[2] | 1 | #Detector characteristics
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| 2 | MAX_TRACKER 2.5
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| 3 | MAX_CALO_CEN 3.0
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| 4 | MAX_CALO_FWD 5.0 // forward calorimeter pseudorapidity coverage
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| 5 | MAX_MU 2.4 // muon chambers pseudorapidity coverage
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[71] | 6 | MIN_CALO_VFWD 5.2 // very forward calorimeter (if any) like CASTOR
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[2] | 7 | MAX_CALO_VFWD 6.6
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| 8 | MIN_ZDC 8.3
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[71] | 9 | ZDC_S 140 // distance of the ZDC to the IP in meters
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| 10 | RP220_S 220 // distance of the RP to the IP in meters
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| 11 | RP220_X 0.002 // distance of the RP to the beam in meters
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| 12 | FP420_S 420 // distance of the RP to the IP in meters
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| 13 | FP420_X 0.004 // distance of the RP to the beam in meters
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[2] | 14 |
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[62] | 15 | #Magnetic Field
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| 16 | TRACKING_RADIUS 129 //radius of the BField coverage
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| 17 | TRACKING_LENGTH 300 //length of the BField coverage
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| 18 | BFIELD_X 0
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| 19 | BFIELD_Y 0
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| 20 | BFIELD_Z 3.8
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| 21 |
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| 22 |
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[2] | 23 | #energy resolution for electron/photon
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| 24 | # \sigma/E = C + N/E + S/\sqrt{E}
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| 25 | ELG_Scen 0.05 // S term for central ECAL
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| 26 | ELG_Ncen 0.25 // N term for central ECAL
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| 27 | ELG_Ccen 0.0055 // C term for central ECAL
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[71] | 28 | ELG_Cfwd 0.107 // S term for forward ECAL
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| 29 | ELG_Sfwd 2.084 // C term for forward ECAL
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[2] | 30 | ELG_Nfwd 0.0 // N term for central ECAL
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| 31 |
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| 32 | #energy resolution for hadrons in ecal/hcal/hf
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| 33 | # \sigma/E = C + N/E + S/\sqrt{E}
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[12] | 34 | HAD_Shcal 1.5 // S term for central HCAL // hadronic calorimeter
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[2] | 35 | HAD_Nhcal 0. // N term for central HCAL
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[12] | 36 | HAD_Chcal 0.05 // C term for central HCAL
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[2] | 37 | HAD_Shf 2.7 // S term for HF // forward calorimeter
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| 38 | HAD_Nhf 0. // N term for HF
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| 39 | HAD_Chf 0.13 // C term for HF
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| 40 |
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| 41 | # muon smearing
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| 42 | MU_SmearPt 0.01
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| 43 |
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[33] | 44 | #thresholds for reconstructed objects
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| 45 | ELEC_pt 10
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| 46 | MUON_pt 10
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| 47 | JET_pt 20
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| 48 | TAUJET_pt 10
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| 49 |
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[2] | 50 | #For Tau-jet definition
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| 51 | TAU_CONE_ENERGIE 0.15 // Delta R = radius of the cone
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| 52 | TAU_CONE_TRACKS 0.4 //Delta R
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| 53 | PT_TRACK_TAU 2.0 // GeV
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| 54 |
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| 55 | #Tracker acceptance
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[71] | 56 | PT_TRACKS_MIN 0.9 // minimal pt needed to reach the calorimeter in GeV
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[2] | 57 | TRACKING_EFF 100 // efficiency associated to the tracking
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| 58 |
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| 59 | #tagging definition
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| 60 | TAGGING_B 40
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| 61 | MISTAGGING_C 10
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| 62 | MISTAGGING_L 1
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| 63 |
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[72] | 64 | #Trigger flag
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| 65 | DOTRIGGER 1 //1 to run the trigger else 0
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| 66 |
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[2] | 67 | #DeltaR cone definition
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[71] | 68 | CONERADIUS 0.7
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| 69 | JETALGO 1 // 1 for Cone algorithm 2 for MidPoint algorithm 3 for SIScone algorithm 4 for kt algorithm
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[69] | 70 |
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[71] | 71 | #Calorimetric towers
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| 72 | NTOWERS 40
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| 73 | TOWER_ETA_EDGES 0. 0.087 0.174 0.261 0.348 0.435 0.522 0.609 0.696 0.783 0.870 0.957 1.044 1.131 1.218 1.305 1.392 1.479 1.566 1.653 1.740 1.830 1.930 2.043 2.172 2.322 2.500 2.650 2.868 2.950 3.125 3.300 3.475 3.650 3.825 4.000 4.175 4.350 4.525 4.700 5.000
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| 74 | # list of the edges of each tower in eta for eta>0 assuming a symmetric detector in eta<0
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| 75 | # the list starts with the lower edge of the most central tower
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| 76 | # the list ends with the higher edged of the most forward tower
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| 77 | # there should be NTOWER+1 values
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| 78 | TOWER_DPHI 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 20 20
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| 79 | # list of the tower size in phi (in degrees), assuming that all towers are similar in phi for a given eta value
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| 80 | # the list starts with the phi-size of the most central tower (eta=0)
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| 81 | # the list ends with the phi-size of the most forward tower
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| 82 | # there should be NTOWER values
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