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 | PhotonEfficiency
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21 | PhotonIsolation
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22 |
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23 | ElectronEfficiency
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24 | ElectronIsolation
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25 |
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26 | MuonEfficiency
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27 | MuonIsolation
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28 |
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29 | MissingET
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30 |
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31 | GenJetFinder
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32 | FastJetFinder
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33 |
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34 | JetEnergyScale
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35 |
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36 | BTagging
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37 | TauTagging
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38 |
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39 | UniqueObjectFinder
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40 |
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41 | ScalarHT
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42 |
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43 | TreeWriter
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44 | }
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45 |
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46 | #################################
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47 | # Propagate particles in cylinder
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48 | #################################
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49 |
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50 | module ParticlePropagator ParticlePropagator {
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51 | set InputArray Delphes/stableParticles
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52 |
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53 | set OutputArray stableParticles
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54 | set ChargedHadronOutputArray chargedHadrons
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55 | set ElectronOutputArray electrons
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56 | set MuonOutputArray muons
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57 |
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58 | # radius of the magnetic field coverage, in m
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59 | set Radius 1.15
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60 | # half-length of the magnetic field coverage, in m
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61 | set HalfLength 3.51
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62 |
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63 | # magnetic field
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64 | set Bz 2.0
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65 | }
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66 |
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67 | ####################################
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68 | # Charged hadron tracking efficiency
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69 | ####################################
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70 |
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71 | module Efficiency ChargedHadronTrackingEfficiency {
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72 | set InputArray ParticlePropagator/chargedHadrons
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73 | set OutputArray chargedHadrons
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74 |
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75 | # add EfficiencyFormula {efficiency formula as a function of eta and pt}
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76 |
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77 | # tracking efficiency formula for charged hadrons
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78 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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79 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.70) + \
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80 | (abs(eta) <= 1.5) * (pt > 1.0) * (0.95) + \
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81 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.60) + \
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82 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0) * (0.85) + \
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83 | (abs(eta) > 2.5) * (0.00)}
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84 | }
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85 |
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86 | ##############################
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87 | # Electron tracking efficiency
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88 | ##############################
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89 |
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90 | module Efficiency ElectronTrackingEfficiency {
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91 | set InputArray ParticlePropagator/electrons
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92 | set OutputArray electrons
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93 |
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94 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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95 |
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96 | # tracking efficiency formula for electrons
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97 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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98 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.73) + \
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99 | (abs(eta) <= 1.5) * (pt > 1.0 && pt <= 1.0e2) * (0.95) + \
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100 | (abs(eta) <= 1.5) * (pt > 1.0e2) * (0.99) + \
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101 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.50) + \
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102 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0 && pt <= 1.0e2) * (0.83) + \
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103 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e2) * (0.90) + \
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104 | (abs(eta) > 2.5) * (0.00)}
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105 | }
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106 |
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107 | ##########################
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108 | # Muon tracking efficiency
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109 | ##########################
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110 |
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111 | module Efficiency MuonTrackingEfficiency {
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112 | set InputArray ParticlePropagator/muons
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113 | set OutputArray muons
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114 |
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115 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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116 |
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117 | # tracking efficiency formula for muons
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118 | set EfficiencyFormula { (pt <= 0.1) * (0.00) + \
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119 | (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.75) + \
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120 | (abs(eta) <= 1.5) * (pt > 1.0) * (0.99) + \
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121 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.70) + \
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122 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0) * (0.98) + \
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123 | (abs(eta) > 2.5) * (0.00)}
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124 | }
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125 |
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126 | ########################################
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127 | # Momentum resolution for charged tracks
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128 | ########################################
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129 |
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130 | module MomentumSmearing ChargedHadronMomentumSmearing {
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131 | set InputArray ChargedHadronTrackingEfficiency/chargedHadrons
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132 | set OutputArray chargedHadrons
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133 |
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134 | # set ResolutionFormula {resolution formula as a function of eta and pt}
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135 |
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136 | # resolution formula for charged hadrons
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137 | set ResolutionFormula { (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.02) + \
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138 | (abs(eta) <= 1.5) * (pt > 1.0 && pt <= 1.0e1) * (0.01) + \
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139 | (abs(eta) <= 1.5) * (pt > 1.0e1 && pt <= 2.0e2) * (0.03) + \
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140 | (abs(eta) <= 1.5) * (pt > 2.0e2) * (0.05) + \
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141 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.03) + \
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142 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0 && pt <= 1.0e1) * (0.02) + \
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143 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e1 && pt <= 2.0e2) * (0.04) + \
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144 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 2.0e2) * (0.05)}
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145 | }
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146 |
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147 | #################################
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148 | # Energy resolution for electrons
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149 | #################################
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150 |
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151 | module EnergySmearing ElectronEnergySmearing {
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152 | set InputArray ElectronTrackingEfficiency/electrons
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153 | set OutputArray electrons
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154 |
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155 | # set ResolutionFormula {resolution formula as a function of eta and energy}
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156 |
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157 | set ResolutionFormula { (abs(eta) <= 2.5) * (energy > 0.1 && energy <= 2.5e1) * (energy*0.015) + \
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158 | (abs(eta) <= 2.5) * (energy > 2.5e1) * sqrt(energy^2*0.005^2 + energy*0.05^2 + 0.25^2) + \
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159 | (abs(eta) > 2.5 && abs(eta) <= 3.0) * sqrt(energy^2*0.005^2 + energy*0.05^2 + 0.25^2) + \
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160 | (abs(eta) > 3.0 && abs(eta) <= 5.0) * sqrt(energy^2*0.107^2 + energy*2.08^2)}
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161 |
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162 | }
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163 |
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164 | ###############################
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165 | # Momentum resolution for muons
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166 | ###############################
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167 |
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168 | module MomentumSmearing MuonMomentumSmearing {
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169 | set InputArray MuonTrackingEfficiency/muons
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170 | set OutputArray muons
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171 |
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172 | # set ResolutionFormula {resolution formula as a function of eta and pt}
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173 |
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174 | # resolution formula for muons
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175 | set ResolutionFormula { (abs(eta) <= 1.5) * (pt > 0.1 && pt <= 1.0) * (0.03) + \
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176 | (abs(eta) <= 1.5) * (pt > 1.0 && pt <= 5.0e1) * (0.03) + \
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177 | (abs(eta) <= 1.5) * (pt > 5.0e1 && pt <= 1.0e2) * (0.04) + \
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178 | (abs(eta) <= 1.5) * (pt > 1.0e2) * (0.07) + \
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179 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 0.1 && pt <= 1.0) * (0.04) + \
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180 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0 && pt <= 5.0e1) * (0.04) + \
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181 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 5.0e1 && pt <= 1.0e2) * (0.05) + \
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182 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 1.0e2) * (0.10)}
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183 | }
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184 |
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185 | ##############
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186 | # Track merger
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187 | ##############
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188 |
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189 | module Merger TrackMerger {
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190 | # add InputArray InputArray
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191 | add InputArray ChargedHadronMomentumSmearing/chargedHadrons
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192 | add InputArray ElectronEnergySmearing/electrons
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193 | set OutputArray tracks
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194 | }
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195 |
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196 | #############
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197 | # Calorimeter
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198 | #############
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199 |
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200 | module Calorimeter Calorimeter {
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201 | set ParticleInputArray ParticlePropagator/stableParticles
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202 | set TrackInputArray TrackMerger/tracks
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203 |
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204 | set TowerOutputArray towers
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205 | set PhotonOutputArray photons
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206 |
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207 | set EFlowTrackOutputArray eflowTracks
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208 | set EFlowTowerOutputArray eflowTowers
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209 |
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210 | set pi [expr {acos(-1)}]
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211 |
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212 | # lists of the edges of each tower in eta and phi
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213 | # each list starts with the lower edge of the first tower
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214 | # the list ends with the higher edged of the last tower
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215 |
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216 | # 10 degrees towers
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217 | set PhiBins {}
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218 | for {set i -18} {$i <= 18} {incr i} {
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219 | add PhiBins [expr {$i * $pi/18.0}]
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220 | }
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221 | foreach eta {-3.2 -2.5 -2.4 -2.3 -2.2 -2.1 -2 -1.9 -1.8 -1.7 -1.6 -1.5 -1.4 -1.3 -1.2 -1.1 -1 -0.9 -0.8 -0.7 -0.6 -0.5 -0.4 -0.3 -0.2 -0.1 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 1.5 1.6 1.7 1.8 1.9 2 2.1 2.2 2.3 2.4 2.5 2.6 3.3} {
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222 | add EtaPhiBins $eta $PhiBins
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223 | }
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224 |
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225 | # 20 degrees towers
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226 | set PhiBins {}
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227 | for {set i -9} {$i <= 9} {incr i} {
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228 | add PhiBins [expr {$i * $pi/9.0}]
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229 | }
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230 | foreach eta {-4.9 -4.7 -4.5 -4.3 -4.1 -3.9 -3.7 -3.5 -3.3 -3 -2.8 -2.6 2.8 3 3.2 3.5 3.7 3.9 4.1 4.3 4.5 4.7 4.9} {
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231 | add EtaPhiBins $eta $PhiBins
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232 | }
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233 |
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234 | # default energy fractions {abs(PDG code)} {Fecal Fhcal}
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235 | add EnergyFraction {0} {0.0 1.0}
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236 | # energy fractions for e, gamma and pi0
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237 | add EnergyFraction {11} {1.0 0.0}
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238 | add EnergyFraction {22} {1.0 0.0}
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239 | add EnergyFraction {111} {1.0 0.0}
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240 | # energy fractions for muon, neutrinos and neutralinos
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241 | add EnergyFraction {12} {0.0 0.0}
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242 | add EnergyFraction {13} {0.0 0.0}
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243 | add EnergyFraction {14} {0.0 0.0}
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244 | add EnergyFraction {16} {0.0 0.0}
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245 | add EnergyFraction {1000022} {0.0 0.0}
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246 | add EnergyFraction {1000023} {0.0 0.0}
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247 | add EnergyFraction {1000025} {0.0 0.0}
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248 | add EnergyFraction {1000035} {0.0 0.0}
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249 | add EnergyFraction {1000045} {0.0 0.0}
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250 | # energy fractions for K0short and Lambda
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251 | add EnergyFraction {310} {0.3 0.7}
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252 | add EnergyFraction {3122} {0.3 0.7}
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253 |
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254 | # set ECalResolutionFormula {resolution formula as a function of eta and energy}
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255 | # http://arxiv.org/pdf/physics/0608012v1 jinst8_08_s08003
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256 | # http://villaolmo.mib.infn.it/ICATPP9th_2005/Calorimetry/Schram.p.pdf
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257 | # http://www.physics.utoronto.ca/~krieger/procs/ComoProceedings.pdf
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258 | set ECalResolutionFormula { (abs(eta) <= 3.2) * sqrt(energy^2*0.0017^2 + energy*0.101^2) + \
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259 | (abs(eta) > 3.2 && abs(eta) <= 4.9) * sqrt(energy^2*0.0350^2 + energy*0.285^2)}
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260 |
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261 | # set HCalResolutionFormula {resolution formula as a function of eta and energy}
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262 | # http://arxiv.org/pdf/hep-ex/0004009v1
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263 | # http://villaolmo.mib.infn.it/ICATPP9th_2005/Calorimetry/Schram.p.pdf
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264 | set HCalResolutionFormula { (abs(eta) <= 1.7) * sqrt(energy^2*0.0302^2 + energy*0.5205^2 + 1.59^2) + \
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265 | (abs(eta) > 1.7 && abs(eta) <= 3.2) * sqrt(energy^2*0.0500^2 + energy*0.706^2) + \
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266 | (abs(eta) > 3.2 && abs(eta) <= 4.9) * sqrt(energy^2*0.9420^2 + energy*0.075^2)}
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267 | }
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268 |
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269 | ####################
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270 | # Energy flow merger
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271 | ####################
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272 |
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273 | module Merger EFlowMerger {
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274 | # add InputArray InputArray
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275 | add InputArray Calorimeter/eflowTracks
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276 | add InputArray Calorimeter/eflowTowers
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277 | add InputArray MuonMomentumSmearing/muons
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278 | set OutputArray eflow
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279 | }
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280 |
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281 | ###################
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282 | # Photon efficiency
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283 | ###################
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284 |
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285 | module Efficiency PhotonEfficiency {
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286 | set InputArray Calorimeter/photons
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287 | set OutputArray photons
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288 |
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289 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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290 |
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291 | # efficiency formula for photons
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292 | set EfficiencyFormula { (pt <= 10.0) * (0.00) + \
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293 | (abs(eta) <= 1.5) * (pt > 10.0) * (0.95) + \
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294 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 10.0) * (0.85) + \
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295 | (abs(eta) > 2.5) * (0.00)}
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296 | }
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297 |
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298 | ##################
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299 | # Photon isolation
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300 | ##################
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301 |
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302 | module Isolation PhotonIsolation {
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303 | set CandidateInputArray PhotonEfficiency/photons
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304 | set IsolationInputArray EFlowMerger/eflow
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305 |
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306 | set OutputArray photons
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307 |
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308 | set DeltaRMax 0.5
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309 |
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310 | set PTMin 0.5
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311 |
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312 | set PTRatioMax 0.1
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313 | }
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314 |
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315 | #####################
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316 | # Electron efficiency
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317 | #####################
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318 |
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319 | module Efficiency ElectronEfficiency {
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320 | set InputArray ElectronEnergySmearing/electrons
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321 | set OutputArray electrons
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322 |
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323 | # set EfficiencyFormula {efficiency formula as a function of eta and pt}
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324 |
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325 | # efficiency formula for electrons
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326 | set EfficiencyFormula { (pt <= 10.0) * (0.00) + \
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327 | (abs(eta) <= 1.5) * (pt > 10.0) * (0.95) + \
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328 | (abs(eta) > 1.5 && abs(eta) <= 2.5) * (pt > 10.0) * (0.85) + \
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329 | (abs(eta) > 2.5) * (0.00)}
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330 | }
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331 |
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332 | ####################
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333 | # Electron isolation
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334 | ####################
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335 |
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336 | module Isolation ElectronIsolation {
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337 | set CandidateInputArray ElectronEfficiency/electrons
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338 | set IsolationInputArray EFlowMerger/eflow
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339 |
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340 | set OutputArray electrons
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341 |
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342 | set DeltaRMax 0.5
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343 |
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344 | set PTMin 0.5
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345 |
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346 | set PTRatioMax 0.1
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347 | }
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348 |
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349 | #################
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350 | # Muon efficiency
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351 | #################
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352 |
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353 | module Efficiency MuonEfficiency {
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354 | set InputArray MuonMomentumSmearing/muons
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355 | set OutputArray muons
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356 |
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357 | # set EfficiencyFormula {efficiency as a function of eta and pt}
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358 |
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359 | # efficiency formula for muons
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360 | set EfficiencyFormula { (pt <= 10.0) * (0.00) + \
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361 | (abs(eta) <= 1.5) * (pt > 10.0) * (0.95) + \
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362 | (abs(eta) > 1.5 && abs(eta) <= 2.7) * (pt > 10.0) * (0.85) + \
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363 | (abs(eta) > 2.7) * (0.00)}
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364 | }
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365 |
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366 | ################
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367 | # Muon isolation
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368 | ################
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369 |
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370 | module Isolation MuonIsolation {
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371 | set CandidateInputArray MuonEfficiency/muons
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372 | set IsolationInputArray EFlowMerger/eflow
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373 |
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374 | set OutputArray muons
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375 |
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376 | set DeltaRMax 0.5
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377 |
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378 | set PTMin 0.5
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379 |
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380 | set PTRatioMax 0.1
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381 | }
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382 |
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383 | ###################
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384 | # Missing ET merger
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385 | ###################
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386 |
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387 | module Merger MissingET {
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388 | # add InputArray InputArray
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389 | add InputArray EFlowMerger/eflow
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390 | set MomentumOutputArray momentum
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391 | }
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392 |
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393 | ##################
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394 | # Scalar HT merger
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395 | ##################
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396 |
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397 | module Merger ScalarHT {
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398 | # add InputArray InputArray
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399 | add InputArray UniqueObjectFinder/jets
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400 | add InputArray UniqueObjectFinder/electrons
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401 | add InputArray UniqueObjectFinder/photons
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402 | add InputArray UniqueObjectFinder/muons
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403 | set EnergyOutputArray energy
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404 | }
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405 |
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406 | #####################
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407 | # MC truth jet finder
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408 | #####################
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409 |
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410 | module FastJetFinder GenJetFinder {
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411 | set InputArray Delphes/stableParticles
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412 |
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413 | set OutputArray jets
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414 |
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415 | # algorithm: 1 CDFJetClu, 2 MidPoint, 3 SIScone, 4 kt, 5 Cambridge/Aachen, 6 antikt
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416 | set JetAlgorithm 6
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417 | set ParameterR 0.6
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418 |
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419 | set JetPTMin 20.0
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420 | }
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421 |
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422 | ############
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423 | # Jet finder
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424 | ############
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425 |
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426 | module FastJetFinder FastJetFinder {
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427 | set InputArray Calorimeter/towers
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428 |
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429 | set OutputArray jets
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430 |
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431 | # algorithm: 1 CDFJetClu, 2 MidPoint, 3 SIScone, 4 kt, 5 Cambridge/Aachen, 6 antikt
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432 | set JetAlgorithm 6
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433 | set ParameterR 0.6
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434 |
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435 | set JetPTMin 20.0
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436 | }
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437 |
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438 | ##################
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439 | # Jet Energy Scale
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440 | ##################
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441 |
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442 | module EnergyScale JetEnergyScale {
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443 | set InputArray FastJetFinder/jets
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444 | set OutputArray jets
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445 |
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446 | # scale formula for jets
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447 | set ScaleFormula {1.08}
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448 | }
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449 |
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450 | ###########
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451 | # b-tagging
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452 | ###########
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453 |
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454 | module BTagging BTagging {
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455 | set PartonInputArray Delphes/partons
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456 | set JetInputArray JetEnergyScale/jets
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457 |
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458 | set BitNumber 0
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459 |
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460 | set DeltaR 0.5
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461 |
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462 | set PartonPTMin 1.0
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463 |
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464 | set PartonEtaMax 2.5
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465 |
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466 | # add EfficiencyFormula {abs(PDG code)} {efficiency formula as a function of eta and pt}
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467 | # PDG code = the highest PDG code of a quark or gluon inside DeltaR cone around jet axis
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468 | # gluon's PDG code has the lowest priority
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469 |
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470 | # default efficiency formula (misidentification rate)
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471 | add EfficiencyFormula {0} {0.001}
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472 |
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473 | # efficiency formula for c-jets (misidentification rate)
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474 | add EfficiencyFormula {4} { (pt <= 15.0) * (0.000) + \
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475 | (abs(eta) <= 1.2) * (pt > 15.0) * (0.2*tanh(pt*0.03 - 0.4)) + \
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476 | (abs(eta) > 1.2 && abs(eta) <= 2.5) * (pt > 15.0) * (0.1*tanh(pt*0.03 - 0.4)) + \
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477 | (abs(eta) > 2.5) * (0.000)}
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478 |
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479 | # efficiency formula for b-jets
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480 | add EfficiencyFormula {5} { (pt <= 15.0) * (0.000) + \
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481 | (abs(eta) <= 1.2) * (pt > 15.0) * (0.5*tanh(pt*0.03 - 0.4)) + \
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482 | (abs(eta) > 1.2 && abs(eta) <= 2.5) * (pt > 15.0) * (0.4*tanh(pt*0.03 - 0.4)) + \
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483 | (abs(eta) > 2.5) * (0.000)}
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484 | }
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485 |
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486 | module TauTagging TauTagging {
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487 | set ParticleInputArray Delphes/allParticles
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488 | set PartonInputArray Delphes/partons
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489 | set JetInputArray JetEnergyScale/jets
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490 |
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491 | set DeltaR 0.5
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492 |
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493 | set TauPTMin 1.0
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494 |
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495 | set TauEtaMax 2.5
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496 |
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497 | # add EfficiencyFormula {abs(PDG code)} {efficiency formula as a function of eta and pt}
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498 |
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499 | # default efficiency formula (misidentification rate)
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500 | add EfficiencyFormula {0} {0.001}
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501 | # efficiency formula for tau-jets
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502 | add EfficiencyFormula {15} {0.4}
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503 | }
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504 |
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505 | #####################################################
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506 | # Find uniquely identified photons/electrons/tau/jets
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507 | #####################################################
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508 |
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509 | module UniqueObjectFinder UniqueObjectFinder {
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510 | # earlier arrays take precedence over later ones
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511 | # add InputArray InputArray OutputArray
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512 | add InputArray PhotonIsolation/photons photons
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513 | add InputArray ElectronIsolation/electrons electrons
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514 | add InputArray MuonIsolation/muons muons
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515 | add InputArray JetEnergyScale/jets jets
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516 | }
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517 |
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518 | ##################
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519 | # ROOT tree writer
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520 | ##################
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521 |
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522 | module TreeWriter TreeWriter {
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523 | # add Branch InputArray BranchName BranchClass
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524 | add Branch Delphes/allParticles Particle GenParticle
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525 | add Branch TrackMerger/tracks Track Track
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526 | add Branch Calorimeter/towers Tower Tower
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527 | # add Branch Calorimeter/eflowTracks EFlowTrack Track
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528 | # add Branch Calorimeter/eflowTowers EFlowTower Tower
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529 | # add Branch MuonMomentumSmearing/muons EFlowMuon Muon
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530 | add Branch GenJetFinder/jets GenJet Jet
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531 | add Branch UniqueObjectFinder/jets Jet Jet
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532 | add Branch UniqueObjectFinder/electrons Electron Electron
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533 | add Branch UniqueObjectFinder/photons Photon Photon
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534 | add Branch UniqueObjectFinder/muons Muon Muon
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535 | add Branch MissingET/momentum MissingET MissingET
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536 | add Branch ScalarHT/energy ScalarHT ScalarHT
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537 | }
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538 |
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