[82db145] | 1 | /*
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| 2 | Example of using vertex fitter class to fit primary vertex
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| 3 | assumed to be generated in (0,0,0)
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| 4 | */
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| 5 |
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| 6 | #ifdef __CLING__
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| 7 | R__LOAD_LIBRARY(libDelphes)
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| 8 |
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| 9 | #include "classes/DelphesClasses.h"
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| 10 | #include "external/ExRootAnalysis/ExRootTreeReader.h"
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| 11 | #include "modules/TrackCovariance.h"
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| 12 | #include "external/TrackCovariance/TrkUtil.h"
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| 13 | #include "external/TrackCovariance/VertexFit.h"
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| 14 |
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| 15 | #endif
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| 16 |
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| 17 |
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| 18 | //------------------------------------------------------------------------------
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| 19 |
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| 20 | void ExamplePVtxFind(const char* inputFile, Int_t Nevent = 5)
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| 21 | {
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| 22 | // Create chain of root trees
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| 23 | TChain chain("Delphes");
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| 24 | chain.Add(inputFile);
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| 25 |
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| 26 | // Create object of class ExRootTreeReader
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| 27 | ExRootTreeReader* treeReader = new ExRootTreeReader(&chain);
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| 28 | Long64_t numberOfEntries = treeReader->GetEntries();
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| 29 |
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| 30 | // Get pointers to branches used in this analysis
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| 31 | TClonesArray* branchGenPart = treeReader->UseBranch("Particle");
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| 32 | TClonesArray* branchTrack = treeReader->UseBranch("Track");
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| 33 |
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| 34 | // Book histograms
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| 35 | // Vertex fit pulls
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| 36 | Int_t Nbin = 100;
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| 37 | TH1D* hXpull = new TH1D("hXpull", "Pull X vertex component", Nbin, -10., 10.);
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| 38 | TH1D* hYpull = new TH1D("hYpull", "Pull Y vertex component", Nbin, -10., 10.);
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| 39 | TH1D* hZpull = new TH1D("hZpull", "Pull Z vertex component", Nbin, -10., 10.);
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| 40 | TH1D* hChi2 = new TH1D("hChi2", "Vertex #chi^{2}/N_{dof}", Nbin, 0., 10.);
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| 41 | // Track vertex associations
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| 42 | TH1D* hTrPrim = new TH1D("hTrPrim", "Available primary tracks", 41, -0.5, 40.5);
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| 43 | TH1D* hTrFound = new TH1D("hTrFound", "Found primary tracks", 41, -0.5, 40.5);
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| 44 | TH1D* hTrFoundG = new TH1D("hTrFoundG", "Found GOOD primary tracks", 41, -0.5, 40.5);
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| 45 | TH1D* hTrFoundB = new TH1D("hTrFoundB", "Found BAD primary tracks", 41, -0.5, 40.5);
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| 46 | //
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| 47 | // Loop over all events
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| 48 | Int_t Nev = TMath::Min(Nevent, (Int_t)numberOfEntries);
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| 49 | for (Int_t entry = 0; entry < Nev; ++entry)
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| 50 | {
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| 51 | // Load selected branches with data from specified event
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| 52 | treeReader->ReadEntry(entry);
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| 53 | Int_t Ntr = 0; // # of starting tracks used in primary vertex
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| 54 | Int_t NtrG = branchTrack->GetEntries();
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| 55 | //std::cout << "Event opened containing " << NtrG << " tracks" << std::endl;
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| 56 | TVectorD** pr = new TVectorD * [NtrG];
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| 57 | TMatrixDSym** cv = new TMatrixDSym * [NtrG];
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| 58 | //
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| 59 | // test Particle branch
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| 60 | Int_t Ngen = branchGenPart->GetEntries();
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| 61 | //std::cout << "Nr. of generated particles: " << Ngen << std::endl;
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| 62 | // If event contains at least 1 track
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| 63 | //
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| 64 | Double_t Nprim = 0.0;
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| 65 | if (branchTrack->GetEntries() > 0)
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| 66 | {
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| 67 | // Loop on tracks
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| 68 | for (Int_t it = 0; it < branchTrack->GetEntries(); it++)
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| 69 | {
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| 70 | Track* trk = (Track*)branchTrack->At(it);
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| 71 | //
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| 72 | // Start fitting all available tracks
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| 73 | //
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| 74 | // Reconstructed track parameters
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| 75 | Double_t obsD0 = trk->D0;
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| 76 | Double_t obsPhi = trk->Phi;
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| 77 | Double_t obsC = trk->C;
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| 78 | Double_t obsZ0 = trk->DZ;
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| 79 | Double_t obsCtg = trk->CtgTheta;
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| 80 | //std::cout << "Got track parameters for track " << it << std::endl;
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| 81 | //
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| 82 | // Load tracks for vertex fit if impact parameters is not ridiculous
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| 83 | Double_t Dmax = 1.0; // max is 1 mm
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| 84 | if (TMath::Abs(obsD0) < Dmax) {
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| 85 | Double_t oPar[5] = { obsD0, obsPhi, obsC, obsZ0, obsCtg };
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| 86 | TVectorD obsPar(5, oPar); // Fill observed parameters
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| 87 | pr[Ntr] = new TVectorD(obsPar);
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| 88 | cv[Ntr] = new TMatrixDSym(trk->CovarianceMatrix());
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| 89 | Ntr++;
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| 90 | //std::cout << "Track loaded Ntr= " << Ntr << std::endl;
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| 91 | }
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| 92 | //
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| 93 | // Get associated generated particle
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| 94 | GenParticle* gp = (GenParticle*)trk->Particle.GetObject();
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| 95 | //std::cout << "GenParticle pointer "<<gp << std::endl;
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| 96 | //
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| 97 | // Position of origin in mm
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| 98 | Double_t x = gp->X;
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| 99 | Double_t y = gp->Y;
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| 100 | Double_t z = gp->Z;
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| 101 | //std::cout << "Got position of origin " << std::endl;
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| 102 | //
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| 103 | // Count tracks originating from the primary vertex
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| 104 | if (x == 0.0 && y == 0.0) Nprim++;
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| 105 |
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| 106 | } // End loop on tracks
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| 107 | }
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| 108 | //
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| 109 | // Fit primary vertex
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| 110 | //
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| 111 | Int_t Nfound = Ntr;
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| 112 | //std::cout << "Found tracks "<<Nfound << std::endl;
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| 113 | Int_t MinTrk = 2; // Minumum # tracks for vertex fit
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| 114 | Double_t MaxChi2 = 6.;
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| 115 | if (Ntr >= MinTrk) {
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| 116 | VertexFit* Vtx = new VertexFit(Ntr, pr, cv);
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| 117 | //std::cout << "Vertex fit created " << std::endl;
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| 118 | //
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| 119 | // Remove tracks with large chi2
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| 120 | Bool_t Done = kFALSE;
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| 121 | while (!Done){
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| 122 | //std::cout << "After while " << std::endl;
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| 123 | // Find largest Chi2 contribution
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| 124 | TVectorD Chi2List = Vtx->GetVtxChi2List(); // Get contributions to Chi2
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| 125 | //std::cout << "After Chi2List. " << std::endl; Chi2List.Print();
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| 126 | Double_t* Chi2L = new Double_t[Nfound];
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| 127 | Chi2L = Chi2List.GetMatrixArray();
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| 128 | Int_t iMax = TMath::LocMax(Nfound, Chi2L);
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| 129 | //std::cout << "iMax = "<<iMax << std::endl;
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| 130 | Double_t Chi2Mx = Chi2L[iMax];
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| 131 | //std::cout << "Chi2Mx "<<Chi2Mx << std::endl;
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| 132 | if (Chi2Mx > MaxChi2 && Nfound > 2) {
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| 133 | Vtx->RemoveTrk(iMax);
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| 134 | Nfound--;
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| 135 | }
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| 136 | else {
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| 137 | Done = kTRUE;
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| 138 | }
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| 139 | //std::cout << "Done = " << Done << std::endl;
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| 140 | //delete[] Chi2L;
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| 141 | //std::cout << "Array Chi2L removed " << std::endl;
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| 142 | }
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| 143 | //
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| 144 | //std::cout << "Before getting vertex " << std::endl;
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| 145 | //
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| 146 | // Require minimum number of tracks in vertex
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| 147 | Int_t Nmin = 4;
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| 148 | if (Nfound >= Nmin) {
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| 149 | TVectorD xvtx = Vtx->GetVtx();
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| 150 | //std::cout << "Found vertex " << xvtx(0)<<", "<<xvtx(1)<<", "<<xvtx(2) << std::endl;
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| 151 | TMatrixDSym covX = Vtx->GetVtxCov();
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| 152 | Double_t Chi2 = Vtx->GetVtxChi2();
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| 153 | Double_t Ndof = 2 * (Double_t)Nfound - 3;
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| 154 | Double_t PullX = xvtx(0) / TMath::Sqrt(covX(0, 0));
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| 155 | Double_t PullY = xvtx(1) / TMath::Sqrt(covX(1, 1));
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| 156 | Double_t PullZ = xvtx(2) / TMath::Sqrt(covX(2, 2));
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| 157 | //
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| 158 | // Fill histograms
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| 159 | hXpull->Fill(PullX);
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| 160 | hYpull->Fill(PullY);
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| 161 | hZpull->Fill(PullZ);
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| 162 | hChi2->Fill(Chi2 / Ndof);
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| 163 | //
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| 164 | hTrPrim->Fill(Nprim);
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| 165 | hTrFound->Fill((Double_t)Nfound);
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| 166 | //std::cout << "Histograms filled " << std::endl;
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| 167 | }
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| 168 | //
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| 169 | delete Vtx;
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| 170 | }
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| 171 |
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| 172 | //std::cout << "Vertex chi2/Ndof = " << Chi2 / Ndof << std::endl;
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| 173 | //
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| 174 | // Cleanup
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| 175 | for (Int_t i = 0; i < Ntr; i++) delete pr[i];
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| 176 | for (Int_t i = 0; i < Ntr; i++) delete cv[i];
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| 177 | delete[] pr;
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| 178 | delete[] cv;
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| 179 | }
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| 180 | //
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| 181 | // Show resulting histograms
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| 182 | //
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| 183 | TCanvas* Cnv = new TCanvas("Cnv", "Delphes primary vertex pulls", 50, 50, 900, 500);
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| 184 | Cnv->Divide(2, 2);
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| 185 | Cnv->cd(1); gPad->SetLogy(1); gStyle->SetOptFit(1111);
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| 186 | hXpull->Fit("gaus"); hXpull->Draw();
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| 187 | Cnv->cd(2); gPad->SetLogy(1); gStyle->SetOptFit(1111);
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| 188 | hYpull->Fit("gaus"); hYpull->Draw();
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| 189 | Cnv->cd(3); gPad->SetLogy(1); gStyle->SetOptFit(1111);
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| 190 | hZpull->Fit("gaus"); hZpull->Draw();
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| 191 | Cnv->cd(4); hChi2->Draw();
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| 192 | //
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| 193 | TCanvas* CnvN = new TCanvas("CnvN", "Primary tracks found", 100, 100, 900, 500);
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| 194 | CnvN->Divide(2, 1);
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| 195 | CnvN->cd(1);
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| 196 | hTrPrim->Draw();
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| 197 | CnvN-> cd(2);
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| 198 | hTrFound->SetLineColor(kRed);
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| 199 | hTrFound->Draw();
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| 200 | }
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