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madgraph cards for lhe
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lheCards/README

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This directory contains samples for all the cards which are used by
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MadGraph/MadEvent during the various stages of code operation.
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Card: proc_card.dat
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Use : This is the process generation card which is used by
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MadGraph to generate the code corresponding the user
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request. It can be used by all user's levels.
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It now supports multi-processes to be requested at the same
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time. In this case the events produced are in the right relative
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ratio also for the different procs. Inclusive samples, like W+jets,
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are produced starting from this option.
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lheCards/grid_card.dat

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#*********************************************************************
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# MadGraph/MadEvent *
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# http://madgraph.hep.uiuc.edu *
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# *
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# grid_card.dat *
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# *
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# This file is used to set the parameters of the run. *
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# *
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# Some notation/conventions: *
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# *
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# Lines starting with a '# ' are info or comments *
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# *
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# mind the format: value = variable ! comment *
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#*********************************************************************
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#
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#*******************
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# Running parameters
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#*******************
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#
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#*********************************************************************
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# Tell if this is a grid run or not, false during warm-up on the *
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# cluster, automatically set to true after warm-up and the gridpack *
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# is ready. The user should not change this. *
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#*********************************************************************
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.false. = GridRun !True = Runs in the grid mode
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#*********************************************************************
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# Number of events and rnd seed *
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#*********************************************************************
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2500 = gevents ! Number of unweighted events requested
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1 = gseed ! rnd seed
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-1 = ngran ! Granularity (minimum # events per channel)
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#*********************************************************************

lheCards/grid_card_default.dat

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#*********************************************************************
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# MadGraph/MadEvent *
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# http://madgraph.hep.uiuc.edu *
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# *
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# grid_card.dat *
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# *
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# This file is used to set the parameters of the run. *
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# *
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# Some notation/conventions: *
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# *
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# Lines starting with a '# ' are info or comments *
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# *
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# mind the format: value = variable ! comment *
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#*********************************************************************
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#
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#*******************
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# Running parameters
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#*******************
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#
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#*********************************************************************
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# Tell if this is a grid run or not, false during warm-up on the *
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# cluster, automatically set to true after warm-up and the gridpack *
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# is ready. The user should not change this. *
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#*********************************************************************
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.false. = GridRun !True = Runs in the grid mode
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#*********************************************************************
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# Number of events and rnd seed *
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#*********************************************************************
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2500 = gevents ! Number of unweighted events requested
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1 = gseed ! rnd seed
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-1 = ngran ! Granularity (minimum # events per channel)
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#*********************************************************************

lheCards/param_card.dat

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#******************************************************************
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# MadGraph/MadEvent *
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#******************************************************************
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# Les Houches friendly file for the SM parameters of MadGraph *
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# Spectrum and decay widths produced by SMCalc *
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#******************************************************************
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#*Please note the following IMPORTANT issues: *
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# *
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#0. REFRAIN from editing this file by hand! Some of the parame- *
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# ters are not independent *
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# (such as G_Fermi, alpha_em, sin(theta_W),MZ,MW) and serious *
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# problems might be encountered (such as violation of unitarity *
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# or gauge invariance). Always use a calculator. *
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# *
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#1. alpha_S(MZ) has been used in the calculation of the parameters*
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# but, for consistency, it will be reset by madgraph to the *
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# value expected IF the pdfs for collisions with hadrons are *
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# used. This value is KEPT by madgraph when no pdf are used *
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# lpp(i)=0 . *
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# *
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#2. Values of the charm and bottom kinematic (pole) masses are *
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# those used in the matrix elements and phase space UNLESS they *
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# are set to ZERO from the start in the model (particles.dat) *
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# This happens, for example, when using 5-flavor QCD where *
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# charm and bottom are treated as partons in the initial state *
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# and a zero mass might be hardwired in the model definition. *
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# *
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#******************************************************************
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Block SMINPUTS # Standard Model inputs
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1 1.32506980E+02 # alpha_em(MZ)(-1) SM MSbar
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2 1.16639000E-05 # G_Fermi
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3 1.18000000E-01 # alpha_s(MZ) SM MSbar
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4 9.11880000E+01 # Z mass (as input parameter)
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Block MGYUKAWA # Yukawa masses m/v=y/sqrt(2)
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# PDG YMASS
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5 4.20000000E+00 # mbottom for the Yukawa y_b
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4 1.42000000E+00 # mcharm for the Yukawa y_c
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6 1.64500000E+02 # mtop for the Yukawa y_t
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15 1.77700000E+00 # mtau for the Yukawa y_ta
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Block MGCKM # CKM elements for MadGraph
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1 1 9.75000000E-01 # Vud for Cabibbo matrix
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Block MASS # Mass spectrum (kinematic masses)
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# PDG Mass
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5 4.70000000E+00 # bottom pole mass
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6 1.74300000E+02 # top pole mass
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15 1.77700000E+00 # tau mass
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23 9.11880000E+01 # Z mass
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24 8.04190000E+01 # W mass
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25 1.20000000E+02 # H mass
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# PDG Width
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DECAY 6 1.50833649E+00 # top width
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DECAY 23 2.44140351E+00 # Z width
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DECAY 24 2.04759951E+00 # W width
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DECAY 25 5.75308848E-03 # H width
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# BR NDA ID1 ID2
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8.27451012E-02 2 4 -4 # BR( H -> c cbar )
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7.17809696E-01 2 5 -5 # BR( H -> b bbar )
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0.00000000E+00 2 6 -6 # BR( H -> t tbar )
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4.31720144E-02 2 15 -15 # BR( H -> tau- tau+)
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6.90597075E-03 2 23 23 # BR( H -> Z Z^(*))
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7.45906395E-02 2 24 -24 # BR( H -> W W^(*))
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3.01765558E-02 2 21 21 # BR( H -> g g )
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1.42800773E-03 2 22 22 # BR( H -> A A )

lheCards/param_card_default.dat

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#******************************************************************
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# MadGraph/MadEvent *
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#******************************************************************
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# Les Houches friendly file for the SM parameters of MadGraph *
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# Spectrum and decay widths produced by SMCalc *
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#******************************************************************
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#*Please note the following IMPORTANT issues: *
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# *
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#0. REFRAIN from editing this file by hand! Some of the parame- *
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# ters are not independent *
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# (such as G_Fermi, alpha_em, sin(theta_W),MZ,MW) and serious *
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# problems might be encountered (such as violation of unitarity *
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# or gauge invariance). Always use a calculator. *
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# *
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#1. alpha_S(MZ) has been used in the calculation of the parameters*
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# but, for consistency, it will be reset by madgraph to the *
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# value expected IF the pdfs for collisions with hadrons are *
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# used. This value is KEPT by madgraph when no pdf are used *
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# lpp(i)=0 . *
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# *
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#2. Values of the charm and bottom kinematic (pole) masses are *
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# those used in the matrix elements and phase space UNLESS they *
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# are set to ZERO from the start in the model (particles.dat) *
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# This happens, for example, when using 5-flavor QCD where *
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# charm and bottom are treated as partons in the initial state *
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# and a zero mass might be hardwired in the model definition. *
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# *
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#******************************************************************
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Block SMINPUTS # Standard Model inputs
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1 1.32506980E+02 # alpha_em(MZ)(-1) SM MSbar
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2 1.16639000E-05 # G_Fermi
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3 1.18000000E-01 # alpha_s(MZ) SM MSbar
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4 9.11880000E+01 # Z mass (as input parameter)
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Block MGYUKAWA # Yukawa masses m/v=y/sqrt(2)
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# PDG YMASS
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5 4.20000000E+00 # mbottom for the Yukawa y_b
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4 1.42000000E+00 # mcharm for the Yukawa y_c
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6 1.64500000E+02 # mtop for the Yukawa y_t
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15 1.77700000E+00 # mtau for the Yukawa y_ta
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Block MGCKM # CKM elements for MadGraph
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1 1 9.75000000E-01 # Vud for Cabibbo matrix
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Block MASS # Mass spectrum (kinematic masses)
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# PDG Mass
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5 4.70000000E+00 # bottom pole mass
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6 1.74300000E+02 # top pole mass
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15 1.77700000E+00 # tau mass
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23 9.11880000E+01 # Z mass
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24 8.04190000E+01 # W mass
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25 1.20000000E+02 # H mass
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# PDG Width
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DECAY 6 1.50833649E+00 # top width
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DECAY 23 2.44140351E+00 # Z width
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DECAY 24 2.04759951E+00 # W width
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DECAY 25 5.75308848E-03 # H width
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# BR NDA ID1 ID2
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8.27451012E-02 2 4 -4 # BR( H -> c cbar )
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7.17809696E-01 2 5 -5 # BR( H -> b bbar )
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0.00000000E+00 2 6 -6 # BR( H -> t tbar )
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4.31720144E-02 2 15 -15 # BR( H -> tau- tau+)
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6.90597075E-03 2 23 23 # BR( H -> Z Z^(*))
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7.45906395E-02 2 24 -24 # BR( H -> W W^(*))
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3.01765558E-02 2 21 21 # BR( H -> g g )
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1.42800773E-03 2 22 22 # BR( H -> A A )

lheCards/pgs_card.dat

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LHC ! parameter set name
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320 ! eta cells in calorimeter
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200 ! phi cells in calorimeter
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0.0314159 ! eta width of calorimeter cells |eta| < 5
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0.0314159 ! phi width of calorimeter cells
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0.01 ! electromagnetic calorimeter resolution const
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0.2 ! electromagnetic calorimeter resolution * sqrt(E)
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0.8 ! hadronic calolrimeter resolution * sqrt(E)
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0.2 ! MET resolution
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0.01 ! calorimeter cell edge crack fraction
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cone ! jet finding algorithm (cone or ktjet)
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5.0 ! calorimeter trigger cluster finding seed threshold (GeV)
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1.0 ! calorimeter trigger cluster finding shoulder threshold (GeV)
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0.5 ! calorimeter kt cluster finder cone size (delta R)
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2.0 ! outer radius of tracker (m)
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4.0 ! magnetic field (T)
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0.000013 ! sagitta resolution (m)
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0.98 ! track finding efficiency
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1.00 ! minimum track pt (GeV/c)
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3.0 ! tracking eta coverage
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3.0 ! e/gamma eta coverage
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2.4 ! muon eta coverage
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2.0 ! tau eta coverage

lheCards/pgs_card_ATLAS.dat

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ATLAS ! parameter set name
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81 ! eta cells in calorimeter
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63 ! phi cells in calorimeter
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0.1 ! eta width of calorimeter cells |eta| < 5
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0.099733101 ! phi width of calorimeter cells
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0.01 ! electromagnetic calorimeter resolution const
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0.1 ! electromagnetic calorimeter resolution * sqrt(E)
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0.8 ! hadronic calolrimeter resolution * sqrt(E)
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0.2 ! MET resolution
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0.00 ! calorimeter cell edge crack fraction
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cone ! jet finding algorithm (cone or ktjet)
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3.0 ! calorimeter trigger cluster finding seed threshold (GeV)
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0.5 ! calorimeter trigger cluster finding shoulder threshold (GeV)
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0.70 ! calorimeter kt cluster finder cone size (delta R)
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1.0 ! outer radius of tracker (m)
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2.0 ! magnetic field (T)
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0.000005 ! sagitta resolution (m)
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0.98 ! track finding efficiency
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0.30 ! minimum track pt (GeV/c)
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2.5 ! tracking eta coverage
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3.0 ! e/gamma eta coverage
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2.4 ! muon eta coverage
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2.0 ! tau eta coverage

lheCards/pgs_card_CMS.dat

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CMS ! parameter set name
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70 ! eta cells in calorimeter
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70 ! phi cells in calorimeter
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0.087 ! eta width of calorimeter cells |eta| < 5
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0.087 ! phi width of calorimeter cells
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0.01 ! electromagnetic calorimeter resolution const
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0.03 ! electromagnetic calorimeter resolution * sqrt(E)
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1.25 ! hadronic calolrimeter resolution * sqrt(E)
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0.2 ! MET resolution
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0.00 ! calorimeter cell edge crack fraction
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cone ! jet finding algorithm (cone or ktjet)
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0.5 ! calorimeter trigger cluster finding seed threshold (GeV)
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0.5 ! calorimeter trigger cluster finding shoulder threshold (GeV)
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0.5 ! calorimeter kt cluster finder cone size (delta R)
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1.1 ! outer radius of tracker (m)
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4.0 ! magnetic field (T)
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0.000020 ! sagitta resolution (m)
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0.98 ! track finding efficiency
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0.90 ! minimum track pt (GeV/c)
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2.4 ! tracking eta coverage
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3.0 ! e/gamma eta coverage
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2.4 ! muon eta coverage
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2.0 ! tau eta coverage

lheCards/pgs_card_LHC.dat

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LHC ! parameter set name
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320 ! eta cells in calorimeter
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200 ! phi cells in calorimeter
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0.0314159 ! eta width of calorimeter cells |eta| < 5
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0.0314159 ! phi width of calorimeter cells
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0.01 ! electromagnetic calorimeter resolution const
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0.2 ! electromagnetic calorimeter resolution * sqrt(E)
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0.8 ! hadronic calolrimeter resolution * sqrt(E)
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0.2 ! MET resolution
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0.01 ! calorimeter cell edge crack fraction
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cone ! jet finding algorithm (cone or ktjet)
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5.0 ! calorimeter trigger cluster finding seed threshold (GeV)
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1.0 ! calorimeter trigger cluster finding shoulder threshold (GeV)
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0.5 ! calorimeter kt cluster finder cone size (delta R)
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2.0 ! outer radius of tracker (m)
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4.0 ! magnetic field (T)
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0.000013 ! sagitta resolution (m)
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0.98 ! track finding efficiency
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1.00 ! minimum track pt (GeV/c)
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3.0 ! tracking eta coverage
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3.0 ! e/gamma eta coverage
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2.4 ! muon eta coverage
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2.0 ! tau eta coverage

lheCards/pgs_card_TEV.dat

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CDF ! parameter set name
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80 ! eta cells in calorimeter
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24 ! phi cells in calorimeter
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0.1 ! eta width of calorimeter cells
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0.261799388 ! phi width of calorimeter cells
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0.01 ! electromagnetic calorimeter resolution const
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0.2 ! electromagnetic calorimeter resolution * sqrt(E)
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0.8 ! hadronic calolrimeter resolution * sqrt(E)
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0.2 ! MET resolution
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0.05 ! calorimeter cell edge crack fraction
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cone ! jet finding algorithm (cone or ktjet)
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3.0 ! calorimeter cluster finding seed threshold (GeV)
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0.5 ! calorimeter cluster finding shoulder threshold (GeV)
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0.4 ! calorimeter cluster finder cone size (delta R)
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1.0 ! outer radius of tracker (m)
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1.4 ! magnetic field (T)
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0.000040 ! sagitta resolution (m)
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0.98 ! track finding efficiency
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0.30 ! minimum track pt (GeV/c)
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2.0 ! tracking eta coverage
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2.0 ! e/gamma eta coverage
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2.0 ! muon eta coverage
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2.0 ! tau eta coverage

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