351 |
|
TH1F *TZemcopy = (TH1F*)TZem->Clone("TZemcopy"); |
2294 |
– |
cout << __LINE__ << endl; |
2352 |
|
TH1F *TZeemmcopy = (TH1F*)TZeemm->Clone("TZeemmcopy"); |
2296 |
– |
cout << __LINE__ << endl; |
2353 |
|
TH1F *TSeemmcopy; |
2354 |
|
TH1F *TSemcopy; |
2355 |
|
if(PlottingSetup::RestrictToMassPeak) { |
2540 |
|
} |
2541 |
|
|
2542 |
|
|
2543 |
< |
void zjets_prediction_comparison() { |
2543 |
> |
void zjets_prediction_comparison(string mcjzbWithPU) { |
2544 |
> |
TCanvas *zcan = new TCanvas("zcan","zcan"); |
2545 |
> |
zcan->SetLogy(1); |
2546 |
> |
TCut weightbackup=cutWeight; |
2547 |
> |
|
2548 |
> |
/* |
2549 |
|
// Do it without PU re-weighting |
2550 |
|
float MCPeakNoPU=0,MCPeakErrorNoPU=0,DataPeakNoPU=0,DataPeakErrorNoPU=0,MCSigma=0,DataSigma=0; |
2551 |
|
stringstream resultsNoPU; |
2552 |
|
|
2553 |
|
stringstream mcjzbnoPU; |
2554 |
< |
find_peaks(MCPeakNoPU,MCPeakErrorNoPU, DataPeakNoPU, DataPeakErrorNoPU,MCSigma,DataSigma,resultsNoPU,false); |
2554 |
> |
find_peaks(MCPeakNoPU,MCPeakErrorNoPU, DataPeakNoPU, DataPeakErrorNoPU,MCSigma,DataSigma,resultsNoPU,true); |
2555 |
|
if(MCPeakNoPU>0) mcjzbnoPU<<"("<<jzbvariablemc<<"-"<<TMath::Abs(MCPeakNoPU)<<")"; |
2556 |
|
else mcjzbnoPU<<"("<<jzbvariablemc<<"+"<<TMath::Abs(MCPeakNoPU)<<")"; |
2557 |
|
|
2558 |
|
string mcjzb = mcjzbnoPU.str(); |
2559 |
|
dout << "The peak corrected JZB expression for MC without pileup is : " << mcjzb << endl; |
2560 |
|
|
2500 |
– |
TCut weightbackup=cutWeight; |
2561 |
|
cutWeight="1.0"; |
2562 |
< |
float sbg_min=0.; |
2563 |
< |
float sbg_max=100.; |
2564 |
< |
int sbg_nbins=5; |
2562 |
> |
*/ |
2563 |
> |
string mcjzb = mcjzbWithPU; // this is with PURW, if you want without it you have to uncomment the part above (and comment out this line) |
2564 |
> |
|
2565 |
> |
vector<float> binning; |
2566 |
> |
binning.push_back(0); |
2567 |
> |
binning.push_back(20); |
2568 |
> |
binning.push_back(40); |
2569 |
> |
binning.push_back(60); |
2570 |
> |
binning.push_back(80); |
2571 |
> |
binning.push_back(100); |
2572 |
> |
// float sbg_min=0.; |
2573 |
> |
// float sbg_max=100.; |
2574 |
> |
// int sbg_nbins=5; |
2575 |
|
float simulatedlumi = luminosity;//in pb please - adjust to your likings |
2576 |
|
|
2577 |
|
TCut kPos((mcjzb+">0").c_str()); |
2578 |
|
TCut kNeg((mcjzb+"<0").c_str()); |
2579 |
|
string var( "abs("+mcjzb+")" ); |
2580 |
|
|
2581 |
< |
TCut kcut(cutmass&&cutOSSF&&"pfJetGoodNum>2"); |
2582 |
< |
TH1F *hJZBpos = systsamples.Draw("hJZBpos",var,sbg_nbins,sbg_min,sbg_max, "JZB [GeV]", "events", |
2583 |
< |
kcut&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2514 |
< |
TH1F *hJZBneg = systsamples.Draw("hJZBneg",var,sbg_nbins,sbg_min,sbg_max, "JZB [GeV]", "events", |
2515 |
< |
kcut&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2581 |
> |
TCut kcut(cutmass&&cutOSSF&&cutnJets); |
2582 |
> |
TH1F *hJZBpos = systsamples.Draw("hJZBpos",var,binning, "JZB [GeV]", "events",kcut&&kPos,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2583 |
> |
TH1F *hJZBneg = systsamples.Draw("hJZBneg",var,binning, "JZB [GeV]", "events",kcut&&kNeg,mc,simulatedlumi,systsamples.FindSample("/DY")); |
2584 |
|
hJZBpos->SetLineColor(kBlack); |
2585 |
|
hJZBneg->SetLineColor(kRed); |
2586 |
|
|
2587 |
< |
TCanvas *zcan = new TCanvas("zcan","zcan"); |
2520 |
< |
zcan->SetLogy(1); |
2521 |
< |
|
2587 |
> |
hJZBpos->SetMinimum(1.0); |
2588 |
|
hJZBpos->Draw("e1"); |
2589 |
|
hJZBneg->Draw("same,hist"); |
2590 |
|
hJZBpos->Draw("same,e1"); // So it's on top... |
2604 |
|
hratio->GetYaxis()->SetTitle("Observed/Predicted"); |
2605 |
|
hratio->Draw("e1"); |
2606 |
|
|
2607 |
< |
TLine *top = new TLine(sbg_min,1.25,sbg_max,1.25); |
2608 |
< |
TLine *center = new TLine(sbg_min,1.0,sbg_max,1.0); |
2609 |
< |
TLine *bottom = new TLine(sbg_min,0.75,sbg_max,0.75); |
2607 |
> |
TLine *top = new TLine(binning[0],1.25,binning[binning.size()-1],1.25); |
2608 |
> |
TLine *center = new TLine(binning[0],1.0,binning[binning.size()-1],1.0); |
2609 |
> |
TLine *bottom = new TLine(binning[0],0.75,binning[binning.size()-1],0.75); |
2610 |
|
|
2611 |
|
|
2612 |
|
top->SetLineColor(kBlue);top->SetLineStyle(2); |
2648 |
|
tout << "\\begin{tabular}{l|cc}" << endl; |
2649 |
|
tout << "\\hline" << endl; |
2650 |
|
tout << "& {\\OFZP} & {\\OFSB} \\\\\\hline" << endl; |
2651 |
< |
tout << "\\#(events) & "<<OFSB<<" & "<<OFZP<<"\\\\ \\hline" << endl; |
2651 |
> |
tout << "\\#(events) & "<<OFZP<<" & "<<OFSB<<"\\\\ \\hline" << endl; |
2652 |
|
tout << "\\end{tabular}" << endl; |
2653 |
|
tout << "\\end{center}" << endl; |
2654 |
|
tout << "\\end{table}" << endl; |
2971 |
|
//3rd last argument: do special bpred ratio, 2nd last argument: extended range!, last: y-axis title |
2972 |
|
string ytitle("ratio"); |
2973 |
|
if ( use_data==1 ) ytitle = "data/pred"; |
2974 |
< |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,"QCD/Bpred",true,use_data!=1,ytitle); |
2974 |
> |
save_with_ratio(JRcorrJZBeemm,JBpred,kinpad,"QCD/Bpred",true,false,ytitle); |
2975 |
|
|
2976 |
|
TH1F *allevents = qcdsamples.Draw("allevents","pfJetGoodNum",1,0,100, "internal code", "events", "" ,mc, luminosity); |
2977 |
|
TH1F *ossf = qcdsamples.Draw("ossf","pfJetGoodNum",1,0,100, "internal code", "events", cutOSSF ,mc, luminosity); |