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// $Id: FakeLeptonExampleAnaMod.cc,v 1.5 2009/08/11 09:16:01 loizides Exp $
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#include "MitPhysics/FakeMods/interface/FakeLeptonExampleAnaMod.h"
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#include "MitCommon/MathTools/interface/MathUtils.h"
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#include "MitAna/DataUtil/interface/Debug.h"
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#include "MitAna/DataTree/interface/Names.h"
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#include "MitAna/DataTree/interface/ElectronCol.h"
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#include "MitAna/DataTree/interface/GenJetCol.h"
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#include "MitAna/DataTree/interface/MCParticleCol.h"
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#include "MitAna/DataTree/interface/MetCol.h"
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#include "MitAna/DataTree/interface/MuonCol.h"
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#include "MitAna/DataTree/interface/TrackCol.h"
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#include "MitPhysics/Init/interface/ModNames.h"
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#include "MitPhysics/FakeMods/interface/FakeObject.h"
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#include "MitPhysics/FakeMods/interface/FakeEventHeader.h"
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#include <TH1D.h>
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#include <TH2D.h>
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using namespace mithep;
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ClassImp(mithep::FakeLeptonExampleAnaMod)
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//--------------------------------------------------------------------------------------------------
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FakeLeptonExampleAnaMod::FakeLeptonExampleAnaMod(const char *name, const char *title) :
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BaseMod(name,title),
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fUseMCFake(kFALSE),
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fPerformFakeMuonMetCorrection(kTRUE),
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fSampleName("NotSet"),
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fFakeEventHeaderName(ModNames::gkFakeEventHeadersName),
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fElectronFakeableObjectsName(ModNames::gkElFakeableObjsName),
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fMuonFakeableObjectsName(ModNames::gkMuFakeableObjsName),
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fMCPartBranchName(Names::gkMCPartBrn),
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fGenJetBranchName(Names::gkSC5GenJetBrn),
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fTrackBranchName(Names::gkTrackBrn),
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fMuonBranchName(Names::gkMuonBrn),
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fMetName("NotSet"),
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fCleanJetsName(ModNames::gkCleanJetsName),
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fTriggerObjectsName("NotSet"),
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fParticles(0),
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fGenJets(0),
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fTracks(0),
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fMuons(0),
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fMet(0)
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{
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// Constructor.
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}
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//--------------------------------------------------------------------------------------------------
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void FakeLeptonExampleAnaMod::Process()
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{
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// Process entries of the tree.
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LoadBranch(fTrackBranchName);
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LoadBranch(fMuonBranchName);
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//***********************************************************************************************
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//Import Collections
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//***********************************************************************************************
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//Obtain all cleaned objects
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MuonOArr *CleanMuons = dynamic_cast<MuonOArr* >
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(FindObjThisEvt(ModNames::gkCleanMuonsName));
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ParticleOArr *CleanLeptons = dynamic_cast<mithep::ParticleOArr*>
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(FindObjThisEvt(ModNames::gkMergedLeptonsName));
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//Get Met
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if (!fMetName.IsNull()) {
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fMet = GetObjThisEvt<MetCol>(fMetName);
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}
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const Met *originalCaloMet = 0;
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if (fMet) {
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originalCaloMet = fMet->At(0);
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} else {
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cout << "Error: Met Collection " << fMetName << " could not be loaded.\n";
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}
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ObjArray<Jet> *OriginalCleanJets = dynamic_cast<ObjArray<Jet>* >
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(FindObjThisEvt(fCleanJetsName.Data()));
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//Obtain the collection of fake objects
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ElectronCol *ElectronFakeableObjects = 0;
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if(!fElectronFakeableObjectsName.IsNull())
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ElectronFakeableObjects = dynamic_cast<ElectronCol* >
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(FindObjThisEvt(fElectronFakeableObjectsName.Data()));
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MuonCol *MuonFakeableObjects = 0;
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if (!fMuonFakeableObjectsName.IsNull())
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MuonFakeableObjects = dynamic_cast<MuonCol* >
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(FindObjThisEvt(fMuonFakeableObjectsName.Data()));
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ChargedParticleOArr *FakeableObjects = new ChargedParticleOArr;
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if (ElectronFakeableObjects) {
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for (UInt_t i=0; i<ElectronFakeableObjects->GetEntries(); i++)
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FakeableObjects->Add(ElectronFakeableObjects->At(i));
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}
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if (MuonFakeableObjects) {
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for (UInt_t i=0; i<MuonFakeableObjects->GetEntries(); i++)
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FakeableObjects->Add(MuonFakeableObjects->At(i));
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}
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Collection<FakeEventHeader> *FakeEventHeaders = 0;
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if (!fUseMCFake) {
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if (!fFakeEventHeaderName.IsNull()) {
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FakeEventHeaders =
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dynamic_cast<Collection<FakeEventHeader>* >(FindObjThisEvt(fFakeEventHeaderName.Data()));
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if (!FakeEventHeaders) {
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string errorMsg = "Error: FakeEventHeader with name " +
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string(fFakeEventHeaderName.Data()) + "could not be loaded.\n";
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Fatal("Process()",errorMsg.c_str());
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}
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} else
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cout << "Error: FakeEventHeaders " << fFakeEventHeaderName.Data()
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<< " could not be loaded.\n";
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}
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//***********************************************************************************************
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//If we use MC Fakes, then create a new FakeEventHeader containing no fakes with weight = 1
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//This ensures that in the loop over FakeEventHeaders we do the correct thing.
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//***********************************************************************************************
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if (fUseMCFake) {
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ObjArray <FakeEventHeader> *tmpFakeEventHeaders = new ObjArray <FakeEventHeader> ;
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tmpFakeEventHeaders->SetOwner(kTRUE);
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FakeEventHeader *initialFakeEvent = new FakeEventHeader();
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for (UInt_t j=0;j<OriginalCleanJets->GetEntries();j++)
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initialFakeEvent->AddJets(OriginalCleanJets->At(j));
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tmpFakeEventHeaders->AddOwned(initialFakeEvent);
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FakeEventHeaders = dynamic_cast<Collection<FakeEventHeader>* > (tmpFakeEventHeaders);
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}
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//***********************************************************************************************
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//Loop over Fake Event Headers
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//***********************************************************************************************
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for (UInt_t i=0;i<FakeEventHeaders->GetEntries() ; i++) {
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//Create leptons collection containing real leptons and fake leptons
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ObjArray<Particle> *leptons = NULL;
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if (fUseMCFake) {
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leptons = CleanLeptons;
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} else {
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leptons = new ObjArray<Particle>;
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for (UInt_t j=0;j<CleanLeptons->GetEntries() ; j++) {
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leptons->Add(CleanLeptons->At(j));
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}
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for (UInt_t j=0;j<FakeEventHeaders->At(i)->FakeObjsSize() ; j++) {
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leptons->Add(FakeEventHeaders->At(i)->FakeObj(j)->FakeParticle());
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}
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}
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//we have to sort leptons
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leptons->Sort();
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//Construct the Clean Jet collection.
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ObjArray<Jet> *CleanJets = NULL;
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if (fUseMCFake) {
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CleanJets = OriginalCleanJets;
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} else {
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CleanJets = new ObjArray<Jet>;
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for (UInt_t j=0;j<FakeEventHeaders->At(i)->NJets() ; j++) {
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CleanJets->Add(FakeEventHeaders->At(i)->UnfakedJet(j));
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}
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}
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//Perform correction for potential fake muons
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//have to add fake muon momentum to originalCaloMet;
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const Met *caloMet = originalCaloMet;
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Double_t FakeMuonMetCorrection_X = 0.0;
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Double_t FakeMuonMetCorrection_Y = 0.0;
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for (UInt_t j=0;j<FakeEventHeaders->At(i)->FakeObjsSize() ; j++) {
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if (FakeEventHeaders->At(i)->FakeObj(j)->ObjType() == kMuon) {
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FakeMuonMetCorrection_X += FakeEventHeaders->At(i)->FakeObj(j)->Px();
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FakeMuonMetCorrection_Y += FakeEventHeaders->At(i)->FakeObj(j)->Py();
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}
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}
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if (!fUseMCFake && fPerformFakeMuonMetCorrection) {
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caloMet = new Met(originalCaloMet->Px()+FakeMuonMetCorrection_X,
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originalCaloMet->Py()+FakeMuonMetCorrection_Y);
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}
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//*********************************************************************************************
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//Construct the event weight using fake rate and corrections
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//*********************************************************************************************
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//fake rate has to be corrected by the amount lost when those denominators
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//became fakes in data. If a denominator fakes a lepton in data, it goes in the 2lepton
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//final state, and we don't count it in this prediction. So we have to add it back.
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Double_t eventweight = FakeEventHeaders->At(i)->Weight();
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if (FakeEventHeaders->At(i)->FakeObjsSize() > 0 && FakeEventHeaders->At(i)->Weight() < 1) {
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eventweight = eventweight / (1.0 - FakeEventHeaders->At(i)->Weight());
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}
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//*********************************************************************************************
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//another correction to account for events lost due to only the fake lepton firing the trigger
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//The numbers need to be changed for your analysis.
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//Given numbers are for the 2 lepton final state.
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//*********************************************************************************************
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if (CleanLeptons->GetEntries() >= 1 && FakeEventHeaders->At(i)->FakeObjsSize() >= 1) {
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if (CleanLeptons->At(0)->ObjType() == kElectron &&
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FakeEventHeaders->At(i)->FakeObj(0)->FakeParticle()->ObjType() == kElectron) {
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eventweight = eventweight * 1.06;
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} else if (CleanLeptons->At(0)->ObjType() == kMuon &&
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FakeEventHeaders->At(i)->FakeObj(0)->FakeParticle()->ObjType() == kMuon) {
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eventweight = eventweight * 1.12;
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} else if (CleanLeptons->At(0)->ObjType() == kElectron &&
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FakeEventHeaders->At(i)->FakeObj(0)->FakeParticle()->ObjType() == kMuon) {
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eventweight = eventweight * 1.17;
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} else if (CleanLeptons->At(0)->ObjType() == kMuon &&
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FakeEventHeaders->At(i)->FakeObj(0)->FakeParticle()->ObjType() == kElectron) {
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eventweight = eventweight * 1.17;
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}
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}
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//*********************************************************************************************
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//For FR method (fUseMCFake == kFALSE)
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//Make analysis specific cuts.
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//For example for 2 lepton final state we require that the event contains
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//one and only one clean lepton with pt > 10 GeV.
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//*********************************************************************************************
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if (!fUseMCFake) {
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if (CleanLeptons->GetEntries() != 1 || CleanLeptons->At(0)->Pt() <= 10.0)
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continue;
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}
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//*********************************************************************************************
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//Fill some distributions before preselection
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//*********************************************************************************************
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CompositeParticle *dilepton = NULL;
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if (leptons->GetEntries()>=2) {
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dilepton = new CompositeParticle();
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dilepton->AddDaughter(leptons->At(0));
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dilepton->AddDaughter(leptons->At(1));
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//Dilepton Charge will be filled like this
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// -2: -- , -1: -+, 1: +-, 2:++
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if (dilepton->Charge() == 0) {
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if (leptons->At(0)->Charge() == 1) {
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fDileptonCharge->Fill(1.0,eventweight);
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} else {
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fDileptonCharge->Fill(-1.0,eventweight);
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}
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} else {
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fDileptonCharge->Fill(dilepton->Charge(),eventweight);
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}
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}
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//*********************************************************************************************
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//Kinematic PreSelection
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//Example given is for the two lepton final state
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//*********************************************************************************************
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//make sure 2nd highest pt lepton has Pt > 10
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if (leptons->GetEntries() < 2 || leptons->At(1)->Pt() <= 10) continue;
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//make sure the 3rd highest pt lepton has pt <= 10.
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if (leptons->GetEntries() >= 3 && leptons->At(2)->Pt() > 10) continue;
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//charge of the leptons should be opposite
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if (dilepton->Charge() != 0) continue;
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//*********************************************************************************************
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//Get nonisolated soft muons
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//*********************************************************************************************
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ObjArray<Muon> *DirtyMuons = new ObjArray<Muon>;
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for (UInt_t m=0; m<fMuons->GetEntries(); ++m) {
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const Muon *mu = fMuons->At(m);
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if(!mu->GlobalTrk()) continue;
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if(mu->Pt() < 5.0) continue;
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//remove the fake
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Bool_t isFakedMuon = kFALSE;
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for (UInt_t f=0;f<FakeEventHeaders->At(i)->FakeObjsSize() ; f++) {
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if (mu->HasTrackerTrk() &&
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(dynamic_cast<const mithep::ChargedParticle*>
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(FakeEventHeaders->At(i)->FakeObj(f)->FakeParticle()))->TrackerTrk() &&
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(dynamic_cast<const mithep::ChargedParticle*>
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(FakeEventHeaders->At(i)->FakeObj(f)->FakeParticle()))->TrackerTrk() ==
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mu->TrackerTrk()
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)
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isFakedMuon = kTRUE;
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}
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//remove clean muons
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Bool_t isCleanMuon = kFALSE;
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for (UInt_t j=0; j<CleanMuons->GetEntries(); j++) {
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if(fMuons->At(m) == CleanMuons->At(j)) isCleanMuon = kTRUE;
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}
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if(!isCleanMuon
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&& !(isFakedMuon && !fUseMCFake)
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) DirtyMuons->Add(mu);
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}
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//*********************************************************************************************
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//Get Clean Tracks excluding the good leptons
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//*********************************************************************************************
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ObjArray<Track> *CleanExtraTracks = new ObjArray<Track>;
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Int_t nTracks = 0;
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Double_t z0Average = ( (dynamic_cast<const mithep::ChargedParticle*>(leptons->At(0)))->Trk()->Z0()
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+ (dynamic_cast<const mithep::ChargedParticle*>(leptons->At(1)))->Trk()->Z0()) /2 ;
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for (UInt_t t=0; t<fTracks->GetEntries(); ++t) {
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Bool_t isLepton = kFALSE;
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if (MathUtils::DeltaR(fTracks->At(t)->Phi(),fTracks->At(t)->Eta(),leptons->At(0)->Phi(),
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leptons->At(0)->Eta()) > 0.01 &&
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MathUtils::DeltaR(fTracks->At(t)->Phi(),fTracks->At(t)->Eta(),leptons->At(1)->Phi(),
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leptons->At(1)->Eta()) > 0.01
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) {
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} else {
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isLepton = kTRUE;
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}
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MDB(kAnalysis, 8) {
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cout << "Track " << t << " : " << fTracks->At(t)->Pt() << " " << fTracks->At(t)->Eta()
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<< " " << fTracks->At(t)->Phi() << " islepton=" << isLepton << endl;
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}
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if ( !isLepton && fTracks->At(t)->Pt() > 3.0
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&& fTracks->At(t)->NHits() >= 8
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&& fabs(z0Average - fTracks->At(t)->Z0()) < 0.5 ) {
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CleanExtraTracks->Add(fTracks->At(t));
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nTracks++;
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}
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}
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//*********************************************************************************************
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//The code below is an example analysis for the HWW analysis.
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//*********************************************************************************************
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//*********************************************************************************************
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//Define Event Variables
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//*********************************************************************************************
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//delta phi between the 2 leptons in degrees
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Double_t deltaPhiLeptons = MathUtils::DeltaPhi(leptons->At(0)->Phi(),
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leptons->At(1)->Phi())* 360.0 / 2 / TMath::Pi();
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Double_t deltaEtaLeptons = leptons->At(0)->Eta() - leptons->At(1)->Eta();
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Double_t deltaPhiDileptonMet = MathUtils::DeltaPhi(caloMet->Phi(),
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dilepton->Phi())*360.0 / 2 / TMath::Pi();
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Double_t mtHiggs = TMath::Sqrt(2.0*dilepton->Pt() * caloMet->Pt()*
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(1.0 - cos(deltaPhiDileptonMet * 2 * TMath::Pi() / 360.0)));
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//angle between MET and closest lepton
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Double_t deltaPhiMetLepton[2] = {MathUtils::DeltaPhi(caloMet->Phi(), leptons->At(0)->Phi()),
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MathUtils::DeltaPhi(caloMet->Phi(), leptons->At(1)->Phi())};
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Double_t mTW[2] = {TMath::Sqrt(2.0*leptons->At(0)->Pt()*caloMet->Pt()*
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(1.0 - cos(deltaPhiMetLepton[0]))),
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TMath::Sqrt(2.0*leptons->At(1)->Pt()*caloMet->Pt()*
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(1.0 - cos(deltaPhiMetLepton[1])))};
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Double_t minDeltaPhiMetLepton = (deltaPhiMetLepton[0] < deltaPhiMetLepton[1])?
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deltaPhiMetLepton[0]:deltaPhiMetLepton[1];
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minDeltaPhiMetLepton = minDeltaPhiMetLepton * 360.0 / 2 / TMath::Pi();
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358 |
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//count the number of central Jets for vetoing
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Int_t nCentralJets = 0;
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for (UInt_t j=0; j<CleanJets->GetEntries(); j++) {
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if (fabs(CleanJets->At(j)->Eta()) < 2.5)
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nCentralJets++;
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}
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//Lepton Type
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Int_t finalstateType = -1;
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if (leptons->At(0)->ObjType() == kMuon &&
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leptons->At(1)->ObjType() == kMuon ){ // mumu
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finalstateType = 10;
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} else if(leptons->At(0)->ObjType() == kElectron &&
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leptons->At(1)->ObjType() == kElectron ){ // ee
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finalstateType = 11;
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} else if((leptons->At(0)->ObjType() == kElectron && leptons->At(1)->ObjType() == kMuon) ||
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(leptons->At(0)->ObjType() == kMuon && leptons->At(1)->ObjType() == kElectron)) {
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finalstateType = 12;
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} else {
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cerr << "Error: finalstate lepton type not supported\n";
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}
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//*********************************************************************************************
|
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//Define Cuts
|
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//*********************************************************************************************
|
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const Int_t nCuts = 9;
|
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Bool_t passCut[nCuts] = {kFALSE, kFALSE, kFALSE, kFALSE,
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kFALSE, kFALSE, kFALSE, kFALSE, kFALSE};
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if(leptons->At(0)->Pt() > 20.0 &&
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leptons->At(1)->Pt() > 10.0 &&
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caloMet->Pt() > 30.0 &&
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dilepton->Mass() > 12.0
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) passCut[0] = kTRUE;
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//above cuts are for preselction to be fed into TMVA
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if(nCentralJets < 1) passCut[1] = kTRUE;
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|
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if (finalstateType == 10){ // mumu
|
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if(caloMet->Pt() > 50.0 &&
|
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caloMet->Pt() < 200.0) passCut[2] = kTRUE;
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if(deltaPhiLeptons < 45.0) passCut[3] = kTRUE;
|
401 |
if(dilepton->Mass() < 50.0) passCut[4] = kTRUE;
|
402 |
if(leptons->At(0)->Pt() > 35.0 &&
|
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leptons->At(0)->Pt() < 55.0) passCut[5] = kTRUE;
|
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if(leptons->At(1)->Pt() > 25.0) passCut[6] = kTRUE;
|
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}
|
406 |
else if(finalstateType == 11 ){ // ee
|
407 |
if(caloMet->Pt() > 51.0 &&
|
408 |
caloMet->Pt() < 200.0) passCut[2] = kTRUE;
|
409 |
if(deltaPhiLeptons < 45.0) passCut[3] = kTRUE;
|
410 |
if(dilepton->Mass() < 40.0) passCut[4] = kTRUE;
|
411 |
if(leptons->At(0)->Pt() > 25.0 &&
|
412 |
leptons->At(0)->Pt() < 49.0) passCut[5] = kTRUE;
|
413 |
if(leptons->At(1)->Pt() > 25.0) passCut[6] = kTRUE;
|
414 |
}
|
415 |
else if(finalstateType == 12) { //emu
|
416 |
if(caloMet->Pt() > 45.0 &&
|
417 |
caloMet->Pt() < 105.0) passCut[2] = kTRUE;
|
418 |
if(deltaPhiLeptons < 70.0) passCut[3] = kTRUE;
|
419 |
if(dilepton->Mass() < 45.0) passCut[4] = kTRUE;
|
420 |
if(leptons->At(0)->Pt() > 25.0 &&
|
421 |
leptons->At(0)->Pt() < 50.0) passCut[5] = kTRUE;
|
422 |
if(leptons->At(1)->Pt() > 25.0) passCut[6] = kTRUE;
|
423 |
}
|
424 |
|
425 |
if (DirtyMuons->GetEntries() < 1) passCut[7] = kTRUE;
|
426 |
if (CleanExtraTracks->GetEntries() < 4) passCut[8] = kTRUE;
|
427 |
|
428 |
//*********************************************************************************************
|
429 |
//Final Decision
|
430 |
//*********************************************************************************************
|
431 |
Bool_t passAllCuts = kTRUE;
|
432 |
for(Int_t c=0; c<nCuts; c++) passAllCuts = passAllCuts & passCut[c];
|
433 |
|
434 |
//*****************************************************************************************
|
435 |
//Histograms after no cuts
|
436 |
//*****************************************************************************************
|
437 |
fLeptonPtMax->Fill(leptons->At(0)->Pt(),eventweight);
|
438 |
fLeptonPtMin->Fill(leptons->At(1)->Pt(),eventweight);
|
439 |
fMetPtHist->Fill(caloMet->Pt(),eventweight);
|
440 |
fDeltaPhiLeptons->Fill(deltaPhiLeptons,eventweight);
|
441 |
fDeltaEtaLeptons->Fill(deltaEtaLeptons,eventweight);
|
442 |
fDileptonMass->Fill(dilepton->Mass(),eventweight);
|
443 |
|
444 |
//*********************************************************************************************
|
445 |
// N-1 Histograms
|
446 |
//*********************************************************************************************
|
447 |
|
448 |
//N Jet Veto
|
449 |
Bool_t pass = kTRUE;
|
450 |
for (Int_t k=0;k<nCuts;k++) {
|
451 |
if (k != 1) {
|
452 |
pass = (pass && passCut[k]);
|
453 |
}
|
454 |
}
|
455 |
if (pass) {
|
456 |
fNCentralJets_NMinusOne->Fill(nCentralJets,eventweight);
|
457 |
}
|
458 |
|
459 |
//Met Cut
|
460 |
pass = kTRUE;
|
461 |
for (Int_t k=0;k<nCuts;k++) {
|
462 |
if (k != 2) {
|
463 |
pass = (pass && passCut[k]);
|
464 |
}
|
465 |
}
|
466 |
if (pass) {
|
467 |
fMetPtHist_NMinusOne->Fill(caloMet->Pt(),eventweight);
|
468 |
}
|
469 |
|
470 |
//DeltaPhiLeptons
|
471 |
pass = kTRUE;
|
472 |
for (Int_t k=0;k<nCuts;k++) {
|
473 |
if (k != 3) {
|
474 |
pass = (pass && passCut[k]);
|
475 |
}
|
476 |
}
|
477 |
if (pass) {
|
478 |
fDeltaPhiLeptons_NMinusOne->Fill(deltaPhiLeptons,eventweight);
|
479 |
}
|
480 |
|
481 |
//dilepton mass
|
482 |
pass = kTRUE;
|
483 |
for (Int_t k=0;k<nCuts;k++) {
|
484 |
if (k != 4)
|
485 |
pass = (pass && passCut[k]);
|
486 |
}
|
487 |
if (pass) {
|
488 |
fDileptonMass_NMinusOne->Fill(dilepton->Mass(),eventweight);
|
489 |
}
|
490 |
|
491 |
//Lepton Pt Max
|
492 |
pass = kTRUE;
|
493 |
for (Int_t k=0;k<nCuts;k++) {
|
494 |
if (k != 5) {
|
495 |
pass = (pass && passCut[k]);
|
496 |
}
|
497 |
}
|
498 |
if (pass) {
|
499 |
fLeptonPtMax_NMinusOne->Fill(leptons->At(0)->Pt(),eventweight);
|
500 |
}
|
501 |
|
502 |
//Lepton Pt Min
|
503 |
pass = kTRUE;
|
504 |
for (Int_t k=0;k<nCuts;k++) {
|
505 |
if (k != 6) {
|
506 |
pass = (pass && passCut[k]);
|
507 |
}
|
508 |
}
|
509 |
if (pass) {
|
510 |
fLeptonPtMin_NMinusOne->Fill(leptons->At(1)->Pt(),eventweight);
|
511 |
}
|
512 |
|
513 |
//NDirtyMuons
|
514 |
pass = kTRUE;
|
515 |
for (Int_t k=0;k<nCuts;k++) {
|
516 |
if (k != 7)
|
517 |
pass = (pass && passCut[k]);
|
518 |
}
|
519 |
if (pass) {
|
520 |
fNDirtyMuonsHist_NMinusOne->Fill(DirtyMuons->GetEntries(),eventweight);
|
521 |
}
|
522 |
|
523 |
//NCleanExtraTracks
|
524 |
pass = kTRUE;
|
525 |
for (Int_t k=0;k<nCuts;k++) {
|
526 |
if (k != 8)
|
527 |
pass = (pass && passCut[k]);
|
528 |
}
|
529 |
if (pass) {
|
530 |
fNCleanExtraTracksHist_NMinusOne->Fill(CleanExtraTracks->GetEntries(),
|
531 |
eventweight);
|
532 |
}
|
533 |
|
534 |
//*********************************************************************************************
|
535 |
//Plots after all Cuts
|
536 |
//*********************************************************************************************
|
537 |
if (passAllCuts) {
|
538 |
fMinDeltaPhiLeptonMet_afterCuts->Fill(minDeltaPhiMetLepton,eventweight);
|
539 |
fMtLepton1_afterCuts->Fill(mTW[0],eventweight);
|
540 |
fMtLepton2_afterCuts->Fill(mTW[1],eventweight);
|
541 |
fMtHiggs_afterCuts->Fill(mtHiggs,eventweight);
|
542 |
}
|
543 |
|
544 |
if (!fUseMCFake) {
|
545 |
delete leptons;
|
546 |
delete CleanJets;
|
547 |
delete caloMet;
|
548 |
}
|
549 |
delete dilepton;
|
550 |
delete DirtyMuons;
|
551 |
delete CleanExtraTracks;
|
552 |
}
|
553 |
|
554 |
delete FakeableObjects;
|
555 |
if (fUseMCFake) {
|
556 |
delete FakeEventHeaders;
|
557 |
}
|
558 |
return;
|
559 |
}
|
560 |
|
561 |
//--------------------------------------------------------------------------------------------------
|
562 |
void FakeLeptonExampleAnaMod::SlaveBegin()
|
563 |
{
|
564 |
// Run startup code on the computer (slave) doing the actual analysis. Here,
|
565 |
// we typically initialize histograms and other analysis objects and request
|
566 |
// branches. For this module, we request a branch of the MitTree.
|
567 |
|
568 |
ReqBranch(fTrackBranchName, fTracks);
|
569 |
ReqBranch(fMuonBranchName, fMuons);
|
570 |
|
571 |
//Create your histograms here
|
572 |
|
573 |
|
574 |
//***********************************************************************************************
|
575 |
// Before preselection
|
576 |
//***********************************************************************************************
|
577 |
AddTH1(fDileptonCharge, "hDileptonCharge", ";DileptonCharge;Number of Events", 5, -2.5, 2.5);
|
578 |
TAxis *xa = fDileptonCharge->GetXaxis();
|
579 |
xa->SetBinLabel(1,"--");
|
580 |
xa->SetBinLabel(2,"-+");
|
581 |
xa->SetBinLabel(4,"+-");
|
582 |
xa->SetBinLabel(5,"++");
|
583 |
|
584 |
//***********************************************************************************************
|
585 |
// Histograms after preselection
|
586 |
//***********************************************************************************************
|
587 |
|
588 |
AddTH1(fLeptonPtMax ,"hLeptonPtMax",";Lepton P_t Max;Number of Events",150,0.,150.);
|
589 |
AddTH1(fLeptonPtMin ,"hLeptonPtMin",";Lepton P_t Min;Number of Events",150,0.,150.);
|
590 |
AddTH1(fMetPtHist ,"hMetPtHist",";Met;Number of Events",150,0.,300.);
|
591 |
AddTH1(fDeltaPhiLeptons ,"hDeltaPhiLeptons",";#Delta#phi_{ll};Number of Events",90,0,180);
|
592 |
AddTH1(fDeltaEtaLeptons ,"hDeltaEtaLeptons",";#Delta#eta_{ll};Number of Events",100,-50.,5.0);
|
593 |
AddTH1(fDileptonMass ,"hDileptonMass",";Mass_{ll};Number of Events",150,0.,300.);
|
594 |
|
595 |
//***********************************************************************************************
|
596 |
// N-1 Histograms
|
597 |
//***********************************************************************************************
|
598 |
//All events
|
599 |
AddTH1(fLeptonPtMax_NMinusOne ,"hLeptonPtMax_NMinusOne",
|
600 |
";Lepton P_t Max;Number of Events",150,0.,150.);
|
601 |
AddTH1(fLeptonPtMin_NMinusOne ,"hLeptonPtMin_NMinusOne",
|
602 |
";Lepton P_t Min;Number of Events",150,0.,150.);
|
603 |
AddTH1(fMetPtHist_NMinusOne ,"hMetPtHist_NMinusOne",
|
604 |
";Met;Number of Events",150,0.,300.);
|
605 |
AddTH1(fMetPhiHist_NMinusOne ,"hMetPhiHist_NMinusOne",
|
606 |
";#phi;Number of Events",28,-3.5,3.5);
|
607 |
AddTH1(fMETdeltaPhilEtHist_NMinusOne ,"hMETdeltaPhilEtHist_NMinusOne",
|
608 |
";METdeltaPhilEtHist;Number of Events",150,0.,300.);
|
609 |
AddTH1(fNCentralJets_NMinusOne ,"hNCentralJets_NMinusOne",
|
610 |
";Number of Central Jets;Number of Events",6,-0.5,5.5);
|
611 |
AddTH1(fNDirtyMuonsHist_NMinusOne ,"hNDirtyMuonsHist_NMinusOne",
|
612 |
";Number of Dirty Muons; Number of Events",6,-0.5,5.5);
|
613 |
AddTH1(fNCleanExtraTracksHist_NMinusOne ,"hNCleanExtraTracksHist_NMinusOne",
|
614 |
";Number of Clean Extra Tracks; Number of Events",
|
615 |
15,-0.5,14.5);
|
616 |
AddTH1(fDeltaPhiLeptons_NMinusOne ,"hDeltaPhiLeptons_NMinusOne",
|
617 |
";#Delta#phi_{ll};Number of Events",90,0,180);
|
618 |
AddTH1(fDeltaEtaLeptons_NMinusOne ,"hDeltaEtaLeptons_NMinusOne",
|
619 |
";#Delta#eta_{ll};Number of Events",100,-5.0,5.0);
|
620 |
AddTH1(fDileptonMass_NMinusOne ,"hDileptonMass_NMinusOne",
|
621 |
";Mass_{ll};Number of Events",150,0.,300.);
|
622 |
AddTH1(fMinDeltaPhiLeptonMet_NMinusOne ,"hMinDeltaPhiLeptonMet_NMinusOne",
|
623 |
";Min #Delta#phi_{l,Met};Number of Events",90,0.,180);
|
624 |
|
625 |
|
626 |
//***********************************************************************************************
|
627 |
// After all cuts Histograms
|
628 |
//***********************************************************************************************
|
629 |
|
630 |
AddTH1(fMinDeltaPhiLeptonMet_afterCuts ,"hMinDeltaPhiLeptonMet_afterCuts",
|
631 |
";Min #Delta#phi_{l,Met};Number of Events",90,0.,180);
|
632 |
AddTH1(fMtLepton1_afterCuts ,"hMtLepton1_afterCuts",
|
633 |
";M_t (Lepton1,Met);Number of Events",100,0.,200.);
|
634 |
AddTH1(fMtLepton2_afterCuts ,"hMtLepton2_afterCuts",
|
635 |
";M_t (Lepton2,Met);Number of Events",100,0.,200.);
|
636 |
AddTH1(fMtHiggs_afterCuts ,"hMtHiggs_afterCuts",
|
637 |
";M_t (l1+l2+Met);Number of Events",150,0.,300.);
|
638 |
|
639 |
}
|