[35b9204] | 1 | /*
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[fbb617b] | 2 | This macro shows how to compute jet energy scale.
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[35b9204] | 3 | root -l examples/Example4.C'("delphes_output.root", "plots.root")'
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| 4 |
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[c9803f7] | 5 | The output ROOT file contains the pT(MC)/pT(Reco) distributions for
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| 6 | various pT(Reco) and |eta| bins. The peak value of such distribution is
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| 7 | interpreted as the jet energy correction to be applied for that
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| 8 | given pT(Reco), |eta| bin.
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[35b9204] | 9 |
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[c9803f7] | 10 | This can be done by modifying the "ScaleFormula" input parameter to
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| 11 | the JetEnergyScale module in the delphes_card_XXX.tcl
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[35b9204] | 12 |
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| 13 | e.g a smooth function:
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| 14 |
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[c9803f7] | 15 | set ScaleFormula { sqrt(3.0 - 0.1*(abs(eta)))^2 / pt + 1.0) }
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[fbb617b] | 16 |
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[35b9204] | 17 | or a binned function:
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[fbb617b] | 18 |
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| 19 | set ScaleFormula {(abs(eta) > 0.0 && abs(eta) <= 2.5) * (pt > 20.0 && pt <= 50.0) * (1.10) +
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| 20 | (abs(eta) > 0.0 && abs(eta) <= 2.5) * (pt > 50.0 && pt <= 100.0) * (1.05) +
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| 21 | (abs(eta) > 0.0 && abs(eta) <= 2.5) * (pt > 100.0) * (1.00) +
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| 22 | (abs(eta) > 2.5 && abs(eta) <= 5.0) * (pt > 20.0 && pt <= 50.0) * (1.10) +
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| 23 | (abs(eta) > 2.5 && abs(eta) <= 5.0) * (pt > 50.0 && pt <= 100.0) * (1.05) +
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[35b9204] | 24 | (abs(eta) > 2.5 && abs(eta) <= 5.0) * (pt > 100.0) * (1.00)}
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| 25 |
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[c9803f7] | 26 | Be aware that a binned jet energy scale can produce "steps" in the corrected
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| 27 | jet pt distribution ...
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[35b9204] | 28 | */
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| 29 |
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[c9803f7] | 30 | #ifdef __CLING__
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| 31 | R__LOAD_LIBRARY(libDelphes)
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| 32 | #include "classes/DelphesClasses.h"
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| 33 | #include "external/ExRootAnalysis/ExRootTreeReader.h"
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| 34 | #include "external/ExRootAnalysis/ExRootResult.h"
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| 35 | #else
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| 36 | class ExRootTreeReader;
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| 37 | class ExRootResult;
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| 38 | #endif
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| 39 |
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[35b9204] | 40 | //------------------------------------------------------------------------------
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| 41 |
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| 42 | struct TestPlots
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| 43 | {
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| 44 | TH1 *fJetPT;
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[fbb617b] | 45 |
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[35b9204] | 46 | TH1 *fJetRes_Pt_20_50_Eta_0_25;
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| 47 | TH1 *fJetRes_Pt_20_50_Eta_25_5;
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| 48 |
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| 49 | TH1 *fJetRes_Pt_50_100_Eta_0_25;
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| 50 | TH1 *fJetRes_Pt_50_100_Eta_25_5;
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| 51 |
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| 52 | TH1 *fJetRes_Pt_100_200_Eta_0_25;
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| 53 | TH1 *fJetRes_Pt_100_200_Eta_25_5;
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| 54 |
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| 55 | TH1 *fJetRes_Pt_200_500_Eta_0_25;
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| 56 | TH1 *fJetRes_Pt_200_500_Eta_25_5;
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| 57 |
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| 58 | TH1 *fJetRes_Pt_500_inf_Eta_0_25;
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| 59 | TH1 *fJetRes_Pt_500_inf_Eta_25_5;
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| 60 |
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| 61 | };
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| 62 |
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| 63 | //------------------------------------------------------------------------------
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| 64 |
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| 65 | class ExRootResult;
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| 66 | class ExRootTreeReader;
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| 67 |
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| 68 | //------------------------------------------------------------------------------
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| 69 |
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| 70 | void BookHistograms(ExRootResult *result, TestPlots *plots)
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| 71 | {
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| 72 | TLegend *legend;
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| 73 | TPaveText *comment;
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| 74 |
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| 75 | plots->fJetPT = result->AddHist1D(
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| 76 | "jet_pt", "p_{T}^{jet}",
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| 77 | "p_{T}^{jet} GeV/c", "number of jets",
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[fbb617b] | 78 | 100, 0.0, 1000.0);
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| 79 |
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[35b9204] | 80 | plots->fJetRes_Pt_20_50_Eta_0_25 = result->AddHist1D(
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| 81 | "jet_delta_pt_20_50_cen", "p_{T}^{truth,parton}/p_{T}^{jet} , 20 < p_{T} < 50 , 0 < | #eta | < 2.5 ",
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| 82 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 83 | 100, 0.0, 2.0);
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| 84 |
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| 85 | plots->fJetRes_Pt_20_50_Eta_0_25->SetStats();
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| 86 |
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| 87 | plots->fJetRes_Pt_20_50_Eta_25_5 = result->AddHist1D(
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| 88 | "jet_delta_pt_20_50_fwd", "p_{T}^{truth,parton}/p_{T}^{jet} , 20 < p_{T} < 50 , 2.5 < | #eta | < 5 ",
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| 89 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 90 | 100, 0.0, 2.0);
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| 91 |
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| 92 | plots->fJetRes_Pt_20_50_Eta_25_5->SetStats();
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| 93 |
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| 94 | plots->fJetRes_Pt_50_100_Eta_0_25 = result->AddHist1D(
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| 95 | "jet_delta_pt_50_100_cen", "p_{T}^{truth,parton}/p_{T}^{jet} , 50 < p_{T} < 100 , 0 < | #eta | < 2.5 ",
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| 96 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 97 | 100, 0.0, 2.0);
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| 98 |
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| 99 | plots->fJetRes_Pt_50_100_Eta_0_25->SetStats();
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| 100 |
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| 101 | plots->fJetRes_Pt_50_100_Eta_25_5 = result->AddHist1D(
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| 102 | "jet_delta_pt_50_100_fwd", "p_{T}^{truth,parton}/p_{T}^{jet} , 50 < p_{T} < 100 , 2.5 < | #eta | < 5 ",
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| 103 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 104 | 100, 0.0, 2.0);
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| 105 |
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| 106 | plots->fJetRes_Pt_50_100_Eta_25_5->SetStats();
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| 107 |
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| 108 |
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| 109 | plots->fJetRes_Pt_100_200_Eta_0_25 = result->AddHist1D(
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| 110 | "jet_delta_pt_100_200_cen", "p_{T}^{truth,parton}/p_{T}^{jet} , 100 < p_{T} < 200 , 0 < | #eta | < 2.5 ",
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| 111 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 112 | 100, 0.0, 2.0);
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| 113 |
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| 114 | plots->fJetRes_Pt_100_200_Eta_0_25->SetStats();
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| 115 |
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| 116 | plots->fJetRes_Pt_100_200_Eta_25_5 = result->AddHist1D(
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| 117 | "jet_delta_pt_100_200_fwd", "p_{T}^{truth,parton}/p_{T}^{jet} , 100 < p_{T} < 200 , 2.5 < | #eta | < 5 ",
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| 118 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 119 | 100, 0.0, 2.0);
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| 120 |
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| 121 | plots->fJetRes_Pt_100_200_Eta_25_5->SetStats();
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| 122 |
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| 123 | plots->fJetRes_Pt_200_500_Eta_0_25 = result->AddHist1D(
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| 124 | "jet_delta_pt_200_500_cen", "p_{T}^{truth,parton}/p_{T}^{jet} , 200 < p_{T} < 500 , 0 < | #eta | < 2.5 ",
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| 125 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 126 | 100, 0.0, 2.0);
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| 127 |
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| 128 | plots->fJetRes_Pt_200_500_Eta_0_25->SetStats();
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| 129 |
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| 130 | plots->fJetRes_Pt_200_500_Eta_25_5 = result->AddHist1D(
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| 131 | "jet_delta_pt_200_500_fwd", "p_{T}^{truth,parton}/p_{T}^{jet} , 200 < p_{T} < 500 , 2.5 < | #eta | < 5 ",
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| 132 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 133 | 100, 0.0, 2.0);
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| 134 |
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| 135 | plots->fJetRes_Pt_200_500_Eta_25_5->SetStats();
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| 136 |
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| 137 | plots->fJetRes_Pt_500_inf_Eta_0_25 = result->AddHist1D(
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| 138 | "jet_delta_pt_500_1000_cen", "p_{T}^{truth,parton}/p_{T}^{jet} , 500 < p_{T} < 1000, 0 < | #eta | < 2.5 ",
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| 139 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 140 | 100, 0.0, 2.0);
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| 141 |
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| 142 | plots->fJetRes_Pt_500_inf_Eta_0_25->SetStats();
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| 143 |
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| 144 | plots->fJetRes_Pt_500_inf_Eta_25_5 = result->AddHist1D(
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| 145 | "jet_delta_pt_500_1000_fwd", "p_{T}^{truth,parton}/p_{T}^{jet} , 500 < p_{T} < 1000, 2.5 < | #eta | < 5 ",
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| 146 | "p_{T}^{truth,parton}/p_{T}^{jet}", "number of jets",
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| 147 | 100, 0.0, 2.0);
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| 148 |
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| 149 | plots->fJetRes_Pt_500_inf_Eta_25_5->SetStats();
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[fbb617b] | 150 |
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[35b9204] | 151 |
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| 152 | }
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| 153 |
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| 154 | //------------------------------------------------------------------------------
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| 155 |
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| 156 | void AnalyseEvents(ExRootTreeReader *treeReader, TestPlots *plots)
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| 157 | {
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| 158 | TClonesArray *branchParticle = treeReader->UseBranch("Particle");
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| 159 | TClonesArray *branchGenJet = treeReader->UseBranch("GenJet");
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| 160 | TClonesArray *branchJet = treeReader->UseBranch("Jet");
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| 161 |
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| 162 | Long64_t allEntries = treeReader->GetEntries();
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| 163 |
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| 164 | cout << "** Chain contains " << allEntries << " events" << endl;
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| 165 |
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| 166 | Jet *jet, *genjet;
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[c9803f7] | 167 | GenParticle *particle;
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[35b9204] | 168 | TObject *object;
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| 169 |
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[c9803f7] | 170 | TLorentzVector jetMomentum, genJetMomentum, bestGenJetMomentum;
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[35b9204] | 171 |
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[c9803f7] | 172 | Float_t deltaR;
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[35b9204] | 173 | Float_t pt, eta;
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| 174 | Long64_t entry;
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| 175 |
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| 176 | Int_t i, j;
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| 177 |
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| 178 | // Loop over all events
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| 179 | for(entry = 0; entry < allEntries; ++entry)
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| 180 | {
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| 181 | // Load selected branches with data from specified event
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| 182 | treeReader->ReadEntry(entry);
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[fbb617b] | 183 |
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[35b9204] | 184 | if(entry%500 == 0) cout << "Event number: "<< entry <<endl;
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[fbb617b] | 185 |
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[35b9204] | 186 | // Loop over all reconstructed jets in event
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| 187 | for(i = 0; i < branchJet->GetEntriesFast(); ++i)
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| 188 | {
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[fbb617b] | 189 |
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[35b9204] | 190 | jet = (Jet*) branchJet->At(i);
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[c9803f7] | 191 | jetMomentum = jet->P4();
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[fbb617b] | 192 |
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[c9803f7] | 193 | plots->fJetPT->Fill(jetMomentum.Pt());
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[fbb617b] | 194 |
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[c9803f7] | 195 | deltaR = 999;
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[fbb617b] | 196 |
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[35b9204] | 197 | // Loop over all hard partons in event
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| 198 | for(j = 0; j < branchParticle->GetEntriesFast(); ++j)
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| 199 | {
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[c9803f7] | 200 | particle = (GenParticle*) branchParticle->At(j);
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[fbb617b] | 201 |
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[c9803f7] | 202 | genJetMomentum = particle->P4();
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[fbb617b] | 203 |
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[c9803f7] | 204 | // this is simply to avoid warnings from initial state particle
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| 205 | // having infite rapidity ...
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| 206 | if(genJetMomentum.Px() == 0 && genJetMomentum.Py() == 0) continue;
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[fbb617b] | 207 |
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[c9803f7] | 208 | // take the closest parton candidate
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| 209 | if(genJetMomentum.DeltaR(jetMomentum) < deltaR)
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[35b9204] | 210 | {
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[c9803f7] | 211 | deltaR = genJetMomentum.DeltaR(jetMomentum);
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| 212 | bestGenJetMomentum = genJetMomentum;
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[fbb617b] | 213 | }
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[35b9204] | 214 | }
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| 215 |
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[c9803f7] | 216 | if(deltaR < 0.3)
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| 217 | {
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| 218 | pt = jetMomentum.Pt();
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| 219 | eta = TMath::Abs(jetMomentum.Eta());
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[fbb617b] | 220 |
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| 221 |
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[c9803f7] | 222 | if(pt > 20.0 && pt < 50.0 && eta > 0.0 && eta < 2.5) plots -> fJetRes_Pt_20_50_Eta_0_25->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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| 223 | if(pt > 20.0 && pt < 50.0 && eta > 2.5 && eta < 5.0) plots -> fJetRes_Pt_20_50_Eta_25_5->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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[fbb617b] | 224 |
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[c9803f7] | 225 | if(pt > 50.0 && pt < 100.0 && eta > 0.0 && eta < 2.5) plots -> fJetRes_Pt_50_100_Eta_0_25->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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| 226 | if(pt > 50.0 && pt < 100.0 && eta > 2.5 && eta < 5.0) plots -> fJetRes_Pt_50_100_Eta_25_5->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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[fbb617b] | 227 |
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[c9803f7] | 228 | if(pt > 100.0 && pt < 200.0 && eta > 0.0 && eta < 2.5) plots -> fJetRes_Pt_100_200_Eta_0_25->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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| 229 | if(pt > 100.0 && pt < 200.0 && eta > 2.5 && eta < 5.0) plots -> fJetRes_Pt_100_200_Eta_25_5->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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[fbb617b] | 230 |
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[c9803f7] | 231 | if(pt > 200.0 && pt < 500.0 && eta > 0.0 && eta < 2.5) plots -> fJetRes_Pt_200_500_Eta_0_25->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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| 232 | if(pt > 200.0 && pt < 500.0 && eta > 2.5 && eta < 5.0) plots -> fJetRes_Pt_200_500_Eta_25_5->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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[fbb617b] | 233 |
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[c9803f7] | 234 | if(pt > 500.0 && eta > 0.0 && eta < 2.5) plots -> fJetRes_Pt_500_inf_Eta_0_25->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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| 235 | if(pt > 500.0 && eta > 2.5 && eta < 5.0) plots -> fJetRes_Pt_500_inf_Eta_25_5->Fill(bestGenJetMomentum.Pt()/jetMomentum.Pt());
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[fbb617b] | 236 |
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[c9803f7] | 237 | }
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[fbb617b] | 238 | }
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[35b9204] | 239 | }
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| 240 | }
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| 241 |
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| 242 | //------------------------------------------------------------------------------
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| 243 |
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| 244 | void Example4(const char *inputFile, const char *outputFile)
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| 245 | {
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| 246 | gSystem->Load("libDelphes");
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| 247 |
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| 248 | TChain *chain = new TChain("Delphes");
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| 249 | chain->Add(inputFile);
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| 250 |
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| 251 | ExRootTreeReader *treeReader = new ExRootTreeReader(chain);
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| 252 | ExRootResult *result = new ExRootResult();
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| 253 |
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| 254 | TestPlots *plots = new TestPlots;
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| 255 |
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| 256 | BookHistograms(result, plots);
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| 257 |
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| 258 | AnalyseEvents(treeReader, plots);
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| 259 |
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| 260 | result->Write(outputFile);
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| 261 |
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| 262 | cout << "** Exiting..." << endl;
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| 263 |
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| 264 | delete plots;
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| 265 | delete result;
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| 266 | delete treeReader;
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| 267 | delete chain;
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| 268 | }
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| 269 |
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| 270 | //------------------------------------------------------------------------------
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