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Revision: 1.58
Committed: Tue Jun 25 12:50:12 2013 UTC (11 years, 10 months ago) by buchmann
Content type: text/plain
Branch: MAIN
CVS Tags: HEAD
Changes since 1.57: +27 -2 lines
Log Message:
Also printing yields for MET>80 and MET>100 when computing MET estimates from JZB mapping

File Contents

# User Rev Content
1 buchmann 1.1 #include <iostream>
2    
3     using namespace std;
4    
5 buchmann 1.46 float Get_Met_Z_Prediction(TCut JetCut, float MetCut, int isdata, bool isDYonly, bool isAachen);
6 buchmann 1.17
7 buchmann 1.24 namespace MetPlotsSpace {
8 buchmann 1.28 float Zprediction_Uncertainty=0.2;
9 buchmann 1.41 float OFprediction_Uncertainty=0.07;
10 buchmann 1.30 float Zestimate__data=-1;
11     float Zestimate__data_sys=-1;
12     float Zestimate__data_stat=-1;
13     float Zestimate__mc=-1;
14     float Zestimate__mc_sys=-1;
15     float Zestimate__mc_stat=-1;
16     float Zestimate__dy=-1;
17     float Zestimate__dy_sys=-1;
18     float Zestimate__dy_stat=-1;
19 buchmann 1.56
20     bool Debug=true;
21 buchmann 1.24 }
22 buchmann 1.17
23 buchmann 1.55 void ExperimentalMetPrediction(bool QuickRun, bool isAachen, bool override_cuts=true);
24 buchmann 1.44 void ProvideEEOverMMEstimate(TCut);
25 buchmann 1.30
26 fronga 1.36 void makeOneRinoutPlot( TH2F* hrange, Int_t* bins, Int_t nBins, TString var, string name, bool doMC, TCut kCut = "" ) {
27    
28     Float_t systematics = 0.25;
29    
30     // mll settings
31     Int_t nbins = 100;
32     Float_t xmin = 20., xmax = 120.;
33     TCanvas* mycan = new TCanvas("mycan","Canvas");
34     mycan->SetLeftMargin(0.2);
35     mycan->SetLogy(0);
36    
37    
38     TCut kbase("pfJetGoodNum40>1&&pfJetGoodID[0]!=0"&&passtrig&&kCut);
39     TCut kSF("id1==id2");
40     TCut kOF("id1!=id2");
41    
42     // Reference: inclusive selection
43     TCut kZP("pfJetGoodNum40==2");
44     TH1F* h1, *h1OF;
45     if ( !doMC ) {
46     h1 = allsamples.Draw("h1", "mll",nbins,xmin,xmax,"m_{ll}","events",kbase&&kZP&&kSF,data,luminosity);
47     h1OF = allsamples.Draw("h1OF","mll",nbins,xmin,xmax,"m_{ll}","events",kbase&&kZP&&kOF,data,luminosity);
48     } else {
49     h1 = allsamples.Draw("h1", "mll",nbins,xmin,xmax,"m_{ll}","events",kbase&&kZP&&kSF,mc,luminosity,allsamples.FindSample("Z_em"));
50     h1OF = allsamples.Draw("h1OF","mll",nbins,xmin,xmax,"m_{ll}","events",kbase&&kZP&&kOF,mc,luminosity,allsamples.FindSample("Z_em"));
51     }
52    
53     Int_t minBinSR = h1->FindBin(20.);
54     Int_t maxBinSR = h1->FindBin(70.)-1;
55    
56     Int_t minBinZP = h1->FindBin(81.);
57     Int_t maxBinZP = h1->FindBin(101.)-1;
58    
59     dout << "Integrating SR from " << h1->GetBinLowEdge(minBinSR) << " to " << h1->GetBinLowEdge(maxBinSR)+h1->GetBinWidth(maxBinSR) << std::endl;
60     dout << "Integrating ZP from " << h1->GetBinLowEdge(minBinZP) << " to " << h1->GetBinLowEdge(maxBinZP)+h1->GetBinWidth(maxBinZP) << std::endl;
61    
62     // Subtract OF
63     h1->Add(h1OF,-1);
64     h1->SetLineColor(kRed);
65    
66     // Compute ratio
67     Double_t yZP, eyZP, ySR, eySR;
68     ySR = h1->IntegralAndError(minBinSR,maxBinSR,eySR);
69     yZP = h1->IntegralAndError(minBinZP,maxBinZP,eyZP);
70 fronga 1.39 dout << "Ratio: " << ySR/yZP << "+-" << computeRatioError(ySR,eySR,yZP,eyZP) << std::endl;
71 fronga 1.36
72     std::stringstream twoJetsLegend;
73     twoJetsLegend << std::setprecision(1) << std::fixed;
74     twoJetsLegend << "2-jets ratio: (" << ySR/yZP*100. << "#pm" << computeRatioError(ySR,eySR,yZP,eyZP)*100. << "#pm" << systematics*ySR/yZP*100. << ")%";
75    
76     TLine* line = new TLine(hrange->GetXaxis()->GetXmin(),ySR/yZP,hrange->GetXaxis()->GetXmax(),ySR/yZP);
77     line->SetLineColor(kRed);
78     TBox* errorBox = new TBox(hrange->GetXaxis()->GetXmin(),ySR/yZP*(1-systematics),hrange->GetXaxis()->GetXmax(),ySR/yZP*(1+systematics));
79     errorBox->SetFillColor(kCyan);
80     errorBox->SetFillStyle(1001);
81     errorBox->SetLineColor(kWhite);
82    
83     TGraphErrors* ratio = new TGraphErrors(nBins);
84     // Various cuts
85     for ( int ibin = 0; ibin<nBins; ++ibin ) {
86     std::stringstream cut;
87     cut << var << ">=" << bins[ibin];
88     if ( ibin+1<nBins ) cut << "&&" << var << "<" << bins[ibin+1];
89     TCut kadd(cut.str().c_str());
90    
91     TH1F* h2, *h2OF;
92     if ( !doMC ) {
93     h2 = allsamples.Draw("h2", "mll",nbins,xmin,xmax,"var","events",kbase&&kadd&&kSF,data,luminosity);
94     h2OF = allsamples.Draw("h2OF","mll",nbins,xmin,xmax,"var","events",kbase&&kadd&&kOF,data,luminosity);
95     } else {
96     h2 = allsamples.Draw("h2", "mll",nbins,xmin,xmax,"var","events",kbase&&kadd&&kSF,mc,luminosity,allsamples.FindSample("Z_em"));
97     h2OF = allsamples.Draw("h2OF","mll",nbins,xmin,xmax,"var","events",kbase&&kadd&&kOF,mc,luminosity,allsamples.FindSample("Z_em"));
98     }
99     h2->Add(h2OF,-1);
100     h2->SetLineColor(kBlue);
101    
102     ySR = h2->IntegralAndError(minBinSR,maxBinSR,eySR);
103     yZP = h2->IntegralAndError(minBinZP,maxBinZP,eyZP);
104    
105     if ( ibin+1<nBins ) {
106     ratio->SetPoint(ibin,(bins[ibin+1]+bins[ibin])/2.0,ySR/yZP);
107     ratio->SetPointError(ibin,(bins[ibin+1]-bins[ibin])/2.0,computeRatioError(ySR,eySR,yZP,eyZP));
108     } else {
109     Float_t width = ratio->GetErrorX(ibin-1);
110     ratio->SetPoint(ibin,bins[ibin]+width,ySR/yZP);
111     ratio->SetPointError(ibin,width,computeRatioError(ySR,eySR,yZP,eyZP));
112     }
113    
114     dout << "Ratio " << cut.str() << ": " << ySR/yZP << "+-" << computeRatioError(ySR,eySR,yZP,eyZP) << std::endl;
115    
116     h2->Delete();
117     h2OF->Delete();
118    
119     }
120    
121     std::stringstream syserrLegend;
122     syserrLegend << std::setprecision(0) << std::fixed << systematics*100. << "% systematic unc.";
123    
124     hrange->GetYaxis()->SetTitleOffset(1.3);
125     hrange->GetYaxis()->SetDecimals(kTRUE);
126     hrange->Draw();
127     errorBox->Draw();
128     line->Draw();
129     ratio->Draw("P");
130    
131     TLegend* legend = new TLegend(0.25,0.6,0.8,0.9);
132     legend->SetFillStyle(0);
133     legend->SetBorderSize(0);
134     if ( doMC ) legend->AddEntry(ratio,"DY Z+jets MC","lp");
135     else legend->AddEntry(ratio,"Data","lp");
136     legend->AddEntry(line,twoJetsLegend.str().c_str(),"l");
137     legend->AddEntry(errorBox,syserrLegend.str().c_str(),"f");
138     legend->Draw();
139    
140     mycan->RedrawAxis();
141     if (!doMC) DrawPrelim();
142     else DrawMCPrelim();
143    
144     CompleteSave(mycan,"MetPlots/Zlineshape_vs_"+name+(doMC?"_mc_":""));
145    
146     h1->Delete();
147     h1OF->Delete();
148     delete mycan;
149    
150     }
151    
152     int zlineshapeMet(bool doMC=true, string suffix="", float ymax = 0.2, TCut kCut = "" ) {
153    
154     TH2F* hrange = new TH2F("hrange","Range ; MET [GeV] ; Ratio low mass / Z peak",2,-1,61,2,0,ymax);
155     Int_t metBins[] = { 0, 10, 20, 30, 40, 50 };
156     Int_t nMetBins = sizeof(metBins)/sizeof(Int_t);
157 buchmann 1.52 makeOneRinoutPlot( hrange, metBins, nMetBins, "met[4]/MetFactor", "met"+suffix, doMC, kCut );
158 fronga 1.36 hrange->Delete();
159     return 0;
160    
161     }
162    
163     int zlineshapeJets(bool doMC=true, string suffix="", float ymax = 0.2, TCut kCut = "" ) {
164     TH2F* hrange = new TH2F("hrange","Range ; #(jets) ; Ratio low mass / Z peak",2,1.9,6.1,2,0,ymax);
165     Int_t bins[] = { 2, 3, 4, 5 };
166    
167     Int_t nBins = sizeof(bins)/sizeof(Int_t);
168     makeOneRinoutPlot( hrange, bins, nBins, "pfJetGoodNum40", "njets"+suffix, doMC, kCut );
169     hrange->Delete();
170     return 0;
171    
172     }
173    
174     int zlineshapes(string suffix = "", TCut cut="" ) {
175    
176     dout << "--- Calculating R_in/out" << std::endl;
177     zlineshapeMet(false,suffix,0.2,cut);
178     zlineshapeJets(false,suffix,0.2,cut);
179     zlineshapeMet(true,suffix,0.2,cut);
180     zlineshapeJets(true,suffix,0.2,cut);
181     dout << "--- DONE (Calculating R_in/out)" << std::endl;
182    
183     return 0;
184     }
185    
186 buchmann 1.30 void ExtractScaleFactor(TH1F *mllSF,TH1F *mllOF, THStack* mcMllSF, THStack* mcMllOF, TH1F *prediction, TLegend *leg, string saveasSig, TBox *srbox) {
187     Int_t minbin = mllSF->FindBin(20.);
188     Int_t maxbin = mllSF->FindBin(70.-1);
189    
190     // Get yields in OF region
191     Float_t iDataOF = mllOF->Integral();
192     Float_t iDataOFSR = mllOF->Integral(minbin,maxbin);
193     Float_t iMCOF = 0.0;
194     Float_t iMCOFSR = 0.0;
195     TIter nextOF(mcMllOF->GetHists());
196     TH1F* h;
197     while ( h = (TH1F*)nextOF() ) {
198     iMCOF += h->Integral();
199     iMCOFSR += h->Integral(minbin,maxbin);
200     }
201     Float_t scale = iDataOF/iMCOF;
202    
203     // Re-scale OF
204     nextOF = TIter(mcMllOF->GetHists());
205    
206     while ( h = (TH1F*)nextOF() ) {
207     h->Scale(scale);
208     }
209    
210     nextOF = TIter(mcMllOF->GetHists());
211    
212     // Rescale SF and count in signal region
213 fronga 1.39 dout << "Integrating from " << mllSF->GetBinLowEdge(minbin) << " to " << mllSF->GetBinLowEdge(maxbin)+mllSF->GetBinWidth(maxbin) << std::endl;
214 buchmann 1.30
215     Float_t iDataSFSR = mllSF->Integral(minbin,maxbin);
216     Float_t iMCSFSR = 0.0;
217     TIter nextSF = TIter(mcMllSF->GetHists());
218     while ( h = (TH1F*)nextSF() ) {
219     h->Scale(scale);
220     iMCSFSR += h->Integral(minbin,maxbin);
221     }
222    
223     nextSF = TIter(mcMllSF->GetHists());
224     while ( h = (TH1F*)nextSF() ) {
225     iMCSFSR += h->Integral(minbin,maxbin);
226     }
227     mcMllSF->Modified();
228    
229     TPad* rcan2 = new TPad("rcan2","rcan2",0,0,1,1);
230     rcan2->cd();
231     mllSF->Draw();
232 fronga 1.40 mcMllSF->Draw("histo,same");
233 buchmann 1.30 prediction->Draw("histo,same");
234     mllSF->Draw("same");
235     DrawPrelim();
236     stringstream leghead;
237     leghead << "MC scaled by " << std::setprecision(2) << scale << "";
238 fronga 1.39 dout << "SCALE: " << scale << endl;
239 buchmann 1.30 TH1F *histo = new TH1F("histo","histo",1,0,1);histo->SetLineColor(kWhite);
240     leg->AddEntry(histo,leghead.str().c_str(),"l");
241     leg->Draw();
242     srbox->Draw();
243     stringstream saveasSig2;
244     saveasSig2 << saveasSig << "__mcScaled";
245     rcan2->Update();
246 buchmann 1.43 Save_With_Ratio( mllSF, *mcMllSF, rcan2, saveasSig2.str() );
247 buchmann 1.32
248     // restore original stacks
249     nextOF = TIter(mcMllOF->GetHists());
250    
251     while ( h = (TH1F*)nextOF() ) {
252     h->Scale(1/scale);
253     }
254    
255     nextSF = TIter(mcMllSF->GetHists());
256     while ( h = (TH1F*)nextSF() ) {
257     h->Scale(1/scale);
258     }
259     mcMllSF->Modified();
260     mcMllOF->Modified();
261    
262 buchmann 1.30 }
263    
264 buchmann 1.1 TGraphErrors* MakeErrorGraph(TH1F *histo) {
265    
266     float dx[histo->GetNbinsX()];
267     float dy[histo->GetNbinsX()];
268     float x[histo->GetNbinsX()];
269     float y[histo->GetNbinsX()];
270     for(int i=1;i<=histo->GetNbinsX();i++) {
271     x[i-1]=histo->GetBinCenter(i);
272     y[i-1]=histo->GetBinContent(i);
273     if(i>1) dx[i-1]=(histo->GetBinCenter(i)-histo->GetBinCenter(i-1))/2.0;
274     else dx[i-1]=(histo->GetBinCenter(i+1)-histo->GetBinCenter(i))/2.0;
275     dy[i-1]=histo->GetBinError(i);
276     }
277    
278     TGraphErrors *gr = new TGraphErrors(histo->GetNbinsX(),x,y,dx,dy);
279     gr->SetFillColor(TColor::GetColor("#2E9AFE"));
280     return gr;
281     }
282 buchmann 1.41
283     TGraphErrors* MakeErrorGraphSystematicAndStatistical(TH1F *ofpred, TH1F *sfpred, TH1F *prediction, TH1F *SystHisto) {
284 buchmann 1.1
285 buchmann 1.41 float dx[ofpred->GetNbinsX()];
286     float dy[ofpred->GetNbinsX()];
287     float x[ofpred->GetNbinsX()];
288     float y[ofpred->GetNbinsX()];
289     for(int i=1;i<=ofpred->GetNbinsX();i++) {
290     x[i-1]=prediction->GetBinCenter(i);
291     y[i-1]=prediction->GetBinContent(i);
292     if(i>1) dx[i-1]=(prediction->GetBinCenter(i)-prediction->GetBinCenter(i-1))/2.0;
293     else dx[i-1]=(prediction->GetBinCenter(i+1)-prediction->GetBinCenter(i))/2.0;
294     if(ofpred->GetBinCenter(i)>20 && ofpred->GetBinCenter(i)<70) {
295     //need to increase uncertainty by 5% due to extrapolation
296     dy[i-1] = (MetPlotsSpace::Zprediction_Uncertainty+0.05)*(MetPlotsSpace::Zprediction_Uncertainty+0.05)*sfpred->GetBinContent(i)*sfpred->GetBinContent(i); //systematic for Z+Jets prediction
297     } else {
298     dy[i-1] = MetPlotsSpace::Zprediction_Uncertainty*MetPlotsSpace::Zprediction_Uncertainty*sfpred->GetBinContent(i)*sfpred->GetBinContent(i); //systematic for Z+Jets prediction
299     }
300     dy[i-1]+= MetPlotsSpace::OFprediction_Uncertainty*MetPlotsSpace::OFprediction_Uncertainty* ofpred->GetBinContent(i) * ofpred->GetBinContent(i); //systematic for OF prediction
301     float sys=sqrt(dy[i-1])/prediction->GetBinContent(i);
302     if(prediction->GetBinContent(i)==0) sys=0.0;
303     if(sys!=sys || sys<0) sys=0;
304     SystHisto->SetBinContent(i,sys);
305     dy[i-1]+= prediction->GetBinError(i) * prediction->GetBinError(i); // plus statistical!
306     dy[i-1]=sqrt(dy[i-1]);
307     }
308    
309     TGraphErrors *gr = new TGraphErrors(ofpred->GetNbinsX(),x,y,dx,dy);
310     gr->SetFillColor(TColor::GetColor("#2E9AFE"));//blue
311     // gr->SetFillColor(TColor::GetColor("#FF8000"));//orange
312     return gr;
313     }
314    
315 buchmann 1.55
316     float DetectEtaCut() {
317     string Sbasicqualitycut = (const char*) basicqualitycut;
318    
319     if ((int)Sbasicqualitycut.find(")<1.4")>1) return 1.4;
320     if ((int)Sbasicqualitycut.find(")<2.4")>1) return 2.4;
321    
322     string Sbasiccut = (const char*)basiccut;
323     if ((int)Sbasiccut.find(")<1.4")>1) return 1.4;
324     if ((int)Sbasiccut.find(")<2.4")>1) return 2.4;
325    
326     string Sessentialcut = (const char*)essentialcut;
327     if ((int)Sessentialcut.find(")<1.4")>1) return 1.4;
328     if ((int)Sessentialcut.find(")<2.4")>1) return 2.4;
329    
330     string Sleptoncut = (const char*)leptoncut;
331     if ((int)Sleptoncut.find(")<1.4")>1) return 1.4;
332     if ((int)Sleptoncut.find(")<2.4")>1) return 2.4;
333     }
334    
335 buchmann 1.56
336     float GetAppropriateZestimate(bool isAachen) {
337    
338     bool IsInclusiveEtaRange=false;
339    
340    
341     if(Contains((const char*) basicqualitycut,"<2.4")) IsInclusiveEtaRange=true;
342     if(Contains((const char*) essentialcut,"<2.4")) IsInclusiveEtaRange=true;
343     if(Contains((const char*) basiccut,"<2.4")) IsInclusiveEtaRange=true;
344     if(Contains((const char*) leptoncut,"<2.4")) IsInclusiveEtaRange=true;
345     if(Contains((const char*) essential,"<2.4")) IsInclusiveEtaRange=true;
346    
347     if(IsInclusiveEtaRange && isAachen) {
348     // ab , aachen
349     MetPlotsSpace::Zestimate__data=39;
350     MetPlotsSpace::Zestimate__data_stat=9;
351     return 39;
352     }
353    
354     if(IsInclusiveEtaRange && !isAachen) {
355     // ab , eth
356     MetPlotsSpace::Zestimate__data=53;
357     MetPlotsSpace::Zestimate__data_stat=10;
358     return 53;
359     }
360    
361     if(!IsInclusiveEtaRange && isAachen) {
362     // a , aachen
363     MetPlotsSpace::Zestimate__data=29;
364     MetPlotsSpace::Zestimate__data_stat=7;
365     return 29;
366     }
367    
368     if(!IsInclusiveEtaRange && !isAachen) {
369     // a , eth
370     MetPlotsSpace::Zestimate__data=38;
371     MetPlotsSpace::Zestimate__data_stat=8;
372     return 38;
373     }
374     }
375    
376 buchmann 1.46 void ProduceMetPlotsWithCut(bool isAachen, TCut cut, string name, float cutat, int njets, bool doMC = false, float ymax = 80 ) {
377 buchmann 1.30
378 buchmann 1.50 dout << " *-*-*-*-*-*-*-*- " << __FUNCTION__ << " *-*-*-*-*-*-*-*- " << endl;
379    
380 buchmann 1.48 ofstream NiceSummary;
381     NiceSummary.open("Summary.txt",ios::app);
382 buchmann 1.45
383 buchmann 1.48 NiceSummary << " *********************************" << endl;
384 buchmann 1.50 time_t t = time(0); // get time now
385     struct tm * now = localtime( & t );
386     NiceSummary << "run on : " << now->tm_hour << ":" << now->tm_min << " on " << now->tm_mday << "." << (now->tm_mon + 1) << "." << (now->tm_year + 1900) << endl;
387 buchmann 1.48 NiceSummary << "Cut : " << (const char*) cut << endl;
388     NiceSummary << "Name : " << name << endl;
389 buchmann 1.30 bool UseSpecialZprediction=false;
390    
391 buchmann 1.45 TText *sel = WriteSelection(njets);
392 buchmann 1.30 if(cutat==100 && name=="") {
393     UseSpecialZprediction=true;
394     bool ReRunEstimate=false;
395     //need to check if the results have already been stored; if not, need to get the estimate!
396     if(MetPlotsSpace::Zestimate__data<0) ReRunEstimate=true;
397     if(MetPlotsSpace::Zestimate__data_stat<0) ReRunEstimate=true;
398     if(MetPlotsSpace::Zestimate__data_sys<0) ReRunEstimate=true;
399     if(MetPlotsSpace::Zestimate__mc<0) ReRunEstimate=true;
400     if(MetPlotsSpace::Zestimate__mc_stat<0) ReRunEstimate=true;
401     if(MetPlotsSpace::Zestimate__mc_sys<0) ReRunEstimate=true;
402     if(MetPlotsSpace::Zestimate__dy<0) ReRunEstimate=true;
403     if(MetPlotsSpace::Zestimate__dy_stat<0) ReRunEstimate=true;
404     if(MetPlotsSpace::Zestimate__dy_sys<0) ReRunEstimate=true;
405 fronga 1.39 dout << "****************** About to do Z prediction " << endl;
406 buchmann 1.56 write_info(__FUNCTION__,"Not using recomputation but using global values");
407     //if(ReRunEstimate) ExperimentalMetPrediction(true,isAachen);//doing quick run (i.e. only data)
408 fronga 1.39 dout << "****************** Done predicting the Z " << endl;
409 buchmann 1.43 }
410 fronga 1.16
411 buchmann 1.41
412 buchmann 1.1 TCanvas *tcan = new TCanvas("tcan","tcan");
413 fronga 1.39 dout << "Doing met plots" << endl;
414 buchmann 1.2 stringstream MetBaseCuts;
415 buchmann 1.52 MetBaseCuts << "met[4]/MetFactor>" << cutat << "&&" << cut.GetTitle() << " && mll>20";
416 fronga 1.7 stringstream snjets;
417     snjets << njets;
418 buchmann 1.2 TCut MetBaseCut(MetBaseCuts.str().c_str());
419 buchmann 1.52 TCut nJetsSignal(PlottingSetup::basicqualitycut&&TCut(("pfJetGoodNum40>="+snjets.str()).c_str())&&TCut("mll>20"));
420     TCut nJetsControl(PlottingSetup::basiccut&&"met[4]/MetFactor>100&&met[4]/MetFactor<150&&pfJetGoodID[0]!=0&&pfJetGoodNum40==2&&mll>20"); // Common CR (modulo lepton selection)
421     //TCut nJetsControl(PlottingSetup::basiccut&&"met[4]/MetFactor>75&&met[4]/MetFactor<150&&pfJetGoodNumBtag30>0&&pfJetGoodID[0]!=0&&pfJetGoodNum40==2"); // Alternative CR
422 fronga 1.16
423 buchmann 1.1 //compute SF / OF rate in (CR1+CR2), should give 0.941 +/- 0.05
424 fronga 1.7
425     // Create histograms
426 fronga 1.9 //int nbins = 30;
427 buchmann 1.51 int nbins = 60-4;
428     float xmin=20., xmax = 300.;
429 buchmann 1.46
430 buchmann 1.57 //with extra fine binning for zline shape scaling
431     TH1F *mllsigFine = allsamples.Draw("mllsigFine","mll",int(xmax-xmin),xmin,xmax,"m_{ee} [GeV]","events",cutOSSF&&MetBaseCut&&nJetsSignal,data,PlottingSetup::luminosity);
432     TH1F *mllOsigFine = allsamples.Draw("mllOsigFine","mll",int(xmax-xmin),xmin,xmax,"m_{ee} [GeV]","events",cutOSOF&&MetBaseCut&&nJetsSignal,data,PlottingSetup::luminosity);
433    
434     TH1F *mllsconFine = allsamples.Draw("mllsconFine","mll",int(xmax-xmin),xmin,xmax,"m_{ll} [GeV]", "events",cutOSSF&&cut&&nJetsControl,data,PlottingSetup::luminosity);
435     TH1F *mllOsconFine = allsamples.Draw("mllOsconFine","mll",int(xmax-xmin),xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSOF&&cut&&nJetsControl),data,PlottingSetup::luminosity);
436    
437     TH1F *mllsigEE = allsamples.Draw("mllsigEE","mll",nbins,xmin,xmax,"m_{ee} [GeV]", "events",cutOSSF&&MetBaseCut&&nJetsSignal&&TCut("id1==0"),data,PlottingSetup::luminosity);
438     TH1F *mllsigMM = allsamples.Draw("mllsigMM","mll",nbins,xmin,xmax,"m_{#mu#mu} [GeV]","events",cutOSSF&&MetBaseCut&&nJetsSignal&&TCut("id1==1"),data,PlottingSetup::luminosity);
439     TH1F *mllsconEE = allsamples.Draw("mllsconEE","mll",nbins,xmin,xmax,"m_{ll} [GeV]", "events",cutOSSF&&cut&&nJetsControl&&TCut("id1==0"),data,PlottingSetup::luminosity);
440     TH1F *mllsconMM = allsamples.Draw("mllsconMM","mll",nbins,xmin,xmax,"m_{ll} [GeV]", "events",cutOSSF&&cut&&nJetsControl&&TCut("id1==1"),data,PlottingSetup::luminosity);
441     TH1F *mllOsigEM = allsamples.Draw("mllOsigEM", "mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",cutOSOF&&MetBaseCut&&nJetsSignal&&TCut("id1==0"),data,PlottingSetup::luminosity);
442     TH1F *mllOsigME = allsamples.Draw("mllOsigME", "mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",cutOSOF&&MetBaseCut&&nJetsSignal&&TCut("id1==1"),data,PlottingSetup::luminosity);
443     TH1F *mllOsconEM = allsamples.Draw("mllOsconEM","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSOF&&cut&&nJetsControl&&TCut("id1==0")),data,PlottingSetup::luminosity);
444     TH1F *mllOsconME = allsamples.Draw("mllOsconME","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSOF&&cut&&nJetsControl&&TCut("id1==1")),data,PlottingSetup::luminosity);
445     TH1F *ptsig = allsamples.Draw("ptsig", "pt",40,xmin,400,"m_{T}^{ll} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal),data,PlottingSetup::luminosity);
446     TH1F *ptOsig = allsamples.Draw("ptOsig", "pt",40,xmin,400,"p_{T}^{ll} [GeV]","events",TCut(cutOSOF&&MetBaseCut&&nJetsSignal),data,PlottingSetup::luminosity);
447     TH1F *mllscon = (TH1F*)mllsconEE->Clone("mllscon");
448    
449 buchmann 1.50 mllscon->Add(mllsconMM);
450     TH1F *mllOscon = (TH1F*)mllOsconEM->Clone("mllOscon");
451     mllOscon->Add(mllOsconME);
452     TH1F *mllOsig = (TH1F*)mllOsigEM->Clone("mllOsig");
453     mllOsig->Add(mllOsigME);
454 buchmann 1.46
455 fronga 1.8 TH1F* mllsig = (TH1F*)mllsigEE->Clone("mllsig");
456     mllsig->Add(mllsigMM);
457     mllsig->GetXaxis()->SetTitle("m_{ll} [GeV]");
458    
459 buchmann 1.37 THStack *mcMllsig, *mcMllsigEE,*mcMllsigMM,*mcMllscon,*mcMllsconEE,*mcMllsconMM, *mcMllOsig, *mcMllOscon, *mcptsig, *mcptOsig;
460 fronga 1.7 if ( doMC ) {
461     name += "_mc";
462 fronga 1.8 mcMllsig = new THStack(allsamples.DrawStack("mcMllsig","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal),mc,PlottingSetup::luminosity));
463     mcMllsigEE = new THStack(allsamples.DrawStack("mcMllsigEE","mll",nbins,xmin,xmax,"m_{ee} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal&&"id1==0"),mc,PlottingSetup::luminosity));
464     mcMllsigMM = new THStack(allsamples.DrawStack("mcMllsigMM","mll",nbins,xmin,xmax,"m_{#mu#mu} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal&&"id1==1"),mc,PlottingSetup::luminosity));
465 fronga 1.22 mcMllscon = new THStack(allsamples.DrawStack("mcMllscon","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSSF&&cut&&nJetsControl),mc,PlottingSetup::luminosity));
466 fronga 1.8 mcMllOsig = new THStack(allsamples.DrawStack("mcMllOsig","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSOF&&MetBaseCut&&nJetsSignal),mc,PlottingSetup::luminosity));
467 fronga 1.22 mcMllOscon= new THStack(allsamples.DrawStack("mcMllOscon","mll",nbins,xmin,xmax,"m_{ll} [GeV]","events",TCut(cutOSOF&&cut&&nJetsControl),mc,PlottingSetup::luminosity));
468 buchmann 1.37 mcptsig = new THStack(allsamples.DrawStack("mcptsig", "pt",40,xmin,400,"m_{T}^{ll} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal),mc,PlottingSetup::luminosity));
469     mcptOsig = new THStack(allsamples.DrawStack("mcptOsig", "pt",40,xmin,400,"p_{T}^{ll} [GeV]","events",TCut(cutOSOF&&MetBaseCut&&nJetsSignal),mc,PlottingSetup::luminosity));
470 fronga 1.7 }
471 buchmann 1.52
472    
473     if ( doMC ) {
474     write_info(__FUNCTION__,"Writing yields in MC");
475     dout << "Signal region, low mass " << endl;
476     WriteYield(mcMllsig,20,70);
477     WriteYield(mcMllOsig,20,70);
478     dout << "Signal region, high mass " << endl;
479     WriteYield(mcMllsig,120,1000);
480     WriteYield(mcMllOsig,120,1000);
481     THStack *sdata = new THStack();
482     sdata->Add(mllsig);
483     THStack *sodata = new THStack();
484     sodata->Add(mllOsig);
485     dout << "NOW ALL DATA **** " << endl;
486     dout << "Signal region, low mass " << endl;
487     dout << "SF : " << endl;
488     WriteYield(sdata,20,70);
489     dout << endl;
490     dout << "OF : " << endl;
491     WriteYield(sodata,20,70);
492     dout << "Signal region, high mass " << endl;
493     dout << "SF : " << endl;
494     WriteYield(sdata,120,1000);
495     dout << endl;
496     dout << "OF : " << endl;
497     WriteYield(sodata,120,1000);
498     }
499    
500 buchmann 1.45 if(doMC) {
501     TH1F *mllsigt = allsamples.Draw("mllsigt","mll",300,0,300,"m_{#mu#mu} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal),data,PlottingSetup::luminosity);
502 buchmann 1.52 THStack *mcMllsigt = new THStack(allsamples.DrawStack("mcMllsigt","mll",300,0,300,"m_{ll} [GeV]","events",TCut(cutOSSF&&MetBaseCut&&nJetsSignal),mc,PlottingSetup::luminosity));
503 buchmann 1.45 ProduceYields(20,70,mllsigt,mcMllsigt);
504     ProduceYields(91-10,91+10,mllsigt,mcMllsigt);
505 buchmann 1.52 write_warning(__FUNCTION__,"WATCH OUT Z REGION HAS BEEN DEACTIVATED");
506 buchmann 1.45 cout << (const char*) TCut(cutOSSF&&MetBaseCut&&nJetsSignal&&"id1==0") << endl;
507     delete mllsigt;
508     delete mcMllsigt;
509     }
510    
511 buchmann 1.1 mllOsig->SetLineColor(kRed);
512     mllOscon->SetLineColor(kRed);
513    
514 buchmann 1.28 TH1F *zlineshape = allsamples.Draw("zlineshape","mll",nbins,xmin,xmax,"m_{ll} (GeV)","events",cutOSSF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity);
515     TH1F *Ozlineshape = allsamples.Draw("Ozlineshape","mll",nbins,xmin,xmax,"m_{ll} (GeV)","events",cutOSOF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity);
516     zlineshape->Add(Ozlineshape,-1);
517 buchmann 1.13 TH1F *zlineshapeControl = (TH1F*)zlineshape->Clone("zlineshapeControl");
518 buchmann 1.57
519     TH1F *zlineshapeFine = allsamples.Draw("zlineshapeFine","mll",int(xmax-xmin),xmin,xmax,"m_{ll} (GeV)","events",cutOSSF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity);
520     TH1F *OzlineshapeFine = allsamples.Draw("OzlineshapeFine","mll",int(xmax-xmin),xmin,xmax,"m_{ll} (GeV)","events",cutOSOF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity);
521     zlineshapeFine->Add(OzlineshapeFine,-1);
522    
523     TH1F *zlineshapeControlFine = (TH1F*)zlineshapeFine->Clone("zlineshapeControlFine");
524    
525 buchmann 1.21 //
526     // float scalefactor = Get_Met_Z_Prediction(nJetsSignal,cutat, data, false) / (zlineshapeFINE->Integral(zlineshapeFINE->FindBin(91.1-20),zlineshapeFINE->FindBin(91.1+20)));
527     // float scalefactor_Control = Get_Met_Z_Prediction(nJetsControl,cutat, data, false) / (zlineshapeFINE->Integral(zlineshapeFINE->FindBin(91.1-20),zlineshapeFINE->FindBin(91.1+20)));
528     // delete zlineshapeFINE;
529    
530    
531 buchmann 1.57 Int_t scaleBinLow = mllsigFine->FindBin(81);
532     Int_t scaleBinHigh = mllsigFine->FindBin(101);
533     float scalefactor = (mllsigFine->Integral(scaleBinLow,scaleBinHigh)-mllOsigFine->Integral(scaleBinLow,scaleBinHigh));
534     scalefactor /= zlineshapeFine->Integral(scaleBinLow,scaleBinHigh);
535 buchmann 1.30
536 buchmann 1.57 float scalefactor_Control = (mllsconFine->Integral(scaleBinLow,scaleBinHigh)-mllOsconFine->Integral(scaleBinLow,scaleBinHigh));
537     scalefactor_Control /= zlineshapeControlFine->Integral(scaleBinLow,scaleBinHigh);
538 buchmann 1.30
539     if(UseSpecialZprediction) {
540 buchmann 1.57 scaleBinLow = mllsigFine->FindBin(81);
541     scaleBinHigh = mllsigFine->FindBin(101);
542     scalefactor = GetAppropriateZestimate(isAachen)/ (zlineshapeFine->Integral(scaleBinLow,scaleBinHigh));
543     dout << "Dividing: " << MetPlotsSpace::Zestimate__data << " by " << (zlineshapeFine->Integral(scaleBinLow,scaleBinHigh)) << endl;
544 buchmann 1.30 write_warning(__FUNCTION__,"Not using JZB prediction for control region!");
545     }
546    
547 buchmann 1.57 dout << "Bins for scaling : " << scaleBinLow << " : " << scaleBinHigh << endl;
548    
549 fronga 1.39 dout << "Scale factors : " << scalefactor << " : " << scalefactor_Control << endl;
550     if(UseSpecialZprediction) dout << " NOTE: Used JZB prediction for scaling! (Bins )" << scaleBinLow << " to " << scaleBinHigh << endl;
551 buchmann 1.17
552 buchmann 1.3 zlineshape->Scale(scalefactor);
553 buchmann 1.30
554 buchmann 1.3 zlineshape->SetLineColor(kBlue);
555     zlineshape->SetLineStyle(2);
556    
557 buchmann 1.52 zlineshapeControl->Scale(scalefactor_Control);
558     zlineshapeControl->SetLineColor(kBlue);
559     zlineshapeControl->SetLineStyle(2);
560    
561    
562 buchmann 1.30 if(UseSpecialZprediction) {
563     //need to update each bin with correct stat uncert
564     float relDYerr = MetPlotsSpace::Zestimate__data_stat/MetPlotsSpace::Zestimate__data;
565     for(int iz=1;iz<=zlineshape->GetNbinsX();iz++) {
566     float bincontent=zlineshape->GetBinContent(iz);
567     float binerror=zlineshape->GetBinError(iz);
568     float finalerr=0;
569     if(bincontent>0) finalerr+= (binerror/bincontent) * (binerror/bincontent);
570     if(MetPlotsSpace::Zestimate__data>0) finalerr+= relDYerr*relDYerr;
571     finalerr=bincontent * TMath::Sqrt(finalerr);
572     zlineshape->SetBinError(iz,finalerr);
573     }
574     }
575    
576 buchmann 1.57
577     delete mllsigFine;
578     delete mllOsigFine;
579     delete mllsconFine;
580     delete mllOsconFine;
581     delete zlineshapeFine;
582     delete OzlineshapeFine;
583     delete zlineshapeControlFine;
584    
585    
586 buchmann 1.52
587     //**************************
588     write_info(__FUNCTION__,"LOW MASS YIELDS : ");
589     float yields_mllsf=0,yields_mllmm=0,yields_mllee=0,yields_mllof=0,yields_mllofme=0,yields_mllofem=0;
590     for(int i=1;i<=mllsigEE->GetNbinsX();i++) {
591     if(mllsigEE->GetBinCenter(i)>20 && mllsigEE->GetBinCenter(i)<70) {
592     yields_mllee+=mllsigEE->GetBinContent(i);
593     yields_mllmm+=mllsigMM->GetBinContent(i);
594     yields_mllsf+=mllsigEE->GetBinContent(i);
595     yields_mllsf+=mllsigMM->GetBinContent(i);
596     yields_mllof+=mllOsig->GetBinContent(i);
597     yields_mllofem+=mllOsigEM->GetBinContent(i);
598     yields_mllofme+=mllOsigME->GetBinContent(i);
599     }
600     }
601     dout << "Observed : " << yields_mllsf << " (" << yields_mllee << "ee , " << yields_mllmm << "mm )" << endl;
602     dout << "Predicted: " << yields_mllof << " (from OF, " << yields_mllofem << " em, " << yields_mllofme << " me) " << endl;
603    
604     NiceSummary << "Low mass observed : " << yields_mllsf << " (" << yields_mllee << "ee , " << yields_mllmm << "mm )" << endl;
605     NiceSummary << "Low mass predicted: " << yields_mllof << " (from OF, " << yields_mllofem << " em, " << yields_mllofme << " me) " << endl;
606    
607    
608     //**************************
609     write_info(__FUNCTION__,"CONTROL REGION YIELDS : ");
610     float cr1yields_mllsf=0,cr1yields_mllmm=0,cr1yields_mllee=0,cr1yields_mllof=0,cr1yields_mllofem=0,cr1yields_mllofme=0;
611     float cr2yields_mllsf=0,cr2yields_mllmm=0,cr2yields_mllee=0,cr2yields_mllof=0,cr2yields_mllofem=0,cr2yields_mllofme=0;
612     float pyields_mllsf=0,pyields_mllmm=0,pyields_mllee=0,pyields_mllof=0,pyields_mllofem=0,pyields_mllofme=0,pyields_mlldy=0,pyields_mllpred;
613     for(int i=1;i<=mllsigEE->GetNbinsX();i++) {
614     if(mllsigEE->GetBinCenter(i)>20 && mllsigEE->GetBinCenter(i)<70) {
615     cr1yields_mllee+=mllsconEE->GetBinContent(i);
616     cr1yields_mllmm+=mllsconMM->GetBinContent(i);
617     cr1yields_mllsf+=mllsconEE->GetBinContent(i);
618     cr1yields_mllsf+=mllsconMM->GetBinContent(i);
619     cr1yields_mllof+=mllOscon->GetBinContent(i);
620     cr1yields_mllofem+=mllOsconEM->GetBinContent(i);
621     cr1yields_mllofme+=mllOsconME->GetBinContent(i);
622     }
623     if(mllsigEE->GetBinCenter(i)>120) {
624     cr2yields_mllee+=mllsconEE->GetBinContent(i);
625     cr2yields_mllmm+=mllsconMM->GetBinContent(i);
626     cr2yields_mllsf+=mllsconEE->GetBinContent(i);
627     cr2yields_mllsf+=mllsconMM->GetBinContent(i);
628     cr2yields_mllof+=mllOscon->GetBinContent(i);
629     cr2yields_mllofem+=mllOsconEM->GetBinContent(i);
630     cr2yields_mllofme+=mllOsconME->GetBinContent(i);
631     }
632     if(mllsigEE->GetBinCenter(i)>=80 && mllsigEE->GetBinCenter(i)<=100) {
633 buchmann 1.53 // cout << "Bin center at " << mllsigEE->GetBinCenter(i) << " dy " << zlineshapeControl->GetBinContent(i) << " , of " << mllOscon->GetBinContent(i) << " , sf " << mllsconEE->GetBinContent(i)+mllsconMM->GetBinContent(i) << endl;
634 buchmann 1.52 pyields_mllee+=mllsconEE->GetBinContent(i);
635     pyields_mllmm+=mllsconMM->GetBinContent(i);
636     pyields_mllsf+=mllsconEE->GetBinContent(i);
637     pyields_mllsf+=mllsconMM->GetBinContent(i);
638     pyields_mllof+=mllOscon->GetBinContent(i);
639     pyields_mllofem+=mllOsconEM->GetBinContent(i);
640     pyields_mllofme+=mllOsconME->GetBinContent(i);
641     pyields_mlldy+=zlineshapeControl->GetBinContent(i);
642     pyields_mllpred+=mllOscon->GetBinContent(i)+zlineshapeControl->GetBinContent(i);
643     }
644     }
645    
646     dout << " CR1::Observed : " << cr1yields_mllsf << " (" << cr1yields_mllee << "ee , " << cr1yields_mllmm << "mm )" << endl;
647     dout << " CR1::Predicted(OF) : " << cr1yields_mllof << " (from OF, " << cr1yields_mllofem << " em, " << cr1yields_mllofme << " me) " << endl;
648     dout << " CR1::Ratio : " << cr1yields_mllsf/cr1yields_mllof << " +/- " << (cr1yields_mllsf/cr1yields_mllof) * sqrt(1.0/cr1yields_mllsf + 1.0/cr1yields_mllof) << endl;
649    
650     dout << " CR2::Observed : " << cr2yields_mllsf << " (" << cr2yields_mllee << "ee , " << cr2yields_mllmm << "mm )" << endl;
651     dout << " CR2::Predicted(OF) : " << cr2yields_mllof << " (from OF, " << cr2yields_mllofem << " em, " << cr2yields_mllofme << " me) " << endl;
652     dout << " CR2::Ratio : " << cr2yields_mllsf/cr2yields_mllof << " +/- " << (cr2yields_mllsf/cr2yields_mllof) * sqrt(1.0/cr2yields_mllsf + 1.0/cr2yields_mllof) << endl;
653    
654     dout << " Peak::Observed : " << pyields_mllsf << " (" << pyields_mllee << "ee , " << pyields_mllmm << "mm )" << endl;
655     dout << " Peak::Predicted : " << pyields_mllpred << " (from OF, " << pyields_mllofem << " em, " << pyields_mllofme << " me --> " << pyields_mllof << " em/me and DY " << pyields_mlldy << " ) " << endl;
656    
657     NiceSummary << " CR1::Observed : " << cr1yields_mllsf << " (" << cr1yields_mllee << "ee , " << cr1yields_mllmm << "mm )" << endl;
658     NiceSummary << " CR1::Predicted(OF) : " << cr1yields_mllof << " (from OF) " << endl;
659     NiceSummary << " CR1::Ratio : " << cr1yields_mllsf/cr1yields_mllof << " +/- " << (cr1yields_mllsf/cr1yields_mllof) * sqrt(1.0/cr1yields_mllsf + 1.0/cr1yields_mllof) << endl;
660    
661     NiceSummary << " CR2::Observed : " << cr2yields_mllsf << " (" << cr2yields_mllee << "ee , " << cr2yields_mllmm << "mm )" << endl;
662     NiceSummary << " CR2::Predicted(OF) : " << cr2yields_mllof << " (from OF) " << endl;
663     NiceSummary << " CR2::Ratio : " << cr2yields_mllsf/cr2yields_mllof << " +/- " << (cr2yields_mllsf/cr2yields_mllof) * sqrt(1.0/cr2yields_mllsf + 1.0/cr2yields_mllof) << endl;
664    
665     //**************************
666    
667 buchmann 1.13
668 buchmann 1.3 TH1F *subtracted = (TH1F*)mllsig->Clone("subtracted");
669 buchmann 1.13 TH1F *subtractedControl = (TH1F*)mllscon->Clone("subtractedControl");
670 buchmann 1.3 TH1F *baseline = (TH1F*)mllOsig->Clone("baseline");
671 buchmann 1.13 TH1F *baselineControl = (TH1F*)mllOscon->Clone("baselineControl");
672 buchmann 1.3 for(int i=1;i<=subtracted->GetNbinsX();i++) {
673     subtracted->SetBinContent(i,mllsig->GetBinContent(i)-mllOsig->GetBinContent(i));
674 buchmann 1.13 subtractedControl->SetBinContent(i,mllscon->GetBinContent(i)-mllOscon->GetBinContent(i));
675 buchmann 1.3 baseline->SetBinContent(i,0);
676 buchmann 1.13 baselineControl->SetBinContent(i,0);
677 buchmann 1.3 }
678    
679     TH1F *prediction = (TH1F*)mllOsig->Clone("prediction");
680     prediction->Add(zlineshape);
681     prediction->SetLineColor(TColor::GetColor("#CF35CA"));
682 fronga 1.7
683     TH1F *control_prediction = (TH1F*)mllOscon->Clone("control_prediction");
684     control_prediction->SetLineColor(TColor::GetColor("#CF35CA"));
685 buchmann 1.42
686     prediction->SetLineColor(TColor::GetColor("#cc0066"));
687     mllOsig->SetLineColor(TColor::GetColor("#0000cc"));
688    
689 buchmann 1.45 if(!doMC) mllOsig->SetLineStyle(2);
690 buchmann 1.42 zlineshape->SetLineColor(TColor::GetColor("#006600"));
691     zlineshape->SetFillColor(TColor::GetColor("#006600"));
692     zlineshape->SetFillStyle(3002); // light dots, not crushing other information
693 buchmann 1.47 if(!doMC) {
694     mllOsig->SetLineWidth(2);
695     prediction->SetLineWidth(2);
696     zlineshape->SetLineWidth(2);
697     }
698 buchmann 1.42
699 fronga 1.7 // FIX Y RANGE TO EASE COMPARISON
700 fronga 1.22 mllsig->SetMaximum(ymax);
701 buchmann 1.30 float PreviousMinimum=mllsig->GetMinimum();
702     mllsig->SetMinimum(0);
703 fronga 1.22 mllsigEE->SetMaximum(ymax);
704     mllsigMM->SetMaximum(ymax);
705     mllOsig->SetMaximum(ymax);
706     mllOscon->SetMaximum(ymax);
707     subtracted->SetMaximum(60);
708     subtracted->SetMinimum(-30);
709     subtractedControl->SetMaximum(65);
710     subtractedControl->SetMinimum(-30);
711 fronga 1.7
712 buchmann 1.3
713 fronga 1.7 // 1.- Signal region comparison
714 buchmann 1.30 TBox *srbox = new TBox(20,0,70,mllsig->GetMaximum());
715 buchmann 1.1 srbox->SetFillStyle(0);
716     srbox->SetLineColor(TColor::GetColor("#298A08"));
717     srbox->SetLineWidth(3);
718 buchmann 1.23
719 fronga 1.10
720 buchmann 1.55 float EtaCut=DetectEtaCut();
721    
722     stringstream MetHeader1;
723     stringstream MetHeader2;
724     MetHeader1 << "N_{jets}#geq" << snjets.str() << ", E_{T}^{miss}>" << cutat << " GeV";
725     MetHeader2 << "|#eta|<" << EtaCut;
726 fronga 1.19 stringstream MetHeaderCon;
727 fronga 1.39 // MetHeaderCon << "N_{j}=2, N_{b}>0, 75<MET<150 GeV";
728 buchmann 1.51 MetHeaderCon << "N_{jets}=2, 100<E_{T}^{miss}<150 GeV";
729 fronga 1.10 stringstream saveasSig;
730     saveasSig << "MetPlots/mll_sig" << cutat << "__" << name;
731 buchmann 1.41
732     TLegend* leg;
733    
734    
735     srbox->SetLineColor(TColor::GetColor("#00cc33"));
736 buchmann 1.55 TH1F *emptyh = new TH1F();
737 buchmann 1.41
738 fronga 1.10 if ( !doMC ) {
739 fronga 1.39 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
740     rcan->cd();
741 fronga 1.10 mllsig->Draw();
742     TGraphErrors *stat3j = MakeErrorGraph(prediction);
743     stat3j->Draw("2,same");
744     mllOsig->Draw("histo,same");
745     zlineshape->Draw("histo,same");
746     prediction->Draw("histo,same");
747     mllsig->Draw("same");
748     DrawPrelim();
749     leg = make_legend();
750 fronga 1.19 leg->SetX1(0.52);
751 buchmann 1.55 leg->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
752     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
753 fronga 1.10 leg->AddEntry(mllsig,"Data","PL");
754     leg->AddEntry(prediction,"All bg prediction","L");
755 fronga 1.7 leg->AddEntry(mllOsig,"bg without Z","L");
756 buchmann 1.30 if(!UseSpecialZprediction) leg->AddEntry(zlineshape,"Z lineshape","L");
757     else leg->AddEntry(zlineshape,"bg with Z (JZB)","L");
758 fronga 1.7 leg->AddEntry(stat3j,"stat. uncert.","F");
759 fronga 1.10 leg->AddEntry(srbox,"SR","F");
760     leg->Draw();
761     srbox->Draw();
762 buchmann 1.45 sel->Draw();
763 buchmann 1.51 Save_With_Ratio_And_Line( mllsig, prediction, rcan, saveasSig.str() );
764 buchmann 1.41
765     //now also add systematic as a nice touch :-)
766     TPad* rcan2 = new TPad("rcan2","rcan2",0,0,1,1);
767    
768 buchmann 1.51
769     float ConsideredZWidth=20;
770     if(Contains((const char*)Restrmasscut,")<10")) ConsideredZWidth=10;
771    
772    
773     TLine *SRline = new TLine(70,0,70,ymax);
774     TLine *ZLowLine = new TLine(91.2-ConsideredZWidth,0,91.2-ConsideredZWidth,ymax);
775     TLine *ZHiLine = new TLine(91.2+ConsideredZWidth,0,91.2+ConsideredZWidth,ymax);
776     SRline->SetLineStyle(2);
777     ZLowLine->SetLineStyle(2);
778     ZHiLine->SetLineStyle(2);
779     SRline->SetLineColor(kGray+2);
780     ZLowLine->SetLineColor(kGray+2);
781     ZHiLine->SetLineColor(kGray+2);
782    
783 buchmann 1.41 rcan2->cd();
784     mllsig->Draw();
785     TH1F *SystHisto = (TH1F*)prediction->Clone("SystHisto");
786     TGraphErrors *stat3jS = MakeErrorGraphSystematicAndStatistical(mllOsig,zlineshape,prediction,SystHisto);
787     stat3jS->Draw("2,same");
788     zlineshape->Draw("histo,same");
789     prediction->Draw("histo,same");
790     mllsig->Draw("same");
791     DrawPrelim();
792     leg = make_legend();
793     leg->SetX1(0.52);
794 buchmann 1.55 leg->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
795     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
796 buchmann 1.41 leg->AddEntry(mllsig,"Data","PL");
797     leg->AddEntry(prediction,"Total backgrounds","L");
798     if(!UseSpecialZprediction) leg->AddEntry(zlineshape,"DY (scaled) ","FL");
799 buchmann 1.56 else leg->AddEntry(zlineshape,"DY (data-driven)","F");
800 buchmann 1.41 leg->AddEntry(stat3jS,"Total uncert.","F");
801     leg->Draw();
802 buchmann 1.45 sel->Draw();
803 buchmann 1.51 SRline->Draw();
804     ZLowLine->Draw();
805     ZHiLine->Draw();
806    
807 buchmann 1.41
808 buchmann 1.51 save_with_ratio_and_sys_band(ConsideredZWidth,mllsig, prediction, rcan2, (saveasSig.str()+"__WithSys"), false, false, "data/pred",SystHisto );
809 buchmann 1.41
810     mllsig->GetYaxis()->SetRangeUser(0.1,ymax);
811    
812     TPad *rcan3 = new TPad("rcan3","rcan3",0,0,1,1);
813     rcan3->cd();
814     rcan3->SetLogy(1);
815     rcan3->cd(); //need to switch back to pad (otherwise it's blank for some reason)
816     mllsig->Draw();
817     stat3jS->Draw("2,same");
818     zlineshape->Draw("histo,same");
819     prediction->Draw("histo,same");
820     mllsig->Draw("same");
821     DrawPrelim();
822 buchmann 1.45 sel->Draw();
823 buchmann 1.51 save_with_ratio_and_sys_band(ConsideredZWidth, mllsig, prediction, rcan3, (saveasSig.str()+"__WithSys___LOG"), false, false, "data/pred",SystHisto );
824 buchmann 1.41
825 fronga 1.10 } else {
826     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
827     rcan->cd();
828     mllsig->Draw();
829 fronga 1.39 mcMllsig->Draw("same,hist");
830 fronga 1.10 prediction->Draw("histo,same");
831     mllsig->Draw("same");
832     DrawPrelim();
833     leg = allsamples.allbglegend();
834 buchmann 1.55 leg->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
835     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
836 fronga 1.19 leg->SetX1(0.52);
837 fronga 1.10 leg->AddEntry(prediction,"All bg prediction","L");
838     leg->AddEntry(srbox,"SR","F");
839     leg->Draw();
840     srbox->Draw();
841 buchmann 1.45 sel->Draw();
842 buchmann 1.51 Save_With_Ratio_And_Line( mllsig, *mcMllsig, rcan, saveasSig.str() );
843 buchmann 1.30
844     ExtractScaleFactor(mllsig,mllOsig,mcMllsig,mcMllOsig,prediction,leg,saveasSig.str(),srbox);
845 fronga 1.7 }
846 buchmann 1.1
847 fronga 1.8 // 1b. MC: split ee and mumu
848     if ( doMC ) {
849 fronga 1.10 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
850     rcan->cd();
851 fronga 1.8 mllsigEE->Draw();
852 fronga 1.39 mcMllsigEE->Draw("same,hist");
853 fronga 1.8 mllsigEE->Draw("same");
854     DrawPrelim();
855     leg->Draw();
856     srbox->Draw();
857 buchmann 1.45 sel->Draw();
858 buchmann 1.51 Save_With_Ratio_And_Line( mllsigEE, *mcMllsigEE,rcan->cd(),saveasSig.str()+"_ee" );
859 fronga 1.8
860 fronga 1.10 rcan = new TPad("rcan","rcan",0,0,1,1);
861     rcan->cd();
862 fronga 1.8 mllsigMM->Draw();
863 fronga 1.40 mcMllsigMM->Draw("histo,same");
864 fronga 1.8 mllsigMM->Draw("same");
865     DrawPrelim();
866     leg->Draw();
867     srbox->Draw();
868 buchmann 1.45 sel->Draw();
869 buchmann 1.51 Save_With_Ratio_And_Line( mllsigMM, *mcMllsigMM,rcan,saveasSig.str()+"_mm" );
870 fronga 1.8 }
871 fronga 1.14
872     // 1c. MC: compare of and sf
873     if ( doMC ) {
874     TH1F* hMcMllsig = CollapseStack( *mcMllsig);
875 fronga 1.15 leg = allsamples.allbglegend("");
876 buchmann 1.55 leg->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
877     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
878 fronga 1.15 // Change "Data" label by hand
879     ((TLegendEntry*)leg->GetListOfPrimitives()->At(0))->SetLabel("Same-flavor (MC)");
880 fronga 1.14 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
881     rcan->cd();
882 fronga 1.22 hMcMllsig->SetMaximum(ymax);
883 fronga 1.14 hMcMllsig->Draw("E");
884     mcMllOsig->Draw("same,hist");
885     hMcMllsig->Draw("same,E");
886     DrawMCPrelim();
887 fronga 1.19 leg->SetX1(0.52);
888 fronga 1.14 leg->AddEntry(srbox,"SR","F");
889     leg->Draw();
890     srbox->Draw();
891 buchmann 1.45 sel->Draw();
892 buchmann 1.51 Save_With_Ratio_And_Line( hMcMllsig, *mcMllOsig, rcan, saveasSig.str()+"_mconly");
893 fronga 1.14
894     }
895 buchmann 1.1
896 fronga 1.7 // 2.- Signal region comparison - LOG scale
897 fronga 1.10 if ( !doMC ) {
898     tcan->cd();
899     mllsig->SetMinimum(0.2); // FIX Y RANGE TO EASE COMPARISON
900     //mllsig->SetMaximum(mllsig->GetMaximum()*4.0);
901     srbox->SetY2(mllsig->GetMaximum());
902     tcan->SetLogy(1);
903     stringstream saveasSig2;
904     saveasSig2 << "MetPlots/mll_sig_ZLINESHAPE_" << cutat << "__" << name;
905    
906 buchmann 1.45 sel->Draw();
907 fronga 1.10 CompleteSave(tcan,saveasSig2.str());
908     tcan->SetLogy(0);
909     }
910 buchmann 1.1
911 fronga 1.7
912     // 3.- Signal region, background subtracted
913 fronga 1.8 if ( !doMC ) {
914 fronga 1.10 tcan->cd();
915 buchmann 1.13 for(int i=1;i<=subtracted->GetNbinsX();i++) {
916 fronga 1.8 subtracted->SetBinContent(i,subtracted->GetBinContent(i)-zlineshape->GetBinContent(i));
917 buchmann 1.13 subtractedControl->SetBinContent(i,subtractedControl->GetBinContent(i)-zlineshapeControl->GetBinContent(i));
918 fronga 1.8 }
919 buchmann 1.3
920 fronga 1.8 TGraphErrors *subtrerr = MakeErrorGraph(baseline);
921     subtracted->Draw();
922     subtrerr->Draw("2,same");
923     subtracted->Draw("same");
924     DrawPrelim();
925     TLegend *DiffLeg = make_legend();
926 fronga 1.22 DiffLeg->SetX1(0.4);
927 fronga 1.8 DiffLeg->SetFillStyle(0);
928 buchmann 1.55 leg->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
929     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
930 fronga 1.8 DiffLeg->AddEntry(subtracted,"observed - predicted","PL");
931 fronga 1.19 DiffLeg->AddEntry(subtrerr,"stat. uncert","F");
932 fronga 1.8 DiffLeg->AddEntry((TObject*)0,"","");
933     DiffLeg->AddEntry((TObject*)0,"","");
934     DiffLeg->Draw();
935 buchmann 1.45 sel->Draw();
936 fronga 1.8
937     stringstream saveasSigSub;
938     saveasSigSub << "MetPlots/mll_sig_SUBTRACTED_" << cutat << "__" << name;
939    
940 fronga 1.22 //CompleteSave(tcan,saveasSigSub.str());
941 buchmann 1.13
942     // 3a.- Control region, background subtracted
943     TGraphErrors *subtrerrControl = MakeErrorGraph(baselineControl);
944     subtractedControl->Draw();
945     subtrerrControl->Draw("2,same");
946     subtractedControl->Draw("same");
947     DrawPrelim();
948 fronga 1.19 DiffLeg->SetHeader(MetHeaderCon.str().c_str());
949 buchmann 1.13 DiffLeg->Draw();
950     saveasSigSub.str("");
951 fronga 1.16 saveasSigSub << "MetPlots/mll_con_SUBTRACTED_" << cutat << "__" << name;
952 fronga 1.22 //CompleteSave(tcan,saveasSigSub.str());
953 buchmann 1.13
954    
955    
956 fronga 1.8 // 4.- Signal region, background subtracted, errors added in quadrature
957     TGraphErrors *subtrerr2 = (TGraphErrors*)subtrerr->Clone("subtrerr2");
958 buchmann 1.13 for(int i=1;i<=subtrerr2->GetN();i++) {
959     subtrerr2->SetPoint(i-1,subtracted->GetBinCenter(i),subtracted->GetBinContent(i));
960     subtrerr2->SetPointError(i-1,subtrerr2->GetErrorX(i),TMath::Sqrt(subtrerr2->GetErrorY(i)*subtrerr2->GetErrorY(i)+subtracted->GetBinError(i)*subtracted->GetBinError(i)));
961 fronga 1.8 }
962     TLine* l = new TLine(subtracted->GetBinLowEdge(1),0.,subtracted->GetBinLowEdge(subtracted->GetNbinsX()-1)+subtracted->GetBinWidth(1),0.);
963     l->SetLineWidth(subtracted->GetLineWidth());
964     subtracted->Draw();
965     subtrerr2->Draw("2,same");
966     l->Draw("same");
967     subtracted->Draw("same");
968     DrawPrelim();
969     TLegend *DiffLeg2 = make_legend();
970 fronga 1.22 DiffLeg2->SetX1(0.4);
971 buchmann 1.55 DiffLeg2->AddEntry(emptyh,MetHeader1.str().c_str(),"h");
972     DiffLeg2->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
973 fronga 1.8 DiffLeg2->SetFillStyle(0);
974     DiffLeg2->AddEntry(subtracted,"observed - predicted","PL");
975 fronga 1.19 DiffLeg2->AddEntry(subtrerr2,"stat. uncert","F");
976 fronga 1.8 DiffLeg2->AddEntry((TObject*)0,"","");
977     DiffLeg2->AddEntry((TObject*)0,"","");
978     DiffLeg2->Draw();
979    
980     stringstream saveasSigSub2;
981     saveasSigSub2 << "MetPlots/mll_sig_SUBTRACTED_quadr_" << cutat << "__" << name;
982 fronga 1.5
983 buchmann 1.45 sel->Draw();
984 fronga 1.8 CompleteSave(tcan,saveasSigSub2.str());
985 fronga 1.5
986 buchmann 1.13
987    
988     //4a.- Control region, background subtracted, errors added in quadrature
989     TGraphErrors *subtrerr2Control = (TGraphErrors*)subtrerrControl->Clone("subtrerr2Control");
990     for(int i=1;i<=subtrerr2Control->GetN();i++) {
991     subtrerr2Control->SetPoint(i-1,subtractedControl->GetBinCenter(i),subtractedControl->GetBinContent(i));
992     float width=subtrerr2Control->GetErrorX(i);
993     if(i==subtrerr2Control->GetN()) width=subtrerr2Control->GetErrorX(i-1);
994     subtrerr2Control->SetPointError(i-1,width,TMath::Sqrt(subtrerr2Control->GetErrorY(i)*subtrerr2Control->GetErrorY(i)+subtractedControl->GetBinError(i)*subtractedControl->GetBinError(i)));
995     }
996     TLine* lControl = new TLine(subtractedControl->GetBinLowEdge(1),0.,subtractedControl->GetBinLowEdge(subtractedControl->GetNbinsX()-1)+subtractedControl->GetBinWidth(1),0.);
997     lControl->SetLineWidth(subtractedControl->GetLineWidth());
998     subtractedControl->Draw();
999     subtrerr2Control->Draw("2,same");
1000     lControl->Draw("same");
1001     subtractedControl->Draw("same");
1002     DrawPrelim();
1003 fronga 1.22 DiffLeg2->SetHeader(MetHeaderCon.str().c_str());
1004 buchmann 1.13 DiffLeg2->Draw();
1005    
1006     saveasSigSub2.str("");
1007 fronga 1.16 saveasSigSub2 << "MetPlots/mll_con_SUBTRACTED_quadr_" << cutat << "__" << name;
1008 buchmann 1.13
1009 buchmann 1.45 sel->Draw();
1010 buchmann 1.13 CompleteSave(tcan,saveasSigSub2.str());
1011    
1012 fronga 1.8 delete DiffLeg;
1013     delete DiffLeg2;
1014 buchmann 1.13
1015 fronga 1.8 } // !doMC
1016 buchmann 1.3
1017    
1018 fronga 1.7 // 5.- Control region comparison
1019 fronga 1.16 // scalefactor = (mllscon->Integral(scaleBinLow,scaleBinHigh)-mllOscon->Integral(scaleBinLow,scaleBinHigh));
1020     // scalefactor /= zlineshape->Integral(scaleBinLow,scaleBinHigh);
1021     // zlineshape->Scale(scalefactor);
1022     control_prediction->Add(zlineshapeControl);
1023    
1024 fronga 1.22 control_prediction->SetMaximum(ymax); // FIX MAXIMUM TO EASE COMPARISON
1025 buchmann 1.37 control_prediction->SetMinimum(0);
1026 fronga 1.7
1027 buchmann 1.37 TBox *cr1box = new TBox(20,0,70,control_prediction->GetMaximum());
1028 buchmann 1.1 cr1box->SetFillStyle(0);
1029     cr1box->SetLineColor(TColor::GetColor("#0404B4"));
1030     cr1box->SetLineWidth(3);
1031    
1032 fronga 1.14 TBox *cr2box = new TBox(120,0,xmax,control_prediction->GetMaximum());
1033 buchmann 1.1 cr2box->SetFillStyle(0);
1034     cr2box->SetLineColor(TColor::GetColor("#0404B4"));
1035     cr2box->SetLineWidth(3);
1036     cr2box->SetLineStyle(2);
1037    
1038 fronga 1.10 stringstream saveasCon;
1039     saveasCon << "MetPlots/mll_con" << cutat << "__" << name;
1040    
1041 fronga 1.7 TLegend *legc;
1042 fronga 1.10 //control_prediction->GetYaxis()->SetRangeUser(0,control_prediction->GetMaximum()*1.3);
1043     if ( !doMC ) {
1044 fronga 1.39 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1045     rcan->cd();
1046 buchmann 1.41 Color_t control_prediction_color = control_prediction->GetLineColor();
1047     int LineWidth = control_prediction->GetLineWidth();
1048     control_prediction->SetLineColor(TColor::GetColor("#FF4000"));
1049     control_prediction->SetLineWidth(2);
1050    
1051     TH1F *ControlSystHisto = (TH1F*)control_prediction->Clone("SystHisto");
1052     TGraphErrors *stat3jS = MakeErrorGraphSystematicAndStatistical(mllOscon,zlineshapeControl,control_prediction,ControlSystHisto);
1053 fronga 1.10 control_prediction->Draw("hist");
1054 buchmann 1.41 stat3jS->Draw("2,same");
1055 fronga 1.16 zlineshapeControl->Draw("histo,same");
1056 fronga 1.10 control_prediction->Draw("histo,same");
1057     mllscon->Draw("same");
1058     DrawPrelim();
1059 fronga 1.7 legc = make_legend();
1060 fronga 1.19 legc->SetX1(0.52);
1061     legc->SetHeader(MetHeaderCon.str().c_str());
1062 fronga 1.10 legc->AddEntry(mllscon,"Data","PL");
1063 buchmann 1.41 legc->AddEntry(control_prediction,"Total backgrounds","L");
1064     legc->AddEntry(zlineshapeControl,"DY (scaled)","FL");
1065     legc->AddEntry(stat3jS,"Total uncert.","F");
1066 fronga 1.10 legc->AddEntry(cr1box,"CR1","F");
1067     legc->AddEntry(cr2box,"CR2","F");
1068     legc->Draw();
1069     cr1box->Draw();
1070     cr2box->Draw();
1071 buchmann 1.45 sel->Draw();
1072 buchmann 1.41
1073 buchmann 1.51 save_with_ratio_and_sys_band(ConsideredZWidth, mllscon, control_prediction, rcan, saveasCon.str() , false, false, "data/pred",ControlSystHisto );
1074 buchmann 1.41
1075     control_prediction->SetLineColor(control_prediction_color);
1076     control_prediction->SetLineWidth(LineWidth);
1077 fronga 1.10 } else {
1078 buchmann 1.41 control_prediction->SetLineColor(TColor::GetColor("#FF4000"));
1079 fronga 1.10 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1080     rcan->cd();
1081     control_prediction->Draw("hist");
1082 fronga 1.39 mcMllscon->Draw("same,hist");
1083 fronga 1.10 control_prediction->Draw("histo,same");
1084     mllscon->Draw("same");
1085     DrawPrelim();
1086     legc = allsamples.allbglegend();
1087 fronga 1.19 legc->SetX1(0.52);
1088     legc->SetHeader(MetHeaderCon.str().c_str());
1089 fronga 1.10 legc->AddEntry(control_prediction,"All bg","L");
1090     legc->AddEntry(cr1box,"CR1","F");
1091     legc->AddEntry(cr2box,"CR2","F");
1092     legc->Draw();
1093     cr1box->Draw();
1094     cr2box->Draw();
1095 buchmann 1.45 sel->Draw();
1096 buchmann 1.51 Save_With_Ratio_And_Line( mllscon, *mcMllscon, rcan, saveasCon.str());
1097 fronga 1.10 }
1098 buchmann 1.1
1099 fronga 1.7 // 6. - Opposite-flavour data/MC comparison
1100     if ( doMC ) {
1101 fronga 1.10 TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1102     rcan->cd();
1103 fronga 1.7 mllOsig->SetLineColor(kBlack);
1104     mllOsig->Draw();
1105 fronga 1.39 mcMllOsig->Draw("same,hist");
1106 fronga 1.7 mllOsig->Draw("same");
1107     TLegend *legsdm = allsamples.allbglegend();
1108 buchmann 1.55 leg->AddEntry(emptyh,(MetHeader1.str()+", OF").c_str(),"h");
1109     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
1110 fronga 1.19 legsdm->SetX1(0.52);
1111 fronga 1.7 legsdm->Draw();
1112     stringstream saveasSigOF;
1113     saveasSigOF << "MetPlots/mll_sig_of_" << cutat << "__" << name;
1114 buchmann 1.45 sel->Draw();
1115 buchmann 1.51 Save_With_Ratio_And_Line( mllOsig, *mcMllOsig, rcan, saveasSigOF.str());
1116 fronga 1.7
1117 fronga 1.10 rcan = new TPad("rcan","rcan",0,0,1,1);
1118     rcan->cd();
1119 fronga 1.7 mllOscon->SetLineColor(kBlack);
1120     mllOscon->Draw();
1121 fronga 1.39 mcMllOscon->Draw("same,hist");
1122 fronga 1.7 mllOscon->Draw("same");
1123     TLegend *legcdm = allsamples.allbglegend();
1124 fronga 1.19 legcdm->SetHeader((MetHeaderCon.str()+", OF").c_str());
1125     legcdm->SetX1(0.52);
1126 fronga 1.7 legcdm->Draw();
1127     stringstream saveasConOF;
1128     saveasConOF << "MetPlots/mll_con_of_" << cutat << "__" << name;
1129 buchmann 1.45 sel->Draw();
1130 buchmann 1.51 Save_With_Ratio_And_Line( mllOscon, *mcMllOscon, rcan, saveasConOF.str());
1131 fronga 1.10
1132 fronga 1.7 delete legsdm;
1133     delete legcdm;
1134 fronga 1.10 }
1135 buchmann 1.37
1136     // 7. - Opposite flavor data/MC comparison for pt (!)
1137     if ( doMC ) {
1138     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1139     rcan->cd();
1140     rcan->SetLogy(1);
1141    
1142     ptsig->SetLineColor(kBlack);
1143     ptsig->Draw();
1144 fronga 1.39 mcptsig->Draw("same,hist");
1145 buchmann 1.37 ptsig->Draw("same");
1146     TLegend *legsdm = allsamples.allbglegend();
1147 buchmann 1.55 legsdm->AddEntry(emptyh,(MetHeader1.str()+", SF").c_str(),"h");
1148     legsdm->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
1149 buchmann 1.37 legsdm->SetX1(0.52);
1150     legsdm->Draw();
1151     stringstream saveasSigOF2;
1152     saveasSigOF2 << "MetPlots/mll_sig_sf_PTdist_" << cutat << "__" << name;
1153 buchmann 1.45 sel->Draw();
1154 buchmann 1.51 Save_With_Ratio_And_Line( ptsig, *mcptsig, rcan, saveasSigOF2.str());
1155 buchmann 1.37
1156     delete legsdm;
1157     }
1158    
1159    
1160     // 8. - Opposite flavor data/MC comparison for pt (!)
1161     if ( doMC ) {
1162     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1163     rcan->cd();
1164     rcan->SetLogy(1);
1165    
1166     ptOsig->SetLineColor(kBlack);
1167     ptOsig->Draw();
1168 fronga 1.39 mcptOsig->Draw("same,hist");
1169 buchmann 1.37 ptOsig->Draw("same");
1170     TLegend *legsdm = allsamples.allbglegend();
1171 buchmann 1.55 leg->AddEntry(emptyh,(MetHeader1.str()+", OF").c_str(),"h");
1172     leg->AddEntry(emptyh,MetHeader2.str().c_str(),"h");
1173 buchmann 1.37 legsdm->SetX1(0.52);
1174     legsdm->Draw();
1175     stringstream saveasSigOF3;
1176     saveasSigOF3 << "MetPlots/mll_sig_of_PTdist_" << cutat << "__" << name;
1177 buchmann 1.45 sel->Draw();
1178 buchmann 1.51 Save_With_Ratio_And_Line( ptOsig, *mcptOsig, rcan, saveasSigOF3.str());
1179 buchmann 1.37
1180     delete legsdm;
1181     }
1182    
1183 fronga 1.39 // 9. - Shape comparison between SR and CR
1184     if ( !doMC ) { // SF
1185     TH1F* scaled_conSF = (TH1F*)mllscon->Clone("scaled_conSF");
1186     scaled_conSF->SetLineColor(kBlue);
1187     scaled_conSF->Scale(mllsig->Integral()/scaled_conSF->Integral());
1188     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1189     rcan->cd();
1190     mllsig->Draw();
1191     scaled_conSF->Draw("same,hist");
1192     mllsig->Draw("same");
1193     TLegend *leg9 = make_legend("Same-flavor",0.5,0.7,false);
1194     leg9->SetHeader("Same-flavor");
1195     leg9->AddEntry(mllsig,"SR","pl");
1196     leg9->AddEntry(scaled_conSF,"CR (scaled)","l");
1197     leg9->Draw();
1198     DrawPrelim();
1199     stringstream saveas9;
1200     saveas9 << "MetPlots/mll_compSF_" << cutat << "__" << name;
1201 buchmann 1.45 sel->Draw();
1202 buchmann 1.51 Save_With_Ratio_And_Line( mllsig, scaled_conSF, rcan, saveas9.str());
1203 fronga 1.39 delete leg9;
1204     } else {
1205     TH1F* hMcMllsig = CollapseStack( *mcMllsig,"hMcMllSig");
1206     TH1F* scaled_conSF = CollapseStack( *mcMllscon,"scaled_conSF");
1207     scaled_conSF->SetLineColor(kBlue);
1208     scaled_conSF->SetFillStyle(0);
1209     scaled_conSF->Scale(hMcMllsig->Integral()/scaled_conSF->Integral());
1210     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1211     rcan->cd();
1212     hMcMllsig->SetMaximum(ymax);
1213     hMcMllsig->Draw();
1214     scaled_conSF->Draw("same,hist");
1215     hMcMllsig->Draw("same");
1216     TLegend *leg9 = make_legend("Same-flavor MC",0.5,0.7,false);
1217     leg9->SetHeader("Same-flavor MC");
1218     leg9->AddEntry(hMcMllsig,"SF SR","pl");
1219     leg9->AddEntry(scaled_conSF,"SF CR (scaled)","l");
1220     leg9->Draw();
1221     DrawMCPrelim();
1222     stringstream saveas9;
1223     saveas9 << "MetPlots/mll_compSF_" << cutat << "__" << name;
1224 buchmann 1.45 sel->Draw();
1225 buchmann 1.51 Save_With_Ratio_And_Line( hMcMllsig, scaled_conSF, rcan, saveas9.str());
1226 fronga 1.39 delete leg9;
1227     }
1228     if ( !doMC ) { // OF
1229     TH1F* scaled_conOF = (TH1F*)control_prediction->Clone("scaled_conOF");
1230     scaled_conOF->SetLineColor(kBlue);
1231     scaled_conOF->Scale(mllOsig->Integral()/scaled_conOF->Integral());
1232     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1233     rcan->cd();
1234     mllOsig->SetLineColor(kBlack);
1235     mllOsig->Draw();
1236     scaled_conOF->Draw("same,hist");
1237     mllOsig->Draw("same");
1238     TLegend *leg9 = make_legend("Opposite-flavor",0.5,0.7,false);
1239     leg9->AddEntry(mllOsig,"OF SR","pl");
1240     leg9->AddEntry(scaled_conOF,"OF CR (scaled)","l");
1241     leg9->Draw();
1242     DrawPrelim();
1243     stringstream saveas9;
1244     saveas9 << "MetPlots/mll_compOF_" << cutat << "__" << name;
1245 buchmann 1.45 sel->Draw();
1246 buchmann 1.51 Save_With_Ratio_And_Line( mllOsig, scaled_conOF, rcan, saveas9.str());
1247 fronga 1.39
1248     delete leg9;
1249     } else { // SF MC
1250     TH1F* hMcMllOsig = CollapseStack( *mcMllOsig, "hMcMllOsig");
1251     TH1F* scaled_conOF = CollapseStack( *mcMllOscon, "scaled_conOF");
1252     scaled_conOF->SetLineColor(kBlue);
1253     scaled_conOF->SetFillStyle(0);
1254     scaled_conOF->Scale(hMcMllOsig->Integral()/scaled_conOF->Integral());
1255     TPad* rcan = new TPad("rcan","rcan",0,0,1,1);
1256     rcan->cd();
1257     hMcMllOsig->SetMaximum(ymax);
1258     hMcMllOsig->Draw();
1259     scaled_conOF->Draw("same,hist");
1260     hMcMllOsig->Draw("same");
1261     TLegend *leg9 = make_legend("Opposite-flavor MC",0.5,0.7,false);
1262     leg9->AddEntry(hMcMllOsig, "OF SR","pl");
1263     leg9->AddEntry(scaled_conOF,"OF CR (scaled)","l");
1264     leg9->Draw();
1265     DrawMCPrelim();
1266     stringstream saveas9;
1267     saveas9 << "MetPlots/mll_compOF_" << cutat << "__" << name;
1268 buchmann 1.45 sel->Draw();
1269 buchmann 1.51 Save_With_Ratio_And_Line( hMcMllOsig, scaled_conOF, rcan, saveas9.str());
1270 fronga 1.39 delete leg9;
1271     }
1272 buchmann 1.37
1273 fronga 1.7
1274 fronga 1.10 // Memory clean-up
1275     if (doMC) {
1276 fronga 1.7 delete mcMllscon;
1277     delete mcMllOscon;
1278     delete mcMllsig;
1279 fronga 1.8 delete mcMllsigEE;
1280     delete mcMllsigMM;
1281 fronga 1.7 delete mcMllOsig;
1282     }
1283 buchmann 1.1
1284     delete cr1box;
1285     delete cr2box;
1286     delete srbox;
1287     delete legc;
1288     delete leg;
1289 fronga 1.7
1290 buchmann 1.55 delete emptyh;
1291    
1292 buchmann 1.1 delete mllscon;
1293 buchmann 1.50 delete mllsconEE;
1294     delete mllsconMM;
1295 buchmann 1.1 delete mllOscon;
1296 buchmann 1.50 delete mllOsconEM;
1297     delete mllOsconME;
1298 buchmann 1.1 delete mllsig;
1299 fronga 1.8 delete mllsigEE;
1300     delete mllsigMM;
1301 buchmann 1.1 delete mllOsig;
1302 buchmann 1.50 delete mllOsigEM;
1303     delete mllOsigME;
1304 buchmann 1.41 delete ptsig;
1305     delete ptOsig;
1306 fronga 1.7 delete zlineshape;
1307 buchmann 1.37 delete Ozlineshape;
1308 fronga 1.16 delete zlineshapeControl;
1309 buchmann 1.6 delete tcan;
1310 buchmann 1.48
1311     NiceSummary.close();
1312 buchmann 1.52
1313 buchmann 1.1 }
1314    
1315 buchmann 1.37
1316 buchmann 1.55 void DoMetPlots(string datajzb, string mcjzb, bool do_only_aachen=false, bool do_only_eth=false) {
1317 buchmann 1.27 switch_overunderflow(true);
1318 fronga 1.7 float metCuts[] = { 100., 150. };
1319 fronga 1.39 //float ymax[] = { 180., 170. };
1320 buchmann 1.55 float ymax[] = { 120., 140. };
1321 fronga 1.7 int jetCuts[] = { 3, 2 };
1322 buchmann 1.49 string leptCuts[] = { "pt1>20&&pt2>20", "pt1>20&&pt2>20&&pfTightHT>100" };
1323 fronga 1.7 bool nomc(0),domc(1);
1324 buchmann 1.37 string backup_basicqualitycut = (const char*) basicqualitycut;
1325     string backup_essentialcut = (const char*) essentialcut;
1326     string backup_basiccut = (const char*) basiccut;
1327 buchmann 1.46 string backup_leptoncut = (const char*) leptoncut;
1328 buchmann 1.37
1329 fronga 1.39 //zlineshapes(); // Rinout plots
1330 buchmann 1.55
1331     int initial_i=do_only_aachen;
1332     int final_i=2-do_only_eth;
1333    
1334     for ( int i=initial_i; i<final_i; ++i ) {
1335 buchmann 1.37 //need to make sure that the above changes actually have some effect. we therefore check all relevant cuts and
1336     //set the pt condition to 10/10 (yes you read that right). the addition cut (above) will therefore elevate it
1337     // to 20,10 or 20,20. otherwise basicqualitycut will impose 20,20 ...
1338 buchmann 1.46
1339     bool isAachen=i;//1=Aachen, 0=not.
1340 buchmann 1.37 string Sbasicqualitycut = backup_basicqualitycut;
1341 buchmann 1.46 if(i==1) Sbasicqualitycut = ReplaceAll(Sbasicqualitycut,")<1.4",")<2.4");
1342 buchmann 1.37 basicqualitycut=TCut(Sbasicqualitycut.c_str());
1343    
1344     string Sbasiccut = backup_basiccut;
1345 buchmann 1.46 if(i==1) Sbasiccut = ReplaceAll(Sbasiccut,")<1.4",")<2.4");
1346 buchmann 1.37 basiccut=TCut(Sbasiccut.c_str());
1347 fronga 1.39
1348 buchmann 1.37 string Sessentialcut = backup_essentialcut;
1349 buchmann 1.46 if(i==1) Sessentialcut = ReplaceAll(Sessentialcut,")<1.4",")<2.4");
1350 buchmann 1.37 essentialcut=TCut(Sessentialcut.c_str());
1351    
1352 buchmann 1.46 string Sleptoncut = backup_leptoncut;
1353     if(i==1) Sleptoncut = ReplaceAll(Sleptoncut,")<1.4",")<2.4");
1354     if(i==1) leptoncut=TCut(Sleptoncut.c_str());
1355    
1356 buchmann 1.45 cout << "Basic cut : " << (const char*) basiccut << endl;
1357     cout << "Essential cut : " << (const char*) essentialcut << endl;
1358 buchmann 1.52
1359 buchmann 1.55 //ProvideEEOverMMEstimate(cutOSSF&&TCut("pfJetGoodNum40==2")&&TCut(("mll>20&&"+leptCuts[i]).c_str()));
1360     ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&"+leptCuts[i]).c_str()),"",metCuts[i],jetCuts[i],nomc,ymax[i]);
1361 buchmann 1.52 ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&"+leptCuts[i]).c_str()),"",metCuts[i],jetCuts[i],domc,ymax[i]);
1362     ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30==0&&"+leptCuts[i]).c_str()),"bTagVeto30",metCuts[i], jetCuts[i],nomc,ymax[i]);
1363     ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30>0&&"+leptCuts[i]).c_str()),"AtLeastOneBJet30",metCuts[i],jetCuts[i],nomc,ymax[i]);
1364     ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30==0&&"+leptCuts[i]).c_str()),"bTagVeto30",metCuts[i], jetCuts[i],domc,ymax[i]);
1365 buchmann 1.51
1366 buchmann 1.52 ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30>0&&"+leptCuts[i]).c_str()),"AtLeastOneBJet30",metCuts[i], jetCuts[i],domc,ymax[i]);
1367 buchmann 1.51
1368    
1369 buchmann 1.52 ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30>1&&"+leptCuts[i]).c_str()),"AtLeastTwoBJet30",metCuts[i],jetCuts[i],nomc,ymax[i]);
1370     ProduceMetPlotsWithCut(isAachen, TCut(("mll>20&&pfJetGoodNumBtag30>2&&"+leptCuts[i]).c_str()),"AtLeastThreeBJet30",metCuts[i],jetCuts[i],nomc,ymax[i]);
1371 buchmann 1.51
1372 fronga 1.7 }
1373 buchmann 1.37 basicqualitycut=TCut(backup_basicqualitycut.c_str());
1374     basiccut =TCut(backup_basiccut.c_str());
1375     essentialcut =TCut(backup_essentialcut.c_str());
1376 buchmann 1.46 leptoncut =TCut(backup_leptoncut.c_str());
1377 buchmann 1.27 switch_overunderflow(false);
1378 buchmann 1.1 }
1379 buchmann 1.12
1380 buchmann 1.17 void LabelHisto(TH1 *MET_ratio,string titlex, string titley) {
1381     MET_ratio->GetXaxis()->SetTitle(titlex.c_str());
1382     MET_ratio->GetXaxis()->CenterTitle();
1383     MET_ratio->GetYaxis()->SetTitle(titley.c_str());
1384     MET_ratio->GetYaxis()->CenterTitle();
1385     }
1386    
1387 buchmann 1.23 TH1F* GetPredictedAndObservedMetShapes(TCut JetCut, string sPositiveCut,string sNegativeCut,string CorrectedMet,string ObservedMet, string JZBPosvar, string JZBNegvar, float MetCut, int is_data, bool isDYonly, bool isAachen) {
1388 buchmann 1.17
1389     //Steps:
1390     // 1) Prepare samples and histo definition (with "optimal" binning for MET cut)
1391     // 2) Fill MET histograms
1392     // 3) Fill JZB histograms
1393     // 4) Draw them and store them
1394     // 5) return predicted MET distribution as is (i.e. not scaled by factor of 2!)
1395    
1396 fronga 1.39 dout << "*************************************" << endl;
1397 buchmann 1.56 if(MetPlotsSpace::Debug) {
1398     cout << "** SUMMARY BEFORE STARTING DRAWING **" << endl;
1399     cout << "MET variable: " << ObservedMet << endl;
1400     cout << "Corr. MET var:" << CorrectedMet << endl;
1401     cout << "JZB pos. var: " << JZBPosvar << endl;
1402     cout << "JZB neg. var: " << JZBNegvar << endl;
1403     cout << "JZB pos cut : " << sPositiveCut << endl;
1404     cout << "JZB neg cut : " << sNegativeCut << endl;
1405     }
1406 buchmann 1.30
1407 buchmann 1.46 if(isAachen) MetPlotsSpace::Zprediction_Uncertainty=0.3;
1408 buchmann 1.30
1409 buchmann 1.17 //Step 1: Prepare samples and histo definition
1410     vector<int> SelectedSamples;
1411     if(is_data==mc&&isDYonly) {
1412 buchmann 1.56 SelectedSamples=allsamples.FindSample("DYJets");
1413 buchmann 1.17 if(SelectedSamples.size()==0) {
1414     write_error(__FUNCTION__,"Cannot continue, there seems to be no DY sample without Taus - goodbye!");
1415     assert(SelectedSamples.size()>0);
1416     }
1417     }
1418    
1419     float DisplayedBinSize=10.0; // this is the bin size that we use for plotting
1420    
1421 buchmann 1.21 float BinWidth=1.0;
1422 buchmann 1.17 float xmin=0;
1423 buchmann 1.37 float xmax=150;
1424 buchmann 1.23 if(isAachen) xmax=160;
1425 buchmann 1.21 if(MetCut>=xmax) xmax=MetCut+10;
1426 buchmann 1.17 int nbins=int((xmax-xmin)/BinWidth);
1427 buchmann 1.23
1428     float pt2cut=20;
1429     if(isAachen)pt2cut=10;
1430    
1431 buchmann 1.17 stringstream basiccut;
1432 buchmann 1.23 basiccut << (const char*) JetCut << "&&" << (const char*) Restrmasscut << "&&" << (const char*) leptoncut << "&&pt1>20&&pt2>" << pt2cut;
1433 buchmann 1.17
1434 buchmann 1.56 if(is_data==mc&&isDYonly) basiccut << " && !EventZToTaus";
1435    
1436 buchmann 1.17 stringstream cMET_observed;
1437     cMET_observed << "(" << basiccut.str() << "&&(" << sPositiveCut << ")&&" << (const char*) cutOSSF << ")";
1438     stringstream cMET_ttbar_pred;
1439     cMET_ttbar_pred << "(" << basiccut.str() << "&&(" << sPositiveCut << ")&&" << (const char*) cutOSOF << ")";
1440     stringstream cMET_osof_pred;
1441     cMET_osof_pred << "(" << basiccut.str() << "&&(" << sNegativeCut << ")&&" << (const char*) cutOSOF << ")";
1442     stringstream cMET_ossf_pred;
1443     cMET_ossf_pred << "(" << basiccut.str() << "&&(" << sNegativeCut << ")&&" << (const char*) cutOSSF << ")";
1444    
1445     //Step 2: Fill Met histograms
1446 buchmann 1.28 float bottommargin=gStyle->GetPadBottomMargin();
1447     float canvas_height=gStyle->GetCanvasDefH();
1448     float canvas_width=gStyle->GetCanvasDefW();
1449     float ratiospace=0.25;// space the ratio should take up (relative to original pad)
1450    
1451     float ratiobottommargin=0.3;
1452     float ratiotopmargin=0.1;
1453    
1454     float xstretchfactor=((1-ratiospace)*(1-gStyle->GetPadTopMargin()))/((1)*ratiospace);
1455    
1456     TCanvas *main_canvas = new TCanvas("main_canvas","main_canvas",(Int_t)canvas_width,(Int_t)(canvas_height*(1+ratiospace)));
1457     TPad *mainpad = new TPad("mainpad","mainpad",0,1-(1.0/(1+ratiospace)),1,1);//top (main) pad
1458     TPad *coverpad = new TPad("coverpad","coverpad",gStyle->GetPadLeftMargin()-0.008,1-(1.0/(1+ratiospace))-0.04,1,1-(1.0/(1+ratiospace))+0.103);//pad covering up the x scale
1459     TPad *bottompad = new TPad("bottompad", "Ratio Pad",0,0,1,(1-(1-bottommargin)/(1+ratiospace))-0.015); //bottom pad
1460    
1461     main_canvas->Range(0,0,1,1);
1462     main_canvas->SetBorderSize(0);
1463     main_canvas->SetFrameFillColor(0);
1464    
1465     mainpad->Draw();
1466     mainpad->cd();
1467     mainpad->SetLogy(1);
1468     mainpad->Range(0,0,1,1);
1469     mainpad->SetFillColor(kWhite);
1470     mainpad->SetBorderSize(0);
1471     mainpad->SetFrameFillColor(0);
1472    
1473    
1474    
1475    
1476 buchmann 1.17 TH1F *MET_observed = allsamples.Draw("MET_observed",ObservedMet,nbins,xmin,xmax,"MET [GeV]","events",
1477 buchmann 1.26 TCut(cMET_observed.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1478 buchmann 1.17 TH1F *MET_ossf_pred = allsamples.Draw("MET_ossf_pred",CorrectedMet,nbins,xmin,xmax,"MET [GeV]","events",
1479 buchmann 1.26 TCut(cMET_ossf_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1480 buchmann 1.17 TH1F *MET_osof_pred = allsamples.Draw("MET_osof_pred",CorrectedMet,nbins,xmin,xmax,"MET [GeV]","events",
1481 buchmann 1.26 TCut(cMET_osof_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1482 buchmann 1.17 TH1F *MET_ttbar_pred= allsamples.Draw("MET_ttbar_pred",ObservedMet,nbins,xmin,xmax,"MET [GeV]","events",
1483 buchmann 1.26 TCut(cMET_ttbar_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1484 buchmann 1.17
1485 buchmann 1.25
1486 buchmann 1.37 if((isDYonly && is_data==mc) || is_data==data) {
1487 buchmann 1.52 TH1F *MET_truth = allsamples.Draw("MET_truth",ObservedMet,1,MetCut,10000,"MET [GeV]","events",TCut(((string)"met[4]/MetFactor>"+any2string(MetCut)).c_str())&&cutOSSF&&TCut(basiccut.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1488     TH1F *eeMET_truth = allsamples.Draw("eeMET_truth",ObservedMet,1,MetCut,10000,"MET [GeV]","events",TCut(((string)"id1==0 && met[4]/MetFactor>"+any2string(MetCut)).c_str())&&cutOSSF&&TCut(basiccut.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1489     TH1F *mmMET_truth = allsamples.Draw("mmMET_truth",ObservedMet,1,MetCut,10000,"MET [GeV]","events",TCut(((string)"id1==1 && met[4]/MetFactor>"+any2string(MetCut)).c_str())&&cutOSSF&&TCut(basiccut.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1490     TH1F *MET_otruth = allsamples.Draw("MET_otruth",ObservedMet,1,MetCut,10000,"MET [GeV]","events",TCut(((string)"met[4]/MetFactor>"+any2string(MetCut)).c_str())&&cutOSOF&&TCut(basiccut.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1491 buchmann 1.46 if(is_data==mc) write_info(__FUNCTION__,"In Z peak: DY Truth is : "+any2string(MET_truth->Integral()));
1492 buchmann 1.37 if(is_data==data) {
1493 buchmann 1.48 ofstream NiceSummary;
1494     NiceSummary.open("Summary.txt",ios::app);
1495     write_info(__FUNCTION__,"In Z peak: Observed : " +any2string(MET_truth->Integral()) + "( ee: "+any2string(eeMET_truth->Integral()) + " , mm: "+any2string(mmMET_truth->Integral())+" )");
1496     write_info(__FUNCTION__,"In Z peak: TTbar est: " +any2string(MET_otruth->Integral()));
1497     NiceSummary << " **** Z peak estimation **** " << endl;
1498 buchmann 1.50 NiceSummary << "Z peak observed : " << any2string(MET_truth->Integral()) << "( ee: " <<any2string(eeMET_truth->Integral()) << " , mm: "<<any2string(mmMET_truth->Integral()) << " )" << endl;
1499 buchmann 1.48 NiceSummary << "Z peak ttbar pred: " << any2string(MET_otruth->Integral()) << endl;
1500     NiceSummary.close();
1501 buchmann 1.37 }
1502 buchmann 1.25 delete MET_truth;
1503 buchmann 1.37 delete MET_otruth;
1504 buchmann 1.45 delete eeMET_truth;
1505     delete mmMET_truth;
1506 buchmann 1.25 }
1507    
1508 buchmann 1.45 // write_info(__FUNCTION__,"Full cut!");
1509 buchmann 1.52 // cout << (const char*)(TCut(((string)"met[4]/MetFactor>"+any2string(MetCut)).c_str())&&cutOSSF&&TCut(basiccut.str().c_str())) << endl;
1510 buchmann 1.25
1511 buchmann 1.17 TH1F *MET_predicted=(TH1F*)MET_ossf_pred->Clone("MET_predicted");
1512     MET_predicted->Add(MET_osof_pred,-1);
1513     MET_predicted->Add(MET_ttbar_pred);
1514     MET_predicted->SetLineColor(kRed);
1515     MET_observed->SetLineColor(kBlack);
1516    
1517     TH1F *MET_Z_prediction=(TH1F*)MET_ossf_pred->Clone("MET_Z_prediction");
1518     MET_Z_prediction->Add(MET_osof_pred,-1);
1519     MET_Z_prediction->SetLineColor(kBlue);
1520    
1521     LabelHisto(MET_observed,"MET (GeV)","events");
1522    
1523     //Step 3: Fill JZB histograms
1524 buchmann 1.25
1525 buchmann 1.17 TH1F *JZB_observed = allsamples.Draw("JZB_observed",JZBPosvar,nbins,xmin,xmax,"JZB [GeV]","events",
1526     TCut(cMET_observed.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1527     TH1F *JZB_ossf_pred = allsamples.Draw("JZB_ossf_pred",JZBNegvar,nbins,xmin,xmax,"JZB [GeV]","events",
1528     TCut(cMET_ossf_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1529     TH1F *JZB_osof_pred = allsamples.Draw("JZB_osof_pred",JZBNegvar,nbins,xmin,xmax,"JZB [GeV]","events",
1530     TCut(cMET_osof_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1531     TH1F *JZB_ttbar_pred= allsamples.Draw("JZB_ttbar_pred",JZBPosvar,nbins,xmin,xmax,"JZB [GeV]","events",
1532     TCut(cMET_ttbar_pred.str().c_str()),is_data,PlottingSetup::luminosity,SelectedSamples);
1533    
1534     TH1F *JZB_predicted=(TH1F*)JZB_ossf_pred->Clone("JZB_predicted");
1535     JZB_predicted->Add(JZB_osof_pred,-1);
1536     JZB_predicted->Add(JZB_ttbar_pred);
1537     JZB_predicted->SetLineColor(kRed);
1538     JZB_observed->SetLineColor(kBlack);
1539    
1540     TH1F *JZB_Z_prediction=(TH1F*)JZB_ossf_pred->Clone("JZB_Z_prediction");
1541     JZB_Z_prediction->Add(JZB_osof_pred,-1);
1542     MET_Z_prediction->SetLineColor(kBlue);
1543    
1544     LabelHisto(JZB_observed,"JZB (GeV)","events");
1545    
1546     // Step 4: Draw them and store them
1547    
1548     TLegend *legend = new TLegend(0.6,0.6,0.89,0.89);
1549    
1550     MET_ttbar_pred->SetLineColor(TColor::GetColor("#005C00"));
1551     JZB_ttbar_pred->SetLineColor(TColor::GetColor("#005C00"));
1552    
1553     legend->SetFillColor(kWhite);
1554     legend->SetBorderSize(0);
1555     legend->AddEntry(MET_predicted,"prediction","l");
1556     legend->AddEntry(MET_observed,"observed","p");
1557     legend->AddEntry(MET_Z_prediction,"predicted Z","l");
1558     legend->AddEntry(MET_ttbar_pred,"OF-based prediction","l");
1559    
1560     if(is_data==mc) legend->SetHeader("Simulation:");
1561     if(is_data==mc&&isDYonly) legend->SetHeader("DY #rightarrow ee,#mu#mu only:");
1562     if(is_data==data) legend->SetHeader("Data:");
1563    
1564     stringstream SaveJZBname;
1565     stringstream SaveMETname;
1566     if(is_data==data) {
1567     SaveJZBname << "MetPrediction/JZBdistribution_Data_METCutAt" << MetCut;
1568     SaveMETname << "MetPrediction/METdistribution_Data_METCutAt" << MetCut;
1569     }
1570     if(is_data==mc&&!isDYonly) {
1571     SaveJZBname << "MetPrediction/JZBdistribution_FullMC_METCutAt" << MetCut;
1572     SaveMETname << "MetPrediction/METdistribution_FullMC_METCutAt" << MetCut;
1573     }
1574     if(is_data==mc&&isDYonly) {
1575     SaveJZBname << "MetPrediction/JZBdistribution_DYMC_METCutAt" << MetCut;
1576     SaveMETname << "MetPrediction/METdistribution_DYMC_METCutAt" << MetCut;
1577     }
1578    
1579 buchmann 1.26 dout << "Shape summary (MET>50) for ";
1580 fronga 1.39 if(is_data==data) dout << "data";
1581     if(is_data==mc&&isDYonly) dout<< "DY ";
1582     if(is_data==mc&&!isDYonly) dout << " Full MC";
1583 buchmann 1.58 dout << " (note that this is only half of the dataset, i.e. comparing JZB<0 to JZB>0) : " << endl;
1584 buchmann 1.26
1585 buchmann 1.24 dout << " observed : " << MET_observed->Integral(MET_observed->FindBin(50),MET_observed->FindBin(xmax)) << endl;
1586     dout << " predicted : " << MET_predicted->Integral(MET_predicted->FindBin(50),MET_predicted->FindBin(xmax)) << endl;
1587     dout << " Z pred : " << MET_Z_prediction->Integral(MET_Z_prediction->FindBin(50),MET_Z_prediction->FindBin(xmax)) << endl;
1588     dout << " ttbar : " << MET_ttbar_pred->Integral(MET_ttbar_pred->FindBin(50),MET_ttbar_pred->FindBin(xmax)) << endl;
1589    
1590 buchmann 1.58 if(1) {
1591     dout << "Shape summary (MET>80) for ";
1592     if(is_data==data) dout << "data";
1593     if(is_data==mc&&isDYonly) dout<< "DY ";
1594     if(is_data==mc&&!isDYonly) dout << " Full MC";
1595     dout << " : " << endl;
1596    
1597     dout << " observed : " << MET_observed->Integral(MET_observed->FindBin(80),MET_observed->FindBin(xmax)) << endl;
1598     dout << " predicted : " << MET_predicted->Integral(MET_predicted->FindBin(80),MET_predicted->FindBin(xmax)) << endl;
1599     dout << " Z pred : " << MET_Z_prediction->Integral(MET_Z_prediction->FindBin(80),MET_Z_prediction->FindBin(xmax)) << endl;
1600     dout << " ttbar : " << MET_ttbar_pred->Integral(MET_ttbar_pred->FindBin(80),MET_ttbar_pred->FindBin(xmax)) << endl;
1601     }
1602    
1603     if(1) {
1604     dout << "Shape summary (MET>100) for ";
1605     if(is_data==data) dout << "data";
1606     if(is_data==mc&&isDYonly) dout<< "DY ";
1607     if(is_data==mc&&!isDYonly) dout << " Full MC";
1608     dout << " : " << endl;
1609    
1610     dout << " observed : " << MET_observed->Integral(MET_observed->FindBin(100),MET_observed->FindBin(xmax)) << endl;
1611     dout << " predicted : " << MET_predicted->Integral(MET_predicted->FindBin(100),MET_predicted->FindBin(xmax)) << endl;
1612     dout << " Z pred : " << MET_Z_prediction->Integral(MET_Z_prediction->FindBin(100),MET_Z_prediction->FindBin(xmax)) << endl;
1613     dout << " ttbar : " << MET_ttbar_pred->Integral(MET_ttbar_pred->FindBin(100),MET_ttbar_pred->FindBin(xmax)) << endl;
1614     }
1615    
1616 buchmann 1.17 TH1F *ZpredClone = (TH1F*)MET_Z_prediction->Clone("ZpredClone");
1617     ZpredClone->SetLineColor(kBlue);
1618     MET_observed->Rebin(int(DisplayedBinSize/BinWidth));
1619     ZpredClone->Rebin(int(DisplayedBinSize/BinWidth));
1620     MET_predicted->Rebin(int(DisplayedBinSize/BinWidth));
1621     MET_ttbar_pred->Rebin(int(DisplayedBinSize/BinWidth));
1622    
1623     TH1F *JZBZpredClone = (TH1F*)JZB_Z_prediction->Clone("ZpredClone");
1624     JZBZpredClone->SetLineColor(kBlue);
1625     JZB_observed->Rebin(int(DisplayedBinSize/BinWidth));
1626     JZBZpredClone->Rebin(int(DisplayedBinSize/BinWidth));
1627     JZB_predicted->Rebin(int(DisplayedBinSize/BinWidth));
1628     JZB_ttbar_pred->Rebin(int(DisplayedBinSize/BinWidth));
1629    
1630     TH1F *JZB_ratio = (TH1F*)JZB_observed->Clone("JZB_ratio");
1631     JZB_ratio->Divide(JZB_predicted);
1632     LabelHisto(JZB_ratio,"JZB (GeV)","obs/pred");
1633     TH1F *MET_ratio = (TH1F*)MET_observed->Clone("MET_ratio");
1634     MET_ratio->Divide(MET_predicted);
1635 buchmann 1.28 MET_observed->SetMaximum(5*MET_observed->GetMaximum());
1636     JZB_observed->SetMaximum(5*JZB_observed->GetMaximum());
1637     MET_observed->SetMinimum(0.5);
1638     JZB_observed->SetMinimum(0.5);
1639 buchmann 1.17 LabelHisto(MET_ratio,"MET (GeV)","obs/pred");
1640 buchmann 1.24 TBox *sysenvelope = new TBox(xmin,1.0-MetPlotsSpace::Zprediction_Uncertainty,xmax,1.0+MetPlotsSpace::Zprediction_Uncertainty);
1641 buchmann 1.17 sysenvelope->SetFillColor(TColor::GetColor("#82FA58")); // light green
1642     sysenvelope->SetLineWidth(0);
1643 buchmann 1.24 TBox *dsysenvelope = new TBox(xmin,1.0-2*MetPlotsSpace::Zprediction_Uncertainty,xmax,1.0+2*MetPlotsSpace::Zprediction_Uncertainty);
1644     dsysenvelope->SetFillColor(TColor::GetColor("#F3F781")); // light yellow
1645     dsysenvelope->SetLineWidth(0);
1646 buchmann 1.28
1647     MET_ratio->GetYaxis()->SetNdivisions(502,false);
1648     JZB_ratio->GetYaxis()->SetNdivisions(502,false);
1649    
1650 buchmann 1.17
1651     MET_observed->Draw("e1");
1652     MET_ttbar_pred->Draw("histo,same");
1653     ZpredClone->Draw("histo,same");
1654     MET_predicted->Draw("histo,same");
1655     MET_observed->Draw("e1,same");
1656     legend->Draw();
1657     if(is_data==data) DrawPrelim();
1658     else DrawMCPrelim();
1659    
1660 buchmann 1.28 mainpad->Modified();
1661     main_canvas->cd();
1662     coverpad->Draw();
1663     coverpad->cd();
1664     coverpad->Range(0,0,1,1);
1665     coverpad->SetFillColor(kWhite);
1666     coverpad->SetBorderSize(0);
1667     coverpad->SetFrameFillColor(0);
1668     coverpad->Modified();
1669     main_canvas->cd();
1670     bottompad->SetTopMargin(ratiotopmargin);
1671     bottompad->SetBottomMargin(ratiobottommargin);
1672     bottompad->Draw();
1673 buchmann 1.17 bottompad->cd();
1674 buchmann 1.28 bottompad->Range(0,0,1,1);
1675     bottompad->SetFillColor(kWhite);
1676    
1677 buchmann 1.17 MET_ratio->GetYaxis()->SetRangeUser(0,2);
1678 buchmann 1.28 MET_ratio->GetXaxis()->SetLabelSize(xstretchfactor*MET_ratio->GetXaxis()->GetLabelSize());
1679     MET_ratio->GetYaxis()->SetLabelSize(xstretchfactor*MET_ratio->GetYaxis()->GetLabelSize());
1680     MET_ratio->GetXaxis()->SetTitleSize(xstretchfactor*gStyle->GetTitleSize());
1681     MET_ratio->GetYaxis()->SetTitleSize(xstretchfactor*gStyle->GetTitleSize());
1682    
1683 buchmann 1.17 MET_ratio->Draw("e1");
1684 buchmann 1.28 // dsysenvelope->Draw();
1685 buchmann 1.17 sysenvelope->Draw();
1686     MET_ratio->Draw("AXIS,same");
1687     MET_ratio->Draw("e1,same");
1688     TLine *metl = new TLine(xmin,1.0,xmax,1.0);
1689     metl->SetLineColor(kBlue);
1690     metl->Draw();
1691 buchmann 1.28 CompleteSave(main_canvas,SaveMETname.str());
1692    
1693 buchmann 1.43 //--------------------------------------------------------------------------------------------
1694 buchmann 1.28 mainpad->cd();
1695 buchmann 1.17
1696     JZB_observed->Draw("e1");
1697     JZB_ttbar_pred->Draw("histo,same");
1698     JZBZpredClone->Draw("histo,same");
1699     JZB_predicted->Draw("histo,same");
1700     JZB_observed->Draw("e1,same");
1701     legend->Draw();
1702     if(is_data==data) DrawPrelim();
1703     else DrawMCPrelim();
1704    
1705 buchmann 1.28 main_canvas->cd();
1706     coverpad->Draw();
1707     main_canvas->cd();
1708     bottompad->Draw();
1709 buchmann 1.17 bottompad->cd();
1710     JZB_ratio->GetYaxis()->SetRangeUser(0,2);
1711 buchmann 1.28
1712     JZB_ratio->GetXaxis()->SetLabelSize(xstretchfactor*JZB_ratio->GetXaxis()->GetLabelSize());
1713     JZB_ratio->GetYaxis()->SetLabelSize(xstretchfactor*JZB_ratio->GetYaxis()->GetLabelSize());
1714     JZB_ratio->GetXaxis()->SetTitleSize(xstretchfactor*gStyle->GetTitleSize());
1715     JZB_ratio->GetYaxis()->SetTitleSize(xstretchfactor*gStyle->GetTitleSize());
1716    
1717 buchmann 1.17 JZB_ratio->Draw("e1");
1718 buchmann 1.28 // dsysenvelope->Draw();
1719 buchmann 1.17 sysenvelope->Draw();
1720     JZB_ratio->Draw("AXIS,same");
1721     JZB_ratio->Draw("e1,same");
1722     metl->Draw();
1723    
1724 buchmann 1.28 CompleteSave(main_canvas,SaveJZBname.str());
1725 buchmann 1.17
1726 buchmann 1.43 //--------------------------------------------------------------------------------------------
1727     mainpad->cd();
1728    
1729     TH1F *SystHisto = (TH1F*)MET_predicted->Clone("SystHisto");
1730     TGraphErrors *stat3jS = MakeErrorGraphSystematicAndStatistical(MET_ttbar_pred,ZpredClone,MET_predicted,SystHisto);
1731     MET_predicted->SetLineColor(TColor::GetColor("#cc0066"));
1732     ZpredClone->SetLineColor(TColor::GetColor("#006600"));
1733     ZpredClone->SetFillColor(TColor::GetColor("#006600"));
1734     ZpredClone->SetFillStyle(3002); // light dots, not crushing other information
1735     ZpredClone->SetLineStyle(2);
1736    
1737     TPad *kinpad = new TPad("kinpad","kinpad",0,0,1,1);
1738     kinpad->SetLogy(1);
1739     kinpad->cd();
1740    
1741     MET_observed->Draw("e1");
1742     stat3jS->Draw("2,same");
1743     MET_observed->Draw("e1,same");
1744     ZpredClone->Draw("histo,same");
1745     MET_predicted->Draw("histo,same");
1746     MET_observed->Draw("e1,same");
1747    
1748     TLegend *legend2 = make_legend();
1749     legend2->SetX1(0.52);
1750     if (isAachen) legend2->SetHeader("N_{j}#geq 2");
1751     else legend2->SetHeader("N_{j}#geq 3");
1752     legend2->AddEntry(MET_observed,"Data","PL");
1753     legend2->AddEntry(MET_predicted,"Total backgrounds","L");
1754 buchmann 1.51 legend2->AddEntry(ZpredClone,"DY (JZB)","FL");
1755 buchmann 1.43 legend2->AddEntry(stat3jS,"Total uncert.","F");
1756    
1757     legend2->Draw();
1758     if(is_data==data) DrawPrelim();
1759     else DrawMCPrelim();
1760    
1761     cout << "About to store syst plot ... " << endl;
1762 buchmann 1.51 save_with_ratio_and_sys_band(0.0, MET_observed, MET_predicted, kinpad, (SaveMETname.str()+"__WithSys"), false, false, "data/pred",SystHisto );
1763 buchmann 1.43
1764 buchmann 1.56 delete main_canvas;
1765 buchmann 1.17 delete MET_observed;
1766     delete MET_predicted;
1767     //do NOT delete MET_Z_prediction (it's the return value)
1768     delete MET_osof_pred;
1769     delete MET_ossf_pred;
1770     delete MET_ttbar_pred;
1771    
1772     delete JZB_observed;
1773     delete JZB_predicted;
1774     delete JZB_osof_pred;
1775     delete JZB_ossf_pred;
1776     delete JZB_Z_prediction;
1777     delete JZB_ttbar_pred;
1778    
1779     return MET_Z_prediction;
1780     }
1781    
1782 buchmann 1.25 float extract_correction(string jzbvariable) {
1783     int position = (int)jzbvariable.find("[1]");
1784     if(position==-1) return 0.0;
1785     string correction=jzbvariable.substr(position+3,jzbvariable.length()-position-3);
1786     position = (int)correction.find("*");
1787     if(position==-1) return 0.0;
1788     correction=correction.substr(0,position);
1789     float correctionvalue=atof(correction.c_str());
1790     assert(correctionvalue<1&&correctionvalue>0);
1791     return correctionvalue;
1792     }
1793    
1794 buchmann 1.23 float Get_Met_Z_Prediction(TCut JetCut, float MetCut, int isdata, bool isDYonly, bool isAachen=false) {
1795 buchmann 1.17 dout << "Going to compute Z region prediction for a MET cut at " << MetCut << " GeV" << endl;
1796     // Steps:
1797 buchmann 1.25 // 1) Get peak
1798     // 2) use the peak and pt correction for sample splitting
1799     // and for MET distribution shifting
1800 buchmann 1.17 // 3) compute the estimate for MET>MetCut
1801    
1802     // do this for data if isdata==data, otherwise for MC (full closure if isDYonly==false, otherwise use only DY sample)
1803    
1804 buchmann 1.28 // Step 0 : If we're dealing with DY, we need to make sure PURW is off!
1805     // string bkpcutweight = (const char*) cutWeight;
1806     // if(isdata==mc && isDYonly) cutWeight=TCut("1.0");
1807    
1808 buchmann 1.25 // Step 1) Get peak
1809 buchmann 1.17 float MCPeakNoPtCorr=0,MCPeakErrorNoPtCorr=0,DataPeakNoPtCorr=0,DataPeakErrorNoPtCorr=0,MCSigma=0,DataSigma=0;
1810     stringstream resultsNoPtCorr;
1811     stringstream NoPtCorrdatajzb;
1812     stringstream NoPtCorrmcjzb;
1813    
1814 buchmann 1.24 if(isAachen) {
1815     //need to make sure that none of the typical basic cuts contain problematic selections!
1816 buchmann 1.55 /* string Sleptoncut = (const char*) leptoncut;
1817 buchmann 1.49 if((int)Sleptoncut.find("abs(eta1)<1.4")>-1) {
1818     write_error(__FUNCTION__,"You're trying to compute the Aachen estimate but are requiring abs(eta1)<1.4 ... please check your config.");
1819 buchmann 1.46 assert((int)Sleptoncut.find("abs(eta1)<1.4")==-1);
1820     assert((int)Sleptoncut.find("abs(eta1)<1.4")==-1);
1821 buchmann 1.55 }*/
1822 buchmann 1.24 } else {
1823 buchmann 1.55 /* string Sleptoncut = (const char*) leptoncut;
1824 buchmann 1.49 if((int)Sleptoncut.find("abs(eta1)<2.4")>-1) {
1825     write_error(__FUNCTION__,"You're trying to compute the ETH estimate but you are using non-central leptons ... please check your config.");
1826     assert((int)Sleptoncut.find("abs(eta1)<2.4")==-1);
1827     assert((int)Sleptoncut.find("abs(eta2)<2.4")==-1);
1828 buchmann 1.55 }*/
1829 buchmann 1.24 }
1830    
1831    
1832 buchmann 1.25 float Ptcorrection=0.0;
1833 buchmann 1.24
1834 buchmann 1.25 if(isdata==data) Ptcorrection=extract_correction(PlottingSetup::jzbvariabledata);
1835     else Ptcorrection=extract_correction(PlottingSetup::jzbvariablemc);
1836 buchmann 1.24
1837 buchmann 1.29 bool OverFlowStatus=addoverunderflowbins;
1838    
1839 buchmann 1.25 find_peaks(MCPeakNoPtCorr,MCPeakErrorNoPtCorr, DataPeakNoPtCorr,DataPeakErrorNoPtCorr,resultsNoPtCorr,true,NoPtCorrdatajzb,NoPtCorrmcjzb,(const char*) JetCut, true);
1840 buchmann 1.29 switch_overunderflow(OverFlowStatus);
1841 buchmann 1.28
1842 buchmann 1.25 float PeakPosition=0.0;
1843     string jzbvariable;
1844 buchmann 1.17 if(isdata==data) {
1845     PeakPosition=DataPeakNoPtCorr;
1846 buchmann 1.25 jzbvariable=jzbvariabledata;
1847 buchmann 1.17 dout << "Found peak in data at " << DataPeakNoPtCorr << " +/- " << DataPeakErrorNoPtCorr << " ; will use this result (" << PeakPosition << ")" << endl;
1848     } else {
1849     PeakPosition=MCPeakNoPtCorr;
1850 buchmann 1.25 jzbvariable=jzbvariablemc;
1851 buchmann 1.17 dout << "Found peak in mc at " << MCPeakNoPtCorr << " +/- " << MCPeakErrorNoPtCorr << " ; will use this result (" << PeakPosition << ")" << endl;
1852     }
1853    
1854     // Step 2: Use peak for sample splitting and MET shifting
1855 buchmann 1.52 string CorrectedMet="met[4]/MetFactor-"+any2string(Ptcorrection)+"*pt +"+any2string(abs(1.0*(PeakPosition)));
1856     if(2*(PeakPosition)<0) CorrectedMet="met[4]/MetFactor-"+any2string(Ptcorrection)+"*pt -"+any2string(abs(1.0*(PeakPosition)));
1857 buchmann 1.17
1858     stringstream sPositiveCut;
1859 buchmann 1.25 if(PeakPosition>0) sPositiveCut << "((" << jzbvariable << "-" << PeakPosition << ")>0)";
1860     else sPositiveCut << "( " << jzbvariable << "+" << abs(PeakPosition) << ")>0)";
1861 buchmann 1.17
1862     stringstream sNegativeCut;
1863 buchmann 1.25 if(PeakPosition<0) sNegativeCut << "((" << jzbvariable << "+" << abs(PeakPosition) << ")<0)";
1864     else sNegativeCut << "(( " << jzbvariable << "-" << abs(PeakPosition) << ")<0)";
1865 buchmann 1.17
1866 buchmann 1.52 string ObservedMet="met[4]/MetFactor";
1867 buchmann 1.17
1868     stringstream JZBPosvar;
1869 buchmann 1.25 JZBPosvar<<jzbvariable;
1870     if(PeakPosition>0) JZBPosvar << "-" << PeakPosition;
1871     else JZBPosvar << "+" << abs(PeakPosition);
1872    
1873 buchmann 1.17 stringstream JZBNegvar;
1874 buchmann 1.25 JZBNegvar<<"-(" << jzbvariable;
1875     if(PeakPosition>0) JZBNegvar << "-" << PeakPosition << ")";
1876     else JZBNegvar << "+" << abs(PeakPosition) << ")";
1877    
1878 buchmann 1.17
1879     // Step 3: Compute estimate
1880 buchmann 1.23 TH1F *predicted = GetPredictedAndObservedMetShapes(JetCut, sPositiveCut.str(),sNegativeCut.str(),CorrectedMet,ObservedMet,JZBPosvar.str(),JZBNegvar.str(), MetCut, isdata, isDYonly, isAachen);
1881 buchmann 1.46
1882 buchmann 1.48 float ZregionZestimate=0;
1883 buchmann 1.17 for(int ibin=1;ibin<=(int)predicted->GetNbinsX();ibin++) {
1884     if(predicted->GetBinLowEdge(ibin)+predicted->GetBinWidth(ibin)>MetCut) {
1885     ZregionZestimate+=2*(predicted->GetBinContent(ibin));
1886     }
1887     }
1888    
1889 fronga 1.39 dout << " Z region estimate in MET>" << MetCut << " for this sample: " << ZregionZestimate << endl;
1890 buchmann 1.48 ofstream NiceSummary;
1891     NiceSummary.open("Summary.txt",ios::app);
1892     NiceSummary<< " Z peak Z estimate in MET>" << MetCut << " for this sample: " << ZregionZestimate << endl;
1893     NiceSummary.close();
1894    
1895 buchmann 1.30 if(isdata==data) {
1896     MetPlotsSpace::Zestimate__data=ZregionZestimate;
1897     MetPlotsSpace::Zestimate__data_stat=2*TMath::Sqrt(ZregionZestimate/2);
1898     MetPlotsSpace::Zestimate__data_sys=ZregionZestimate*MetPlotsSpace::Zprediction_Uncertainty;
1899     }
1900     if(isdata==mc && isDYonly) {
1901     MetPlotsSpace::Zestimate__dy=ZregionZestimate;
1902     MetPlotsSpace::Zestimate__dy_stat=2*TMath::Sqrt(ZregionZestimate/2);
1903     MetPlotsSpace::Zestimate__dy_sys=ZregionZestimate*MetPlotsSpace::Zprediction_Uncertainty;
1904     }
1905     if(isdata==mc && !isDYonly) {
1906     MetPlotsSpace::Zestimate__mc=ZregionZestimate;
1907     MetPlotsSpace::Zestimate__mc_stat=2*TMath::Sqrt(ZregionZestimate/2);
1908     MetPlotsSpace::Zestimate__mc_sys=ZregionZestimate*MetPlotsSpace::Zprediction_Uncertainty;
1909     }
1910    
1911    
1912 buchmann 1.25
1913 buchmann 1.28 // if(isdata==mc && isDYonly) cutWeight=TCut(bkpcutweight.c_str());
1914    
1915 buchmann 1.17 return ZregionZestimate;
1916     }
1917    
1918 buchmann 1.44 void ProvideEEOverMMEstimate(TCut GeneralCut) {
1919     TCanvas *eemmcan = new TCanvas("eemmcan","eemmcan");
1920     TCut completecut = TCut(GeneralCut&&Restrmasscut);
1921     TH1F *eeh = allsamples.Draw("eeh", "mll",1,70,120,"m_{ll}","events",completecut&&TCut("id1==0"),data,luminosity);
1922     TH1F *mmh = allsamples.Draw("mmh", "mll",1,70,120,"m_{ll}","events",completecut&&TCut("id1==1"),data,luminosity);
1923    
1924     float Nee = eeh->Integral();
1925     float Nmm = mmh->Integral();
1926    
1927     dout << "Ratio R(ee/mm) = " << Nee/Nmm << " +/- " << sqrt(1/(Nee) + 1/(Nmm)) << endl;
1928    
1929     delete eemmcan;
1930     delete eeh;
1931     delete mmh;
1932     }
1933    
1934 buchmann 1.55 void ExperimentalMetPrediction(bool QuickRun=false, bool isAachen=false, bool override_cuts) {
1935 buchmann 1.17
1936 buchmann 1.28 switch_overunderflow(true);
1937 buchmann 1.24
1938 buchmann 1.37 bool HighPurityMode=true; // High Purity = |mll-91|<10 GeV , else <20
1939 buchmann 1.24
1940 buchmann 1.30 if(QuickRun) {
1941 buchmann 1.32 HighPurityMode=true;
1942 buchmann 1.30 }
1943    
1944 buchmann 1.24 string restrmasscutbkp=(const char*) PlottingSetup::Restrmasscut;
1945    
1946 buchmann 1.32 if(HighPurityMode) PlottingSetup::Restrmasscut=TCut("abs(mll-91)<10");
1947     else PlottingSetup::Restrmasscut= TCut("abs(mll-91)<20");
1948 buchmann 1.24
1949 fronga 1.39 dout << "Aachen mode (20/10, 2 jets) ? " << isAachen << endl;
1950     dout << "High Purity mode? " << HighPurityMode << endl;
1951 buchmann 1.56 dout << "Quick Mode ? " << QuickRun << endl;
1952 buchmann 1.24
1953 buchmann 1.46 string backup_basicqualitycut = (const char*) basicqualitycut;
1954     string backup_essentialcut = (const char*) essentialcut;
1955     string backup_basiccut = (const char*) basiccut;
1956     string backup_leptoncut = (const char*) leptoncut;
1957    
1958 buchmann 1.55 if(isAachen && override_cuts) {
1959     cout << "Overriding cuts for Aachen" << endl;
1960 buchmann 1.46 string Sbasicqualitycut = backup_basicqualitycut;
1961     Sbasicqualitycut = ReplaceAll(Sbasicqualitycut,")<1.4",")<2.4");
1962     basicqualitycut=TCut(Sbasicqualitycut.c_str());
1963    
1964     string Sleptoncut = backup_leptoncut;
1965     Sleptoncut = ReplaceAll(Sleptoncut,")<1.4",")<2.4");
1966     leptoncut=TCut(Sleptoncut.c_str());
1967    
1968     string Sbasiccut = backup_basiccut;
1969     Sbasiccut = ReplaceAll(Sbasiccut,")<1.4",")<2.4");
1970     basiccut=TCut(Sbasiccut.c_str());
1971    
1972     string Sessentialcut = backup_essentialcut;
1973     Sessentialcut = ReplaceAll(Sessentialcut,")<1.4",")<2.4");
1974     essentialcut=TCut(Sessentialcut.c_str());
1975    
1976 buchmann 1.55 }
1977 buchmann 1.46
1978 buchmann 1.55 cout << "Basic cut : " << (const char*) basiccut << endl;
1979     cout << "Essential cut : " << (const char*) essentialcut << endl;
1980 buchmann 1.23
1981 buchmann 1.24 stringstream snjets;
1982     if(isAachen) snjets << 2;
1983     else snjets << 3;
1984     float maxMET=100;
1985     if(isAachen) maxMET=150;
1986 buchmann 1.12
1987 buchmann 1.17 TCut nJetsSignal(PlottingSetup::basicqualitycut&&("pfJetGoodNum40>="+snjets.str()).c_str());
1988 buchmann 1.37
1989 buchmann 1.44
1990 fronga 1.39 dout << " ***** TESTING Z PREDICTION ***** " << endl;
1991     dout << "Notation (you can copy & paste this to evaluate it further)" << endl;
1992     dout << "Cut;Data;MC;DY;" << endl;
1993 buchmann 1.37 float DataEstimate = -1;
1994     DataEstimate = Get_Met_Z_Prediction(Restrmasscut&&nJetsSignal,maxMET, data, false, isAachen);
1995     float DYEstimate=-1;
1996 buchmann 1.30 if(!QuickRun) DYEstimate = Get_Met_Z_Prediction(Restrmasscut&&nJetsSignal,maxMET, mc, true, isAachen);
1997 buchmann 1.37 float MCEstimate=-1;
1998 buchmann 1.30 if(!QuickRun) MCEstimate = Get_Met_Z_Prediction(Restrmasscut&&nJetsSignal,maxMET, mc, false, isAachen);
1999    
2000 buchmann 1.45 dout << "Z prediction (JZB based) " << DataEstimate << endl;
2001     write_info(__FUNCTION__,"Z prediction (JZB based) "+any2string(DataEstimate));
2002 buchmann 1.30 if(QuickRun) return;
2003 fronga 1.39 dout << maxMET << ";" << DataEstimate << ";" << MCEstimate << ";" << DYEstimate << endl;
2004 buchmann 1.37
2005 buchmann 1.24 float Diff=20.0;
2006     if(HighPurityMode) Diff=10;
2007     TCut cut("mll>20&&pt1>20&&pt2>20");
2008 buchmann 1.49 if (isAachen) cut = TCut("mll>20&&pt1>20&&pt2>20&&pfTightHT>100");
2009 buchmann 1.28
2010     TCanvas *qcan = new TCanvas("qcan","qcan");
2011 buchmann 1.35 TH1F *zlineshape = allsamples.Draw("zlineshape","mll",int((91+25-18)*5),18,91+25,"m_{ll} (GeV)","events",cutOSSF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity); // bins of 0.2 GeV
2012     TH1F *Ozlineshape = allsamples.Draw("Ozlineshape","mll",int((91+25-18)*5),18,91+25,"m_{ll} (GeV)","events",cutOSOF&&TCut("pfJetGoodNum40==2")&&cut,data,PlottingSetup::luminosity); // bins of 0.2 GeV
2013 buchmann 1.28 zlineshape->Add(Ozlineshape,-1);
2014     delete qcan;
2015 buchmann 1.24 float a = (zlineshape->Integral(zlineshape->FindBin(20),zlineshape->FindBin(70)));
2016 buchmann 1.32 float b = (zlineshape->Integral(zlineshape->FindBin(91-Diff),zlineshape->FindBin(91+Diff)));
2017 buchmann 1.24 float r = a/b;
2018     float dr= (a/b)*TMath::Sqrt(1/a+1/b);
2019 buchmann 1.37
2020 buchmann 1.24 float SysUncertainty = TMath::Sqrt(DataEstimate*DataEstimate*dr*dr + r*r*(DataEstimate*MetPlotsSpace::Zprediction_Uncertainty*DataEstimate*MetPlotsSpace::Zprediction_Uncertainty));
2021     float StatUncertainty = TMath::Sqrt(DataEstimate);
2022    
2023 fronga 1.39 dout << "Z estimate in peak : " << DataEstimate << " +/- " << DataEstimate*MetPlotsSpace::Zprediction_Uncertainty << " (sys) +/- " << TMath::Sqrt(2*DataEstimate) << " (stat) " << endl;
2024     dout << "Z ESTIMATE IN SR : " << DataEstimate*r << " +/- " << SysUncertainty << " (sys) +/- " << StatUncertainty << " (stat) " << endl;
2025 buchmann 1.37 // cout << endl;
2026 fronga 1.39 dout << "r = " << r << " +/- " << dr << endl;
2027 buchmann 1.24
2028    
2029 buchmann 1.37 delete Ozlineshape;
2030 buchmann 1.24 delete zlineshape;
2031    
2032     PlottingSetup::Restrmasscut=TCut(restrmasscutbkp.c_str());
2033 buchmann 1.46
2034     basicqualitycut=TCut(backup_basicqualitycut.c_str());
2035     basiccut =TCut(backup_basiccut.c_str());
2036     essentialcut =TCut(backup_essentialcut.c_str());
2037     leptoncut =TCut(backup_leptoncut.c_str());
2038    
2039 buchmann 1.28 switch_overunderflow(false);
2040 buchmann 1.24
2041 buchmann 1.12 }
2042 buchmann 1.17
2043 buchmann 1.50
2044    
2045     void ComputeRMuE(string basecut, string name) {
2046    
2047    
2048     dout << "Starting with computation of rmue, but need to reset the essential cut first to make sure no restriction on eta is in there" << endl;
2049    
2050     string backup_essentialcut = (const char*) essentialcut;
2051     string NewEssentialCut = backup_essentialcut;
2052     NewEssentialCut = ReplaceAll(NewEssentialCut,")<1.4",")<2.4");
2053     essentialcut = TCut(NewEssentialCut.c_str());
2054    
2055     TCut kbase((basecut+" && mll>60 && mll<120").c_str());
2056     TCut ee("id1==id2&&id1==0");
2057     TCut mm("id1==id2&&id1==1");
2058    
2059     TH1F *Dee = allsamples.Draw("Dee", "mll",100,60,120,"m_{ll}","events",kbase&&ee,data,luminosity);
2060     TH1F *Dmm = allsamples.Draw("Dmm", "mll",100,60,120,"m_{ll}","events",kbase&&mm,data,luminosity);
2061     TH1F *Mee = allsamples.Draw("Mee", "mll",100,60,120,"m_{ll}","events",kbase&&ee,mc,luminosity);
2062     TH1F *Mmm = allsamples.Draw("Mmm", "mll",100,60,120,"m_{ll}","events",kbase&&mm,mc,luminosity);
2063    
2064    
2065     float mc_rmue=sqrt(Mmm->Integral()/Mee->Integral());
2066     float d_mc_rmue = sqrt(1/(4*Mee->Integral())+Mmm->Integral()/(4*Mee->Integral()*Mee->Integral()));
2067     float data_rmue=sqrt(Dmm->Integral()/Dee->Integral());
2068     float d_data_rmue = sqrt(1/(4*Dee->Integral())+Dmm->Integral()/(4*Dee->Integral()*Dee->Integral()));
2069    
2070     dout << "Rmu table (" << name << ") : " << endl;
2071     dout << " \t n_{\\mu\\mu} \t n_{ee} \t r_{\\mu e} \\pm stat" << endl;
2072     dout << fixed << "MC \t " << Mmm->Integral() << " \t " << Mee->Integral() << "\t" << mc_rmue << " \\pm " << d_mc_rmue << endl;
2073     dout << fixed << "Data\t" << Dmm->Integral() << " \t " << Dee->Integral() << "\t" << data_rmue << " \\pm " << d_data_rmue << endl;
2074    
2075     delete Dee;
2076     delete Dmm;
2077     delete Mee;
2078     delete Mmm;
2079    
2080     essentialcut =TCut(backup_essentialcut.c_str());
2081     }
2082    
2083    
2084     void ComputeRMuE() {
2085     TCanvas *rmucanvas = new TCanvas("rmucanvas","rmucanvas");
2086     dout << "Starting with our selection (ETH/Tight) : " << endl;
2087     ComputeRMuE("abs(eta1)<1.4 && abs(eta2)<1.4 && pt1>20 && pt2>20"," Tight selection");
2088     dout << "And now the Aachen selection (Aachen/Loose) : " << endl;
2089     ComputeRMuE("abs(eta1)<2.4 && abs(eta2)<2.4 && pt1>20 && pt2>20"," Loose selection");
2090     delete rmucanvas;
2091     }
2092