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Revision: 1.20
Committed: Thu Oct 20 19:21:56 2011 UTC (13 years, 6 months ago) by ceballos
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_025c, Mit_025b, Mit_025a
Changes since 1.19: +26 -4 lines
Log Message:
new

File Contents

# Content
1 // $Id $
2
3 #include "MitPhysics/SelMods/interface/HwwExampleAnalysisMod.h"
4 #include <TH1D.h>
5 #include <TH2D.h>
6 #include <TParameter.h>
7 #include "MitAna/DataUtil/interface/Debug.h"
8 #include "MitAna/DataTree/interface/Names.h"
9 #include "MitPhysics/Init/interface/ModNames.h"
10 #include "MitAna/DataCont/interface/ObjArray.h"
11 #include "MitCommon/MathTools/interface/MathUtils.h"
12 #include "MitPhysics/Utils/interface/JetTools.h"
13 #include "MitPhysics/Utils/interface/MetTools.h"
14 #include "MitAna/DataTree/interface/ParticleCol.h"
15 #include "TFile.h"
16 #include "TTree.h"
17
18 using namespace mithep;
19 ClassImp(mithep::HwwExampleAnalysisMod)
20
21 //--------------------------------------------------------------------------------------------------
22 HwwExampleAnalysisMod::HwwExampleAnalysisMod(const char *name, const char *title) :
23 BaseMod(name,title),
24 fMuonBranchName(Names::gkMuonBrn),
25 fMetName("NoDefaultNameSet"),
26 fCleanJetsName("NoDefaultNameSet"),
27 fCleanJetsNoPtCutName("NoDefaultNameSet"),
28 fVertexName(ModNames::gkGoodVertexesName),
29 fPFCandidatesName(Names::gkPFCandidatesBrn),
30 fMuons(0),
31 fMet(0),
32 fVertices(0),
33 fPFCandidates(0),
34 fPFJetName0("AKt5PFJets"),
35 fPFJet0(0),
36 fNEventsSelected(0)
37 {
38 // Constructor.
39 }
40
41 //--------------------------------------------------------------------------------------------------
42 void HwwExampleAnalysisMod::Begin()
43 {
44 // Run startup code on the client machine. For this module, we dont do
45 // anything here.
46 }
47
48 //--------------------------------------------------------------------------------------------------
49 void HwwExampleAnalysisMod::SlaveBegin()
50 {
51 // Run startup code on the computer (slave) doing the actual analysis. Here,
52 // we typically initialize histograms and other analysis objects and request
53 // branches. For this module, we request a branch of the MitTree.
54
55 // Load Branches
56 ReqBranch(fMuonBranchName, fMuons);
57 ReqBranch(fPFCandidatesName, fPFCandidates);
58 ReqBranch(fPFJetName0, fPFJet0);
59
60 //Create your histograms here
61
62 //*************************************************************************************************
63 // Selection Histograms
64 //*************************************************************************************************
65 AddTH1(fHWWSelection,"hHWWSelection", ";Cut Number;Number of Events", 16, -1.5, 14.5);
66 AddTH1(fHWWToEESelection,"hHWWToEESelection", ";Cut Number;Number of Events", 16, -1.5, 14.5);
67 AddTH1(fHWWToMuMuSelection,"hHWWToMuMuSelection", ";Cut Number;Number of Events", 16, -1.5, 14.5);
68 AddTH1(fHWWToEMuSelection,"hHWWToEMuSelection", ";Cut Number;Number of Events", 16, -1.5, 14.5);
69 AddTH1(fHWWToMuESelection,"hHWWToMuESelection", ";Cut Number;Number of Events", 16, -1.5, 14.5);
70
71 //***********************************************************************************************
72 // Histograms after preselection
73 //***********************************************************************************************
74 AddTH1(fLeptonEta ,"hLeptonEta",";LeptonEta;Number of Events",100,-5.,5.0);
75 AddTH1(fLeptonPtMax ,"hLeptonPtMax",";Lepton P_t Max;Number of Events",150,0.,150.);
76 AddTH1(fLeptonPtMin ,"hLeptonPtMin",";Lepton P_t Min;Number of Events",150,0.,150.);
77 AddTH1(fMetPtHist ,"hMetPtHist",";Met;Number of Events",150,0.,300.);
78 AddTH1(fMetPhiHist ,"hMetPhiHist",";#phi;Number of Events",28,-3.5,3.5);
79 AddTH1(fUncorrMetPtHist ,"hUncorrMetPtHist",";Met;Number of Events",150,0.,300.);
80 AddTH1(fUncorrMetPhiHist ,"hUncorrMetPhiHist",";#phi;Number of Events",28,-3.5,3.5);
81 AddTH1(fDeltaPhiLeptons ,"hDeltaPhiLeptons",";#Delta#phi_{ll};Number of Events",90,0,180);
82 AddTH1(fDeltaEtaLeptons ,"hDeltaEtaLeptons",";#Delta#eta_{ll};Number of Events",100,-5.,5.0);
83 AddTH1(fDileptonMass ,"hDileptonMass",";Mass_{ll};Number of Events",150,0.,300.);
84
85 //***********************************************************************************************
86 // N-1 Histograms
87 //***********************************************************************************************
88 //All events
89 AddTH1(fLeptonPtMax_NMinusOne ,"hLeptonPtMax_NMinusOne",
90 ";Lepton P_t Max;Number of Events",150,0.,150.);
91 AddTH1(fLeptonPtMin_NMinusOne ,"hLeptonPtMin_NMinusOne",
92 ";Lepton P_t Min;Number of Events",150,0.,150.);
93 AddTH1(fMetPtHist_NMinusOne ,"hMetPtHist_NMinusOne",
94 ";Met;Number of Events",150,0.,300.);
95 AddTH1(fMetPhiHist_NMinusOne ,"hMetPhiHist_NMinusOne",
96 ";#phi;Number of Events",28,-3.5,3.5);
97 AddTH1(fMETdeltaPhilEtHist_NMinusOne ,"hMETdeltaPhilEtHist_NMinusOne",
98 ";METdeltaPhilEtHist;Number of Events",150,0.,300.);
99 AddTH1(fNCentralJets_NMinusOne ,"hNCentralJets_NMinusOne",
100 ";Number of Central Jets;Number of Events",6,-0.5,5.5);
101 AddTH1(fNSoftMuonsHist_NMinusOne ,"hNSoftMuonsHist_NMinusOne",
102 ";Number of Dirty Muons; Number of Events",6,-0.5,5.5);
103 AddTH1(fDeltaPhiLeptons_NMinusOne ,"hDeltaPhiLeptons_NMinusOne",
104 ";#Delta#phi_{ll};Number of Events",90,0,180);
105 AddTH1(fDeltaEtaLeptons_NMinusOne ,"hDeltaEtaLeptons_NMinusOne",
106 ";#Delta#eta_{ll};Number of Events",100,-5.0,5.0);
107 AddTH1(fDileptonMass_NMinusOne ,"hDileptonMass_NMinusOne",
108 ";Mass_{ll};Number of Events",150,0.,300.);
109 AddTH1(fMinDeltaPhiLeptonMet_NMinusOne ,"hMinDeltaPhiLeptonMet_NMinusOne",
110 ";Min #Delta#phi_{l,Met};Number of Events",90,0.,180);
111
112 //***********************************************************************************************
113 // After all cuts Histograms
114 //***********************************************************************************************
115 AddTH1(fMinDeltaPhiLeptonMet_afterCuts ,"hMinDeltaPhiLeptonMet_afterCuts",
116 ";Min #Delta#phi_{l,Met};Number of Events",90,0.,180);
117 AddTH1(fMtLepton1_afterCuts ,"hMtLepton1_afterCuts",
118 ";M_t (Lepton1,Met);Number of Events",100,0.,200.);
119 AddTH1(fMtLepton2_afterCuts ,"hMtLepton2_afterCuts",
120 ";M_t (Lepton2,Met);Number of Events",100,0.,200.);
121 AddTH1(fMtHiggs_afterCuts ,"hMtHiggs_afterCuts",
122 ";M_t (l1+l2+Met);Number of Events",150,0.,300.);
123 AddTH1(fLeptonPtPlusMet_afterCuts ,"hLeptonPtPlusMet_afterCuts",
124 ";LeptonPtPlusMet;Number of Events",150,0., 300.);
125
126 }
127
128 //--------------------------------------------------------------------------------------------------
129 void HwwExampleAnalysisMod::Process()
130 {
131 // Process entries of the tree. For this module, we just load the branches and
132 LoadBranch(fMuonBranchName);
133 LoadBranch(fPFCandidatesName);
134 LoadBranch(fPFJetName0);
135
136 //Obtain all the good objects from the event cleaning module
137 fVertices = GetObjThisEvt<VertexOArr>(fVertexName);
138 ObjArray<Muon> *CleanMuons = dynamic_cast<ObjArray<Muon>* >(FindObjThisEvt(ModNames::gkCleanMuonsName));
139 ObjArray<Electron> *CleanElectrons = dynamic_cast<ObjArray<Electron>* >(FindObjThisEvt(ModNames::gkCleanElectronsName));
140 ParticleOArr *CleanLeptons = dynamic_cast<mithep::ParticleOArr*>
141 (FindObjThisEvt(ModNames::gkMergedLeptonsName));
142 ObjArray<Jet> *CleanJets = dynamic_cast<ObjArray<Jet>* >
143 (FindObjThisEvt(fCleanJetsName.Data()));
144 ObjArray<Jet> *CleanJetsNoPtCut = dynamic_cast<ObjArray<Jet>* >
145 (FindObjThisEvt(fCleanJetsNoPtCutName.Data()));
146 TParameter<Double_t> *NNLOWeight = GetObjThisEvt<TParameter<Double_t> >("NNLOWeight");
147
148 MetCol *met = dynamic_cast<ObjArray<Met>* >(FindObjThisEvt(fMetName));
149 const Met *stdMet = 0;
150 if (met) {
151 stdMet = met->At(0);
152 } else {
153 cout << "Error: Met Collection " << fMetName << " could not be loaded.\n";
154 return;
155 }
156
157 //***********************************************************************************************
158 //Kinematic PreSelection
159 //***********************************************************************************************
160 // At least two leptons in the event
161 if (CleanLeptons->GetEntries() < 2) return;
162 // Pt1 > 20 && Pt2 > 10
163 if(CleanLeptons->At(0)->Pt() <= 20 || CleanLeptons->At(1)->Pt() <= 10) return;
164 // opposite charge leptons
165 if(CleanLeptons->At(0)->Charge() * CleanLeptons->At(1)->Charge() > 0) return;
166
167 CompositeParticle *dilepton = new CompositeParticle();
168 dilepton->AddDaughter(CleanLeptons->At(0));
169 dilepton->AddDaughter(CleanLeptons->At(1));
170
171 //***********************************************************************************************
172 //Get Dirty Muons: Non-isolated Muons (exclude the clean muons)
173 //***********************************************************************************************
174 ObjArray<Muon> *SoftMuons = new ObjArray<Muon>;
175 for (UInt_t i=0; i<fMuons->GetEntries(); ++i) {
176 const Muon *mu = fMuons->At(i);
177 if(!MuonTools::PassSoftMuonCut(mu, fVertices, 0.2)) continue;
178
179 bool isCleanMuon = kFALSE;
180 for (UInt_t j=0; j<CleanMuons->GetEntries(); j++) {
181 if(fMuons->At(i) == CleanMuons->At(j) &&
182 CleanMuons->At(j)->Pt() > 10) isCleanMuon = kTRUE;
183 }
184 if(isCleanMuon == kFALSE) SoftMuons->Add(mu);
185 }
186
187 //***********************************************************************************************
188 //|Z_vert-Z_l| maximum
189 //***********************************************************************************************
190 std::vector<double> leptonsDz;
191 double zDiffMax = 0.0;
192 if(fVertices->GetEntries() > 0) {
193 for (UInt_t j=0; j<CleanMuons->GetEntries(); j++) {
194 double pDz = CleanMuons->At(j)->BestTrk()->DzCorrected(*fVertices->At(0));
195 leptonsDz.push_back(pDz);
196 }
197 for (UInt_t j=0; j<CleanElectrons->GetEntries(); j++) {
198 double pDz = CleanElectrons->At(j)->GsfTrk()->DzCorrected(*fVertices->At(0));
199 leptonsDz.push_back(pDz);
200 }
201 for(UInt_t t=0; t<leptonsDz.size(); t++) {
202 for(UInt_t i=t+1; i<leptonsDz.size(); i++) {
203 if(TMath::Abs(leptonsDz[t]-leptonsDz[i]) > zDiffMax) zDiffMax = TMath::Abs(leptonsDz[t]-leptonsDz[i]);
204 }
205 }
206 leptonsDz.clear();
207 }
208
209 //***********************************************************************************************
210 //Define Event Variables
211 //***********************************************************************************************
212 //delta phi between the 2 leptons in degrees
213 double deltaPhiLeptons = MathUtils::DeltaPhi(CleanLeptons->At(0)->Phi(),
214 CleanLeptons->At(1)->Phi())* 180.0 / TMath::Pi();
215
216 double deltaEtaLeptons = CleanLeptons->At(0)->Eta() - CleanLeptons->At(1)->Eta();
217
218 double deltaPhiDileptonMet = MathUtils::DeltaPhi(stdMet->Phi(),
219 dilepton->Phi())*180.0 / TMath::Pi();
220
221 double mtHiggs = TMath::Sqrt(2.0*dilepton->Pt() * stdMet->Pt()*
222 (1.0 - cos(deltaPhiDileptonMet * TMath::Pi() / 180.0)));
223
224 //angle between MET and closest lepton
225 double deltaPhiMetLepton[2] = {MathUtils::DeltaPhi(stdMet->Phi(), CleanLeptons->At(0)->Phi()),
226 MathUtils::DeltaPhi(stdMet->Phi(), CleanLeptons->At(1)->Phi())};
227
228 double mTW[2] = {TMath::Sqrt(2.0*CleanLeptons->At(0)->Pt()*stdMet->Pt()*
229 (1.0 - cos(deltaPhiMetLepton[0]))),
230 TMath::Sqrt(2.0*CleanLeptons->At(1)->Pt()*stdMet->Pt()*
231 (1.0 - cos(deltaPhiMetLepton[1])))};
232
233 double minDeltaPhiMetLepton = (deltaPhiMetLepton[0] < deltaPhiMetLepton[1])?
234 deltaPhiMetLepton[0]:deltaPhiMetLepton[1];
235
236 MetTools metTools(CleanMuons, CleanElectrons, fPFCandidates, fVertices->At(0), 0.1, 8.0, 5.0);
237 double pMET[2] = {metTools.GetProjectedMet(CleanLeptons,stdMet),
238 metTools.GetProjectedTrackMet(CleanLeptons)};
239
240 double METdeltaPhilEt = TMath::Min(pMET[0],pMET[1]);
241
242 //count the number of central Jets for vetoing and b-tagging
243 vector<Jet*> sortedJetsAll;
244 vector<Jet*> sortedJets;
245 vector<Jet*> sortedJetsLowPt;
246 for(UInt_t i=0; i<CleanJetsNoPtCut->GetEntries(); i++){
247 if(CleanJetsNoPtCut->At(i)->RawMom().Pt() <= 7) continue;
248 Jet* jet_a = new Jet(CleanJetsNoPtCut->At(i)->Px(),
249 CleanJetsNoPtCut->At(i)->Py(),
250 CleanJetsNoPtCut->At(i)->Pz(),
251 CleanJetsNoPtCut->At(i)->E() );
252 jet_a->SetMatchedMCFlavor(CleanJetsNoPtCut->At(i)->MatchedMCFlavor());
253 jet_a->SetCombinedSecondaryVertexBJetTagsDisc(CleanJetsNoPtCut->At(i)->CombinedSecondaryVertexBJetTagsDisc());
254 jet_a->SetCombinedSecondaryVertexMVABJetTagsDisc(CleanJetsNoPtCut->At(i)->CombinedSecondaryVertexMVABJetTagsDisc());
255 jet_a->SetJetProbabilityBJetTagsDisc(CleanJetsNoPtCut->At(i)->JetProbabilityBJetTagsDisc());
256 jet_a->SetJetBProbabilityBJetTagsDisc(CleanJetsNoPtCut->At(i)->JetBProbabilityBJetTagsDisc());
257 jet_a->SetTrackCountingHighEffBJetTagsDisc(CleanJetsNoPtCut->At(i)->TrackCountingHighEffBJetTagsDisc());
258 jet_a->SetTrackCountingHighPurBJetTagsDisc(CleanJetsNoPtCut->At(i)->TrackCountingHighPurBJetTagsDisc());
259 jet_a->SetSimpleSecondaryVertexBJetTagsDisc(CleanJetsNoPtCut->At(i)->SimpleSecondaryVertexBJetTagsDisc());
260 jet_a->SetSimpleSecondaryVertexHighEffBJetTagsDisc(CleanJetsNoPtCut->At(i)->SimpleSecondaryVertexHighEffBJetTagsDisc());
261 jet_a->SetSimpleSecondaryVertexHighPurBJetTagsDisc(CleanJetsNoPtCut->At(i)->SimpleSecondaryVertexHighPurBJetTagsDisc());
262 sortedJetsAll.push_back(jet_a);
263 }
264
265 for(UInt_t i=0; i<CleanJets->GetEntries(); i++){
266 if(TMath::Abs(CleanJets->At(i)->Eta()) < 5.0 &&
267 CleanJets->At(i)->Pt() > 30.0){
268 Jet* jet_b = new Jet(CleanJets->At(i)->Px(),
269 CleanJets->At(i)->Py(),
270 CleanJets->At(i)->Pz(),
271 CleanJets->At(i)->E() );
272 sortedJets.push_back(jet_b);
273 }
274 }
275
276 for(UInt_t i=0; i<sortedJetsAll.size(); i++){
277 bool overlap = kFALSE;
278 for(UInt_t j=0; j<sortedJets.size(); j++){
279 if(sortedJetsAll[i]->Pt() == sortedJets[j]->Pt() ||
280 (sortedJetsAll[i]->CombinedSecondaryVertexBJetTagsDisc() == sortedJets[j]->CombinedSecondaryVertexBJetTagsDisc() &&
281 sortedJetsAll[i]->JetBProbabilityBJetTagsDisc() == sortedJets[j]->JetBProbabilityBJetTagsDisc() &&
282 sortedJetsAll[i]->TrackCountingHighPurBJetTagsDisc() == sortedJets[j]->TrackCountingHighPurBJetTagsDisc())
283 ) {
284 sortedJets[j]->SetMatchedMCFlavor(sortedJetsAll[i]->MatchedMCFlavor());
285 sortedJets[j]->SetCombinedSecondaryVertexBJetTagsDisc(sortedJetsAll[i]->CombinedSecondaryVertexBJetTagsDisc());
286 sortedJets[j]->SetCombinedSecondaryVertexMVABJetTagsDisc(sortedJetsAll[i]->CombinedSecondaryVertexMVABJetTagsDisc());
287 sortedJets[j]->SetJetProbabilityBJetTagsDisc(sortedJetsAll[i]->JetProbabilityBJetTagsDisc());
288 sortedJets[j]->SetJetBProbabilityBJetTagsDisc(sortedJetsAll[i]->JetBProbabilityBJetTagsDisc());
289 sortedJets[j]->SetTrackCountingHighEffBJetTagsDisc(sortedJetsAll[i]->TrackCountingHighEffBJetTagsDisc());
290 sortedJets[j]->SetTrackCountingHighPurBJetTagsDisc(sortedJetsAll[i]->TrackCountingHighPurBJetTagsDisc());
291 sortedJets[j]->SetSimpleSecondaryVertexBJetTagsDisc(sortedJetsAll[i]->SimpleSecondaryVertexBJetTagsDisc());
292 sortedJets[j]->SetSimpleSecondaryVertexHighEffBJetTagsDisc(sortedJetsAll[i]->SimpleSecondaryVertexHighEffBJetTagsDisc());
293 sortedJets[j]->SetSimpleSecondaryVertexHighPurBJetTagsDisc(sortedJetsAll[i]->SimpleSecondaryVertexHighPurBJetTagsDisc());
294 overlap = kTRUE;
295 break;
296 }
297 }
298 if(overlap == kFALSE){
299 sortedJetsLowPt.push_back(sortedJetsAll[i]);
300 }
301 }
302 double maxBtag = -99999.;
303 for(UInt_t i=0; i<sortedJetsLowPt.size(); i++){
304 if(sortedJetsLowPt[i]->TrackCountingHighEffBJetTagsDisc() > maxBtag){
305 double dZAverageJetPt = 0.0;
306 double sumJetPt = 0.0;
307 double jetPt = 0.0;
308 for(UInt_t iPF=0; iPF<fPFJet0->GetEntries(); iPF++){
309 const PFJet *jet = fPFJet0->At(iPF);
310 if(MathUtils::DeltaR(jet->Mom(),sortedJetsLowPt[i]->Mom()) < 0.01){
311 jetPt = jet->Pt();
312 for (UInt_t npf=0; npf<jet->NPFCands();npf++) {
313 const PFCandidate *pf = jet->PFCand(npf);
314 if(pf->BestTrk()) {
315 dZAverageJetPt = dZAverageJetPt + pf->Pt()*pf->Pt()*pf->BestTrk()->DzCorrected(*fVertices->At(0));
316 sumJetPt = sumJetPt + pf->Pt()*pf->Pt();
317 }
318 }
319 if(sumJetPt > 0) dZAverageJetPt = TMath::Abs(dZAverageJetPt)/sumJetPt;
320 break;
321 }
322 } // loop over PF jets
323 if(dZAverageJetPt < 2.0 && jetPt > 10){
324 maxBtag = sortedJetsLowPt[i]->TrackCountingHighEffBJetTagsDisc();
325 }
326 }
327 }
328
329 //Lepton Type
330 int finalstateType = -1;
331 if (CleanLeptons->At(0)->ObjType() == kMuon && CleanLeptons->At(1)->ObjType() == kMuon ){ // mumu
332 finalstateType = 10;
333 } else if(CleanLeptons->At(0)->ObjType() == kElectron && CleanLeptons->At(1)->ObjType() == kElectron ){ // ee
334 finalstateType = 11;
335 } else if(CleanLeptons->At(0)->ObjType() == kElectron && CleanLeptons->At(1)->ObjType() == kMuon) {
336 finalstateType = 12;
337 } else if(CleanLeptons->At(1)->ObjType() == kElectron && CleanLeptons->At(0)->ObjType() == kMuon) {
338 finalstateType = 13;
339 } else {
340 cerr << "Error: finalstate lepton type not supported\n";
341 }
342
343 double deltaPhiLLJet = 0.0;
344 if(sortedJetsAll.size() > 0 && sortedJetsAll[0]->Pt() > 15.0 && (finalstateType == 10 || finalstateType == 11)){
345 deltaPhiLLJet = MathUtils::DeltaPhi(dilepton->Phi(), sortedJetsAll[0]->Phi())*180.0/TMath::Pi();
346 }
347
348 //*********************************************************************************************
349 //Define Cuts
350 //*********************************************************************************************
351 const int nCuts = 15;
352 bool passCut[nCuts] = {false, false, false, false, false,
353 false, false, false, false, false,
354 false, false, false, false, false};
355
356 Bool_t PreselPtCut = kTRUE;
357 if(CleanLeptons->At(0)->Pt() <= 20) PreselPtCut = kFALSE;
358 if(CleanLeptons->At(1)->Pt() <= 10) PreselPtCut = kFALSE;
359 //if(CleanLeptons->At(1)->ObjType() == kElectron && CleanLeptons->At(1)->Pt() <= 15) PreselPtCut = kFALSE;
360 if(PreselPtCut == kTRUE) passCut[0] = true;
361
362 if(stdMet->Pt() > 20.0) passCut[1] = true;
363
364 if(dilepton->Mass() > 12.0) passCut[2] = true;
365
366 if(sortedJets.size() < 1) passCut[5] = true;
367
368 if(deltaPhiLLJet < 165.0) passCut[6] = true;
369
370 if(SoftMuons->GetEntries() == 0) passCut[7] = true;
371
372 if(CleanLeptons->GetEntries() == 2) passCut[8] = true;
373
374 if(maxBtag < 2.1) passCut[9] = true;
375
376 if (finalstateType == 10 || finalstateType == 11){ // mumu/ee
377 if(fabs(dilepton->Mass()-91.1876) > 15.0) passCut[3] = true;
378 if(METdeltaPhilEt > 40) passCut[4] = true;
379 }
380 else { // mue/emu
381 passCut[3] = true;
382 if(METdeltaPhilEt > 20) passCut[4] = true;
383 }
384
385 if(CleanLeptons->At(0)->Pt() > 30) passCut[10] = true;
386
387 if(CleanLeptons->At(1)->Pt() > 25) passCut[11] = true;
388
389 if(dilepton->Mass() < 50) passCut[12] = true;
390
391 if(mtHiggs > 90.0 && mtHiggs < 160.0) passCut[13] = true;
392
393 if(deltaPhiLeptons < 60.0) passCut[14] = true;
394
395 //*********************************************************************************************
396 //Make Selection Histograms. Number of events passing each level of cut
397 //*********************************************************************************************
398 bool passAllCuts = true;
399 for(int c=0; c<nCuts; c++) passAllCuts = passAllCuts & passCut[c];
400 if(passAllCuts) fNEventsSelected++;
401
402 //Cut Selection Histograms
403 fHWWSelection->Fill(-1,NNLOWeight->GetVal());
404 if (finalstateType == 10 )
405 fHWWToMuMuSelection->Fill(-1,NNLOWeight->GetVal());
406 else if(finalstateType == 11 )
407 fHWWToEESelection->Fill(-1,NNLOWeight->GetVal());
408 else if(finalstateType == 12 )
409 fHWWToEMuSelection->Fill(-1,NNLOWeight->GetVal());
410 else if(finalstateType == 13 )
411 fHWWToMuESelection->Fill(-1,NNLOWeight->GetVal());
412
413 for (int k=0;k<nCuts;k++) {
414 bool pass = true;
415 bool passPreviousCut = true;
416 for (int p=0;p<=k;p++) {
417 pass = (pass && passCut[p]);
418 if (p<k)
419 passPreviousCut = (passPreviousCut&& passCut[p]);
420 }
421
422 if (pass) {
423 fHWWSelection->Fill(k,NNLOWeight->GetVal());
424 if (finalstateType == 10 )
425 fHWWToMuMuSelection->Fill(k,NNLOWeight->GetVal());
426 else if(finalstateType == 11)
427 fHWWToEESelection->Fill(k,NNLOWeight->GetVal());
428 else if(finalstateType == 12)
429 fHWWToEMuSelection->Fill(k,NNLOWeight->GetVal());
430 else if(finalstateType == 13)
431 fHWWToMuESelection->Fill(k,NNLOWeight->GetVal());
432 }
433 }
434
435 //*****************************************************************************************
436 //Make Preselection Histograms
437 //*****************************************************************************************
438 fLeptonEta->Fill(CleanLeptons->At(0)->Eta(),NNLOWeight->GetVal());
439 fLeptonEta->Fill(CleanLeptons->At(1)->Eta(),NNLOWeight->GetVal());
440 fLeptonPtMax->Fill(CleanLeptons->At(0)->Pt(),NNLOWeight->GetVal());
441 fLeptonPtMin->Fill(CleanLeptons->At(1)->Pt(),NNLOWeight->GetVal());
442 fMetPtHist->Fill(stdMet->Pt(),NNLOWeight->GetVal());
443 fMetPhiHist->Fill(stdMet->Phi(),NNLOWeight->GetVal());
444 fDeltaPhiLeptons->Fill(deltaPhiLeptons,NNLOWeight->GetVal());
445 fDeltaEtaLeptons->Fill(deltaEtaLeptons,NNLOWeight->GetVal());
446 fDileptonMass->Fill(dilepton->Mass(),NNLOWeight->GetVal());
447
448 //*********************************************************************************************
449 // N-1 Histograms
450 //*********************************************************************************************
451 bool pass;;
452
453 //N Jet Veto
454 pass = true;
455 for (int k=0;k<nCuts;k++) {
456 if (k != 5) pass = (pass && passCut[k]);
457 }
458 if (pass) {
459 fNCentralJets_NMinusOne->Fill(sortedJets.size(),NNLOWeight->GetVal());
460 }
461
462 // Final Met Cut
463 pass = true;
464 for (int k=0;k<nCuts;k++) {
465 if (k != 4) pass = (pass && passCut[k]);
466 }
467 if (pass) {
468 fMetPtHist_NMinusOne->Fill(stdMet->Pt(),NNLOWeight->GetVal());
469 }
470
471 // dilepton mass
472 pass = true;
473 for (int k=0;k<nCuts;k++) {
474 if (k != 2 && k != 3) pass = (pass && passCut[k]);
475 }
476 if (pass) {
477 fDileptonMass_NMinusOne->Fill(dilepton->Mass(),NNLOWeight->GetVal());
478 }
479
480 // Lepton Pt Max, Lepton Pt Min, DeltaPhiLeptons
481 pass = true;
482 for (int k=0;k<nCuts;k++) {
483 if (k != 0)
484 pass = (pass && passCut[k]);
485 }
486 if (pass) {
487 fLeptonPtMax_NMinusOne->Fill(CleanLeptons->At(0)->Pt(),NNLOWeight->GetVal());
488 fLeptonPtMin_NMinusOne->Fill(CleanLeptons->At(1)->Pt(),NNLOWeight->GetVal());
489 fDeltaPhiLeptons_NMinusOne->Fill(deltaPhiLeptons,NNLOWeight->GetVal());
490 }
491
492 // NSoftMuons
493 pass = true;
494 for (int k=0;k<nCuts;k++) {
495 if (k != 7) pass = (pass && passCut[k]);
496 }
497 if (pass) {
498 fNSoftMuonsHist_NMinusOne->Fill(SoftMuons->GetEntries(),NNLOWeight->GetVal());
499 }
500
501 //*********************************************************************************************
502 //Plots after all Cuts
503 //*********************************************************************************************
504 if (passAllCuts) {
505 fMinDeltaPhiLeptonMet_afterCuts->Fill(minDeltaPhiMetLepton,NNLOWeight->GetVal());
506 fMtLepton1_afterCuts->Fill(mTW[0],NNLOWeight->GetVal());
507 fMtLepton2_afterCuts->Fill(mTW[1],NNLOWeight->GetVal());
508 fMtHiggs_afterCuts->Fill(mtHiggs,NNLOWeight->GetVal());
509 fLeptonPtPlusMet_afterCuts->Fill(CleanLeptons->At(0)->Pt()+CleanLeptons->At(1)->Pt()+stdMet->Pt(),NNLOWeight->GetVal());
510 }
511
512 delete dilepton;
513 delete SoftMuons;
514 for(UInt_t i=0; i<sortedJets.size(); i++) delete sortedJets[i];
515 for(UInt_t i=0; i<sortedJetsAll.size(); i++) delete sortedJetsAll[i];
516 return;
517 }
518
519 //--------------------------------------------------------------------------------------------------
520 void HwwExampleAnalysisMod::SlaveTerminate()
521 {
522
523 // Run finishing code on the computer (slave) that did the analysis. For this
524 // module, we dont do anything here.
525 cout << "selected events on HwwExampleAnalysisMod: " << fNEventsSelected << endl;
526
527 }
528 //--------------------------------------------------------------------------------------------------
529 void HwwExampleAnalysisMod::Terminate()
530 {
531 // Run finishing code on the client computer. For this module, we dont do
532 // anything here.
533
534 }