[d7d2da3] | 1 | #######################################
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| 2 | # Order of execution of various modules
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| 3 | #######################################
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| 4 |
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| 5 | set ExecutionPath {
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| 6 | ParticlePropagator
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| 7 |
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| 8 | ChargedHadronTrackingEfficiency
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| 9 | ElectronTrackingEfficiency
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| 10 | MuonTrackingEfficiency
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| 11 |
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| 12 | ChargedHadronMomentumSmearing
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| 13 | ElectronEnergySmearing
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| 14 | MuonMomentumSmearing
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| 15 |
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| 16 | TrackMerger
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| 17 | Calorimeter
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| 18 | EFlowMerger
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| 19 | }
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| 20 |
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| 21 | #################################
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| 22 | # Propagate particles in cylinder
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| 23 | #################################
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| 24 |
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| 25 | module ParticlePropagator ParticlePropagator {
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| 26 | set InputArray Delphes/stableParticles
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| 27 |
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| 28 | set OutputArray stableParticles
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| 29 | set ChargedHadronOutputArray chargedHadrons
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| 30 | set ElectronOutputArray electrons
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| 31 | set MuonOutputArray muons
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| 32 |
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| 33 | # radius of the magnetic field coverage, in m
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| 34 | set Radius 1.29
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| 35 | # half-length of the magnetic field coverage, in m
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| 36 | set HalfLength 3.00
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| 37 |
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| 38 | # magnetic field
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| 39 | set Bz 3.8
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| 40 | }
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| 41 |
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| 42 | ####################################
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| 43 | # Charged hadron tracking efficiency
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| 44 | ####################################
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| 45 |
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| 46 | module Efficiency ChargedHadronTrackingEfficiency {
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| 47 | set InputArray ParticlePropagator/chargedHadrons
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| 48 | set OutputArray chargedHadrons
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| 49 |
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| 50 | # add EfficiencyFormula {efficiency formula as a function of eta and pt}
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| 51 |
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| 52 | # tracking efficiency formula for charged hadrons
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| 53 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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| 54 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.70) + \
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| 55 | (abs(eta) <= 1.5) * (pt > 1.0) * (0.95) + \
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| 56 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.60) + \
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| 57 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0) * (0.85) + \
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| 58 | (abs(eta) > 2.5) * (0.00)}
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| 59 | }
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| 60 |
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| 61 | ##############################
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| 62 | # Electron tracking efficiency
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| 63 | ##############################
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| 64 |
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| 65 | module Efficiency ElectronTrackingEfficiency {
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| 66 | set InputArray ParticlePropagator/electrons
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| 67 | set OutputArray electrons
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| 68 |
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| 69 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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| 70 |
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| 71 | # tracking efficiency formula for electrons
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| 72 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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| 73 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.73) + \
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| 74 | (abs(eta) <= 1.5) * (pt > 1.0 && pt <= 1.0e2) * (0.95) + \
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| 75 | (abs(eta) <= 1.5) * (pt > 1.0e2) * (0.99) + \
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| 76 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.50) + \
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| 77 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0 && pt <= 1.0e2) * (0.83) + \
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| 78 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e2) * (0.90) + \
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| 79 | (abs(eta) > 2.5) * (0.00)}
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| 80 | }
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| 81 |
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| 82 | ##########################
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| 83 | # Muon tracking efficiency
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| 84 | ##########################
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| 85 |
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| 86 | module Efficiency MuonTrackingEfficiency {
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| 87 | set InputArray ParticlePropagator/muons
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| 88 | set OutputArray muons
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| 89 |
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| 90 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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| 91 |
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| 92 | # tracking efficiency formula for muons
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| 93 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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| 94 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.75) + \
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| 95 | (abs(eta) <= 1.5) * (pt > 1.0) * (0.99) + \
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| 96 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.70) + \
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| 97 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0) * (0.98) + \
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| 98 | (abs(eta) > 2.5) * (0.00)}
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| 99 | }
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| 100 |
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| 101 | ########################################
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| 102 | # Momentum resolution for charged tracks
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| 103 | ########################################
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| 104 |
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| 105 | module MomentumSmearing ChargedHadronMomentumSmearing {
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| 106 | set InputArray ChargedHadronTrackingEfficiency/chargedHadrons
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| 107 | set OutputArray chargedHadrons
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| 108 |
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| 109 | # set ResolutionFormula {resolution formula as a function of eta and pt}
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| 110 |
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| 111 | # resolution formula for charged hadrons
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[a1ac20e] | 112 | set ResolutionFormula { (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.02) + \
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| 113 | (abs(eta) <= 1.5) * (pt > 1.0 && pt <= 1.0e1) * (0.01) + \
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| 114 | (abs(eta) <= 1.5) * (pt > 1.0e1 && pt <= 2.0e2) * (0.03) + \
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| 115 | (abs(eta) <= 1.5) * (pt > 2.0e2) * (0.05) + \
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| 116 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.03) + \
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| 117 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0 && pt <= 1.0e1) * (0.02) + \
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| 118 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e1 && pt <= 2.0e2) * (0.04) + \
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| 119 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 2.0e2) * (0.05)}
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[d7d2da3] | 120 | }
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| 121 |
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| 122 | #################################
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| 123 | # Energy resolution for electrons
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| 124 | #################################
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| 125 |
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| 126 | module EnergySmearing ElectronEnergySmearing {
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| 127 | set InputArray ElectronTrackingEfficiency/electrons
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| 128 | set OutputArray electrons
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| 129 |
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| 130 | # set ResolutionFormula {resolution formula as a function of eta and energy}
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| 131 |
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[8839353] | 132 | # resolution formula for electrons
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[a0ff736] | 133 | set ResolutionFormula { (abs(eta) <= 2.5) * (energy > 0.1 && energy <= 2.0e1) * (energy*0.0225) + \
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[8839353] | 134 | (abs(eta) <= 2.5) * (energy > 2.0e1) * sqrt(energy^2*0.007^2 + energy*0.07^2 + 0.35^2) + \
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| 135 | (abs(eta) > 2.5 && abs(eta) <= 3.0) * sqrt(energy^2*0.007^2 + energy*0.07^2 + 0.35^2) + \
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[d7d2da3] | 136 | (abs(eta) > 3.0 && abs(eta) <= 5.0) * sqrt(energy^2*0.107^2 + energy*2.08^2)}
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| 137 |
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| 138 | }
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| 139 |
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| 140 | ###############################
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| 141 | # Momentum resolution for muons
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| 142 | ###############################
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| 143 |
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| 144 | module MomentumSmearing MuonMomentumSmearing {
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| 145 | set InputArray MuonTrackingEfficiency/muons
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| 146 | set OutputArray muons
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| 147 |
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| 148 | # set ResolutionFormula {resolution formula as a function of eta and pt}
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| 149 |
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| 150 | # resolution formula for muons
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[8839353] | 151 | set ResolutionFormula { (abs(eta) <= 0.5) * (pt > 0.1 && pt <= 5.0) * (0.02) + \
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| 152 | (abs(eta) <= 0.5) * (pt > 5.0 && pt <= 1.0e2) * (0.015) + \
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[1697699] | 153 | (abs(eta) <= 0.5) * (pt > 1.0e2 && pt <= 2.0e2) * (0.03) + \
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| 154 | (abs(eta) <= 0.5) * (pt > 2.0e2) * (0.05 + pt*1.e-4) + \
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[8839353] | 155 | (abs(eta) > 0.5 && abs(eta) <= 1.5) * (pt > 0.1 && pt <= 5.0) * (0.03) + \
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| 156 | (abs(eta) > 0.5 && abs(eta) <= 1.5) * (pt > 5.0 && pt <= 1.0e2) * (0.02) + \
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[1697699] | 157 | (abs(eta) > 0.5 && abs(eta) <= 1.5) * (pt > 1.0e2 && pt <= 2.0e2) * (0.04) + \
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| 158 | (abs(eta) > 0.5 && abs(eta) <= 1.5) * (pt > 2.0e2) * (0.05 + pt*1.e-4) + \
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[8839353] | 159 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 5.0) * (0.04) + \
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| 160 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 5.0 && pt <= 1.0e2) * (0.035) + \
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[1697699] | 161 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e2 && pt <= 2.0e2) * (0.05) + \
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| 162 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 2.0e2) * (0.05 + pt*1.e-4)}
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[d7d2da3] | 163 | }
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| 164 |
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| 165 | ##############
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| 166 | # Track merger
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| 167 | ##############
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| 168 |
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| 169 | module Merger TrackMerger {
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| 170 | # add InputArray InputArray
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| 171 | add InputArray ChargedHadronMomentumSmearing/chargedHadrons
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| 172 | add InputArray ElectronEnergySmearing/electrons
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[a0ff736] | 173 | add InputArray MuonMomentumSmearing/muons
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[d7d2da3] | 174 | set OutputArray tracks
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| 175 | }
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| 176 |
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| 177 | #############
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| 178 | # Calorimeter
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| 179 | #############
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| 180 |
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| 181 | module Calorimeter Calorimeter {
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| 182 | set ParticleInputArray ParticlePropagator/stableParticles
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| 183 | set TrackInputArray TrackMerger/tracks
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| 184 |
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| 185 | set TowerOutputArray towers
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| 186 | set PhotonOutputArray photons
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| 187 |
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[1c8d9db] | 188 | set EcalTowerMinEnergy 0.5
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| 189 | set HcalTowerMinEnergy 1.0
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| 190 |
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| 191 | set EcalTowerMinSignificance 1.0
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| 192 | set HcalTowerMinSignificance 1.0
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| 193 |
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[d7d2da3] | 194 | set EFlowTrackOutputArray eflowTracks
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[27bf162] | 195 | set EFlowPhotonOutputArray eflowPhotons
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| 196 | set EFlowNeutralHadronOutputArray eflowNeutralHadrons
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[d7d2da3] | 197 |
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| 198 | set pi [expr {acos(-1)}]
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| 199 |
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| 200 | # lists of the edges of each tower in eta and phi
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| 201 | # each list starts with the lower edge of the first tower
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| 202 | # the list ends with the higher edged of the last tower
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| 203 |
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| 204 | # 5 degrees towers
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| 205 | set PhiBins {}
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| 206 | for {set i -36} {$i <= 36} {incr i} {
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| 207 | add PhiBins [expr {$i * $pi/36.0}]
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| 208 | }
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| 209 | foreach eta {-1.566 -1.479 -1.392 -1.305 -1.218 -1.131 -1.044 -0.957 -0.87 -0.783 -0.696 -0.609 -0.522 -0.435 -0.348 -0.261 -0.174 -0.087 0 0.087 0.174 0.261 0.348 0.435 0.522 0.609 0.696 0.783 0.87 0.957 1.044 1.131 1.218 1.305 1.392 1.479 1.566 1.653} {
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| 210 | add EtaPhiBins $eta $PhiBins
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| 211 | }
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| 212 |
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| 213 | # 10 degrees towers
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| 214 | set PhiBins {}
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| 215 | for {set i -18} {$i <= 18} {incr i} {
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| 216 | add PhiBins [expr {$i * $pi/18.0}]
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| 217 | }
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| 218 | foreach eta {-4.35 -4.175 -4 -3.825 -3.65 -3.475 -3.3 -3.125 -2.95 -2.868 -2.65 -2.5 -2.322 -2.172 -2.043 -1.93 -1.83 -1.74 -1.653 1.74 1.83 1.93 2.043 2.172 2.322 2.5 2.65 2.868 2.95 3.125 3.3 3.475 3.65 3.825 4 4.175 4.35 4.525} {
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| 219 | add EtaPhiBins $eta $PhiBins
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| 220 | }
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| 221 |
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| 222 | # 20 degrees towers
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| 223 | set PhiBins {}
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| 224 | for {set i -9} {$i <= 9} {incr i} {
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| 225 | add PhiBins [expr {$i * $pi/9.0}]
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| 226 | }
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| 227 | foreach eta {-5 -4.7 -4.525 4.7 5} {
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| 228 | add EtaPhiBins $eta $PhiBins
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| 229 | }
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| 230 |
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| 231 | # default energy fractions {abs(PDG code)} {Fecal Fhcal}
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| 232 | add EnergyFraction {0} {0.0 1.0}
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| 233 | # energy fractions for e, gamma and pi0
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| 234 | add EnergyFraction {11} {1.0 0.0}
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| 235 | add EnergyFraction {22} {1.0 0.0}
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| 236 | add EnergyFraction {111} {1.0 0.0}
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| 237 | # energy fractions for muon, neutrinos and neutralinos
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| 238 | add EnergyFraction {12} {0.0 0.0}
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| 239 | add EnergyFraction {13} {0.0 0.0}
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| 240 | add EnergyFraction {14} {0.0 0.0}
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| 241 | add EnergyFraction {16} {0.0 0.0}
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| 242 | add EnergyFraction {1000022} {0.0 0.0}
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| 243 | add EnergyFraction {1000023} {0.0 0.0}
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| 244 | add EnergyFraction {1000025} {0.0 0.0}
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| 245 | add EnergyFraction {1000035} {0.0 0.0}
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| 246 | add EnergyFraction {1000045} {0.0 0.0}
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| 247 | # energy fractions for K0short and Lambda
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| 248 | add EnergyFraction {310} {0.3 0.7}
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| 249 | add EnergyFraction {3122} {0.3 0.7}
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| 250 |
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| 251 | # set ECalResolutionFormula {resolution formula as a function of eta and energy}
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[8839353] | 252 | set ECalResolutionFormula { (abs(eta) <= 3.0) * sqrt(energy^2*0.007^2 + energy*0.07^2 + 0.35^2) + \
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[d7d2da3] | 253 | (abs(eta) > 3.0 && abs(eta) <= 5.0) * sqrt(energy^2*0.107^2 + energy*2.08^2)}
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| 254 |
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| 255 | # set HCalResolutionFormula {resolution formula as a function of eta and energy}
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[a1ac20e] | 256 | set HCalResolutionFormula { (abs(eta) <= 3.0) * sqrt(energy^2*0.050^2 + energy*1.50^2) + \
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| 257 | (abs(eta) > 3.0 && abs(eta) <= 5.0) * sqrt(energy^2*0.130^2 + energy*2.70^2)}
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[d7d2da3] | 258 | }
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| 259 |
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| 260 | ####################
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| 261 | # Energy flow merger
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| 262 | ####################
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| 263 |
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| 264 | module Merger EFlowMerger {
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| 265 | # add InputArray InputArray
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| 266 | add InputArray Calorimeter/eflowTracks
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[27bf162] | 267 | add InputArray Calorimeter/eflowPhotons
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| 268 | add InputArray Calorimeter/eflowNeutralHadrons
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[d7d2da3] | 269 | set OutputArray eflow
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| 270 | }
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| 271 |
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| 272 |
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