| 1 |  | 
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| 2 | Using ExRootAnalysis package for PGS data analysis | 
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| 3 | ================================================== | 
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| 4 |  | 
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| 5 |  | 
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| 6 | Author: Pavel Demin | 
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| 7 |  | 
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| 8 |  | 
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| 9 |  | 
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| 10 |  | 
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| 11 | Introductory remarks | 
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| 12 | ==================== | 
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| 13 |  | 
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| 14 |  | 
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| 15 | The ExRootAnalysis is a package designed to simplify ROOT tree production and | 
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| 16 | analysis. The purpose of this tutorial is to present current functionality of | 
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| 17 | this software. | 
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| 18 |  | 
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| 19 |  | 
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| 20 |  | 
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| 21 |  | 
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| 22 | Quick start with ExRootAnalysis | 
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| 23 | =============================== | 
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| 24 |  | 
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| 25 | Make sure that ROOT is installed and ROOTSYS, PATH, LD_LIBRARY_PATH, | 
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| 26 | DYLD_LIBRARY_PATH are configured correctly. | 
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| 27 |  | 
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| 28 | Command to unpack the source code: | 
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| 29 |  | 
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| 30 | tar -zxf ExRootAnalysis.tar.gz | 
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| 31 |  | 
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| 32 | Commands to create shared library for interactive ROOT session: | 
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| 33 |  | 
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| 34 | cd ExRootAnalysis | 
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| 35 |  | 
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| 36 | make | 
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| 37 |  | 
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| 38 | Commands to create static library for linking with PGS: | 
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| 39 |  | 
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| 40 | cd ExRootAnalysis | 
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| 41 |  | 
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| 42 | make static | 
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| 43 |  | 
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| 44 |  | 
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| 45 |  | 
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| 46 |  | 
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| 47 | Simple analysis using TTree::Draw | 
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| 48 | ================================= | 
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| 49 |  | 
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| 50 |  | 
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| 51 | Now we can start ROOT and look at the data stored in the ROOT tree. | 
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| 52 |  | 
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| 53 | Start ROOT and load shared library: | 
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| 54 |  | 
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| 55 | root | 
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| 56 | gSystem->Load("lib/libExRootAnalysis.so"); | 
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| 57 |  | 
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| 58 | Open ROOT tree file and do some basic analysis using Draw or TBrowser: | 
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| 59 |  | 
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| 60 | TFile::Open("pgs_events.root"); | 
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| 61 | LHCO->Draw("Electron.PT"); | 
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| 62 | TBrowser browser; | 
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| 63 |  | 
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| 64 | Note 1: LHCO - tree name, it can be learnt e.g. from TBrowser | 
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| 65 |  | 
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| 66 | Note 2: Electron - branch name; PT - variable (leaf) of this branch | 
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| 67 |  | 
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| 68 | Complete description of all branches can be found in | 
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| 69 |  | 
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| 70 | ExRootAnalysis/doc/RootTreeDescription.html | 
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| 71 |  | 
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| 72 |  | 
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| 73 |  | 
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| 74 |  | 
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| 75 | Macro-based analysis | 
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| 76 | ==================== | 
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| 77 |  | 
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| 78 |  | 
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| 79 | Analysis macro consists of histogram booking, event loop (histogram filling), | 
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| 80 | histogram display | 
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| 81 |  | 
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| 82 | Basic analysis macro: | 
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| 83 |  | 
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| 84 | { | 
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| 85 | // Load shared library | 
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| 86 | gSystem->Load("lib/libExRootAnalysis.so"); | 
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| 87 | gSystem->Load("libPhysics"); | 
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| 88 |  | 
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| 89 | // Create chain of root trees | 
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| 90 | TChain chain("LHCO"); | 
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| 91 | chain.Add("pgs_events.root"); | 
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| 92 |  | 
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| 93 | // Create object of class ExRootTreeReader | 
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| 94 | ExRootTreeReader *treeReader = new ExRootTreeReader(&chain); | 
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| 95 | Long64_t numberOfEntries = treeReader->GetEntries(); | 
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| 96 |  | 
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| 97 | // Get pointers to branches used in this analysis | 
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| 98 | TClonesArray *branchJet = treeReader->UseBranch("Jet"); | 
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| 99 | TClonesArray *branchElectron = treeReader->UseBranch("Electron"); | 
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| 100 |  | 
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| 101 | // Book histograms | 
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| 102 | TH1 *histJetPT = new TH1F("jet_pt", "jet P_{T}", 100, 0.0, 100.0); | 
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| 103 | TH1 *histMass = new TH1F("mass", "M_{inv}(e_{1}, e_{2})", 100, 40.0, 140.0); | 
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| 104 |  | 
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| 105 | // Loop over all events | 
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| 106 | for(Int_t entry = 0; entry < numberOfEntries; ++entry) { | 
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| 107 |  | 
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| 108 | // Load selected branches with data from specified event | 
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| 109 | treeReader->ReadEntry(entry); | 
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| 110 |  | 
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| 111 | // If event contains at least 1 jet | 
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| 112 | if(branchJet->GetEntries() > 0) { | 
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| 113 |  | 
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| 114 | // Take first jet | 
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| 115 | TRootJet *jet = (TRootJet*) branchJet->At(0); | 
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| 116 |  | 
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| 117 | // Plot jet transverse momentum | 
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| 118 | histJetPT->Fill(jet->PT); | 
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| 119 |  | 
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| 120 | // Print jet transverse momentum | 
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| 121 | cout << jet->PT << endl; | 
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| 122 | } | 
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| 123 |  | 
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| 124 | TRootElectron *elec1, *elec2; | 
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| 125 | TLorentzVector vec1, vec2; | 
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| 126 |  | 
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| 127 | // If event contains at least 2 electrons | 
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| 128 | if(branchElectron->GetEntries() > 1) { | 
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| 129 |  | 
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| 130 | // Take first two electrons | 
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| 131 | elec1 = (TRootElectron *) branchElectron->At(0); | 
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| 132 | elec2 = (TRootElectron *) branchElectron->At(1); | 
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| 133 |  | 
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| 134 | // Create two 4-vectors for the electrons | 
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| 135 | vec1.SetPtEtaPhiM(elec1->PT, elec1->Eta, elec1->Phi, 0.0); | 
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| 136 | vec2.SetPtEtaPhiM(elec2->PT, elec2->Eta, elec2->Phi, 0.0); | 
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| 137 |  | 
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| 138 | // Plot their invariant mass | 
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| 139 | histMass->Fill((vec1 + vec2).M()); | 
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| 140 | } | 
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| 141 | } | 
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| 142 |  | 
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| 143 | // Show resulting histograms | 
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| 144 | histJetPT->Draw(); | 
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| 145 | histMass->Draw(); | 
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| 146 | } | 
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| 147 |  | 
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| 148 |  | 
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| 149 |  | 
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| 150 |  | 
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| 151 | More advanced macro-based analysis | 
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| 152 | ================================== | 
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| 153 |  | 
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| 154 |  | 
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| 155 | ExRootAnalysis/test contains macro Example.C using class ExRootTreeReader to | 
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| 156 | access data and class ExRootResult to manage histograms booking and output | 
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| 157 |  | 
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| 158 | Here are commands to run this macro: | 
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| 159 |  | 
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| 160 | cd ExRootAnalysis/test | 
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| 161 | $EDITOR test.list | 
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| 162 | root | 
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| 163 | gSystem->Load("../lib/libExRootAnalysis.so"); | 
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| 164 | .X Example.C("test.list"); | 
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| 165 |  | 
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| 166 | Note: file test.list should contain list of root files that you would like to | 
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| 167 | analyse (one root file per line) | 
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| 168 |  | 
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| 169 |  | 
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