- Timestamp:
- Aug 31, 2020, 12:22:36 PM (4 years ago)
- Branches:
- master
- Children:
- 4692fd9
- Parents:
- 1a8ef08 (diff), 4f52352 (diff)
Note: this is a merge changeset, the changes displayed below correspond to the merge itself.
Use the(diff)
links above to see all the changes relative to each parent. - Location:
- cards/ILCgen
- Files:
-
- 19 edited
Legend:
- Unmodified
- Added
- Removed
-
cards/ILCgen/ILCgen_BTagging_N.tcl
r1a8ef08 rfa7729a 104 104 source ILCgen/ILCgen_BTagging_50.tcl 105 105 } 106 -
cards/ILCgen/ILCgen_BeamCalEfficiency.tcl
r1a8ef08 rfa7729a 2 2 # Based on IDR Figure 8.8a and Moritz Hebermehl PhD Thesis Figure 4.10 3 3 # A.F.Zarnecki, June 2020 4 5 # set EfficiencyFormula {efficiency formula as a function of eta and pt}6 4 7 5 set EfficiencyFormula { -
cards/ILCgen/ILCgen_BeamCalF_Binning.tcl
r1a8ef08 rfa7729a 2 2 # corrected by A.F.Zarnecki 3 3 4 set pi [expr {acos(-1)} ]5 4 set pi [expr {acos(-1)} ] 5 6 6 # BeamCal eta range 4.0 - 5.8 -> 2.099-0.347 =1.752deg 7 7 # -
cards/ILCgen/ILCgen_BeamCalR_Binning.tcl
r1a8ef08 rfa7729a 2 2 # corrected by A.F.Zarnecki 3 3 4 set pi [expr {acos(-1)} ]5 4 set pi [expr {acos(-1)} ] 5 6 6 # BeamCal eta range 4.0 - 5.8 -> 2.099-0.347 =1.752deg 7 7 # -
cards/ILCgen/ILCgen_BeamCal_EnergyFractions.tcl
r1a8ef08 rfa7729a 1 1 #P.Sopicki 2 # default energy fractions {abs(PDG code)} {fraction of energy deposited in BeamCal}3 2 4 3 add EnergyFraction {0} {0.0} … … 20 19 add EnergyFraction {310} {0.3} 21 20 add EnergyFraction {3122} {0.3} 22 -
cards/ILCgen/ILCgen_BeamCal_Resolution.tcl
r1a8ef08 rfa7729a 1 1 # P.Sopicki, corrected by A.F.Zarnecki 2 2 # BeamCal resolution 3 4 # set ResolutionFormula {resolution formula as a function of eta and energy}5 3 6 4 set ResolutionFormula { … … 8 6 (abs(eta) > 4.8 && abs(eta) <= 5.8) * sqrt(energy^2*0.03^2 + energy*0.45^2) 9 7 } 10 -
cards/ILCgen/ILCgen_CTagging_N.tcl
r1a8ef08 rfa7729a 104 104 source ILCgen/ILCgen_CTagging_20.tcl 105 105 } 106 -
cards/ILCgen/ILCgen_ChrgHadMomentumSmearing.tcl
r1a8ef08 rfa7729a 6 6 7 7 set ResolutionFormula { 8 9 (abs(eta) <= 2.0) * 10 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 8 (abs(eta) <= 2.0) * 9 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 11 10 + (0.829675 -0.188197*abs(eta) + 0.106226 * eta*eta - 1.0) * log(pt) 12 11 + (0.0766417-0.00435667*abs(eta) + 0.00174804*eta*eta) * log(pt)*log(pt)) 13 14 + 15 16 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 17 exp( -4.54609 12 + 13 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 14 exp( -4.54609 18 15 + ( 0.87526 - 1.0) * log(pt) 19 16 + (-0.0800672 + 0.0891669 * abs(eta)) * log(pt)*log(pt)) 20 21 } 22 17 } -
cards/ILCgen/ILCgen_ChrgHadTrackingEff.tcl
r1a8ef08 rfa7729a 4 4 # A.F.Zarnecki, June 12, 2020 5 5 6 set EfficiencyFormula { (pt <= 0.1) * (0.00) + 7 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 8 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 9 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 10 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 11 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 15 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 19 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) } 6 set EfficiencyFormula { 7 (pt <= 0.1) * (0.00) + 8 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 9 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 10 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 11 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 15 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 19 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 20 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) 21 } -
cards/ILCgen/ILCgen_ECAL_EnergyFractions.tcl
r1a8ef08 rfa7729a 1 1 #P.Sopicki 2 # default energy fractions {abs(PDG code)} {fraction in ECAL or LumiCal} 2 3 3 add EnergyFraction {0} {0.0} 4 4 # energy fractions for e, gamma and pi0 -
cards/ILCgen/ILCgen_ECAL_Resolution.tcl
r1a8ef08 rfa7729a 2 2 # ECAL and LumiCal resolution: same formula used at the moment 3 3 # 4 # set ResolutionFormula {resolution formula as a function of eta and energy} 4 5 5 set ResolutionFormula { 6 6 (abs(eta) <= 3 ) * sqrt(energy^2*0.01^2 + energy*0.17^2)+ 7 7 (abs(eta) > 3 && abs(eta) <= 4 ) * sqrt(energy^2*0.01^2 + energy*0.17^2) 8 }8 } -
cards/ILCgen/ILCgen_ElectronEfficiency.tcl
r1a8ef08 rfa7729a 1 2 # set EfficiencyFormula {efficiency formula as a function of eta and pt}3 1 4 2 # efficiency formula for electrons (ECAL and LumiCal) -
cards/ILCgen/ILCgen_ElectronMomentumSmearing.tcl
r1a8ef08 rfa7729a 6 6 7 7 set ResolutionFormula { 8 9 (abs(eta) <= 2.0) * 10 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 8 (abs(eta) <= 2.0) * 9 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 11 10 + (0.829675 -0.188197*abs(eta) + 0.106226 * eta*eta - 1.0) * log(pt) 12 11 + (0.0766417-0.00435667*abs(eta) + 0.00174804*eta*eta) * log(pt)*log(pt)) 13 14 + 15 16 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 17 exp( -4.54609 12 + 13 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 14 exp( -4.54609 18 15 + ( 0.87526 - 1.0) * log(pt) 19 16 + (-0.0800672 + 0.0891669 * abs(eta)) * log(pt)*log(pt)) 20 21 } 22 17 } -
cards/ILCgen/ILCgen_ElectronTrackingEff.tcl
r1a8ef08 rfa7729a 4 4 # A.F.Zarnecki, June 12, 2020 5 5 6 set EfficiencyFormula { (pt <= 0.1) * (0.00) + 7 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 8 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 9 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 10 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 11 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 15 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 19 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) } 6 set EfficiencyFormula { 7 (pt <= 0.1) * (0.00) + 8 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 9 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 10 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 11 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 15 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 19 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 20 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) 21 } -
cards/ILCgen/ILCgen_HCAL_EnergyFractions.tcl
r1a8ef08 rfa7729a 1 1 #P.Sopicki 2 # default energy fractions {abs(PDG code)} {fraction in HCAL or LHCAL} 2 3 3 add EnergyFraction {0} {1.0} 4 4 # energy fractions for e, gamma and pi0 -
cards/ILCgen/ILCgen_HCAL_Resolution.tcl
r1a8ef08 rfa7729a 2 2 # HCAL and LHCAL resolution: same formula used at the moment 3 3 # 4 # set ResolutionFormula {resolution formula as a function of eta and energy} 4 5 5 set ResolutionFormula { 6 6 (abs(eta) <= 2.8 ) * sqrt(energy^2*0.017^2 + energy*0.45^2)+ 7 7 (abs(eta) > 2.8 && abs(eta)<=3.8 ) * sqrt(energy^2*0.017^2 + energy*0.45^2) 8 } 9 8 } -
cards/ILCgen/ILCgen_MuonMomentumSmearing.tcl
r1a8ef08 rfa7729a 6 6 7 7 set ResolutionFormula { 8 9 (abs(eta) <= 2.0) * 10 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 8 (abs(eta) <= 2.0) * 9 exp( -6.82012 - 0.284133*abs(eta) + 0.64585*eta*eta 11 10 + (0.829675 -0.188197*abs(eta) + 0.106226 * eta*eta - 1.0) * log(pt) 12 11 + (0.0766417-0.00435667*abs(eta) + 0.00174804*eta*eta) * log(pt)*log(pt)) 13 14 + 15 16 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 17 exp( -4.54609 12 + 13 (abs(eta) > 2.0 && abs(eta) <= 3.0) * 14 exp( -4.54609 18 15 + ( 0.87526 - 1.0) * log(pt) 19 16 + (-0.0800672 + 0.0891669 * abs(eta)) * log(pt)*log(pt)) 20 21 } 22 17 } -
cards/ILCgen/ILCgen_MuonTrackingEff.tcl
r1a8ef08 rfa7729a 4 4 # A.F.Zarnecki, June 12, 2020 5 5 6 set EfficiencyFormula { (pt <= 0.1) * (0.00) + 7 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 8 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 9 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 10 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 11 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 15 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 19 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) } 6 set EfficiencyFormula { 7 (pt <= 0.1) * (0.00) + 8 (abs(eta) <= 1.83) * (pt > 0.1 && pt <= 0.2) * (0.70) + 9 (abs(eta) <= 1.83) * (pt > 0.2 && pt <= 0.3) * (0.93) + 10 (abs(eta) <= 1.83) * (pt > 0.3 && pt <= 0.7) * (0.995) + 11 (abs(eta) <= 1.83) * (pt > 0.7) * (1.00) + 12 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.1 && pt <= 0.2) * (0.697) + 13 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.2 && pt <= 0.3) * (0.925) + 14 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.3 && pt <= 0.7) * (0.99) + 15 (abs(eta) > 1.83 && abs(eta) <= 2.65) * (pt > 0.7) * (0.995) + 16 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.1 && pt <= 0.2) * (0.665) + 17 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.2 && pt <= 0.3) * (0.884) + 18 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.3 && pt <= 0.7) * (0.945) + 19 (abs(eta) > 2.65 && abs(eta) <= 3.00) * (pt > 0.7) * (0.95) + 20 (abs(eta) > 3.00) * (pt > 0.1) * (0.00) 21 } -
cards/ILCgen/ILCgen_PhotonEfficiency.tcl
r1a8ef08 rfa7729a 1 2 # set EfficiencyFormula {efficiency formula as a function of eta and pt} 3 4 # efficiency formula for photons (ECAL + LumiCal) 1 # set EfficiencyFormula (efficiency formula as a function of eta and pt) 2 # efficiency formula for photons (ECAL + LumiCal) 5 3 6 4 set EfficiencyFormula {
Note:
See TracChangeset
for help on using the changeset viewer.