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266 lines
7.1 KiB
266 lines
7.1 KiB
mcfm_version = 10.3
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[extra]
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nohistograms = F
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verbose = .true.
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[general]
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# process number
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nproc = 1
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# part: lo, nlo, nnlo, nlocoeff, nnlocoeff
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part = nlo
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# string to identify run
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runstring = test1
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sqrts = 13000
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# ih1, ih2: +1 for proton, -1 for antiproton
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ih1 = +1
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ih2 = +1
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zerowidth = .true.
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removebr = .false.
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# electroweak corrections: none, sudakov or exact
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ewcorr = none
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[nnlo]
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# optional: tau cutoff for NNLO processes, otherwise default value is chosen
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# for less than 1% cutoff effects in the total cross section.
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# taucut = 0.001
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# optional array of numerical taucut values that should be sampled on the fly in addition.
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# these values can be smaller or larger than the nominal taucut value
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# tcutarray = 0.001 0.002 0.003 0.004 0.005 0.01 0.02 0.03 0.05 0.1 0.2 0.4 0.8 1.0
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[resummation]
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usegrid = .true.
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makegrid = .false.
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# path to write grid files with trailing slash
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gridoutpath = PDFs/
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# path to read grid files with trailing slash
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gridinpath = PDFs/
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# integration range of purely resummed part
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res_range = 0.0 80.0
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# integration part of fixed-order expansion of resummed part
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resexp_range = 1.0 80.0
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# lower qT cutoff for fixed-order result
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# typically this should agree with the lower resexp_range value
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fo_cutoff = 1.0
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# parameter to be used in plotting routines for transition function
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transitionswitch = 0.4
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[pdf]
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# PDF label for internal routines
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pdlabel = 'CT14.NN'
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[lhapdf]
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# LHAPDF PDF label, multiple sets separated by spaces possible
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lhapdfset = LUXqed17_plus_PDF4LHC15_nnlo_30
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# LHAPDF PDF member number, specify for each set, separated by spaces
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lhapdfmember = 0
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# calculate PDF uncertainties.
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# note: can only do PDF uncertainties or scale variation at the same time.
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dopdferrors = .false.
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[scales]
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# Renormalization scale
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renscale = 100
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# Factorization scale
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facscale = 100
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# Controls use of dynamical scale
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# when different from 'none', set renscale and facscale to 1
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dynamicscale = none
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# perform scale variation
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doscalevar = .false.
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# can be 2 or 6 for 2-point or 6-point scale-variation
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maxscalevar = 6
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[masses]
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# Higgs mass
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hmass = 125
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# Top-quark mass
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mt = 173.3
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# Bottom-quark mass
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mb = 4.66
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# Charm-quark mass
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mc = 1.275
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[basicjets]
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# Jet-inclusive cross section
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inclusive = .true.
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# Jet-clustering algorithm: ankt, ktal, cone, hqrk, none
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algorithm = ankt
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# minimum jet pT; can also have ptjetmax
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ptjetmin = 30
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# maximum jet rapidity; can also have etajetmin
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etajetmax = 2.4
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Rcutjet = 0.5
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[masscuts]
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# minimum mass of 3-4 system
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m34min = 0
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# optional, maximum mass of 3-4 system, otherwise sqrts
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# m34max = 14000
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# minimum mass of 5-6 system
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m56min = 0
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# optional, maximum mass of 5-6 system, otherwise sqrts
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# m56max = 14000
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# minimum mass of 3-4-5-6 system
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m3456min = 0
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# optional, maximum mass of 3-4-5-6 system, otherwise sqrts
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# m3456max = 14000
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[cuts]
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# make additional cuts in this section
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makecuts = .false.
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# minimum lepton pT; can also have ptleptmax
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ptleptmin = 20
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# maximum lepton rapidity, absolute value; can also have etaleptmin
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etaleptmax = 2.4
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# rapidity veto on leptons
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etaleptveto = 0.0 0.0
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# minimum missing pT
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ptminmiss = 30.0
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# minimum pT for additional leptons; can also have ptlept2max
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ptlept2min = 20.0
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# maximum rapidity for additional leptons, absolute value; can also have etalept2min
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etalept2max = 2.4
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# rapidity veto on additional leptons
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etalept2veto = 0.0 0.0
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# minimum (3,4) transverse mass
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m34transmin = 0.0
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# minimum R(jet,lept)
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Rjlmin = 0.0
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# minimum R(lept,lept)
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Rllmin = 0.0
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# minimum rapidity separation between jets
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delyjjmin = 0.0
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# enforce jets to be in opposite hemispheres
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jetsopphem = .false.
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lbjscheme = 0
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# b-jet minimum pT; can also have ptbjetmax
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ptbjetmin = 0.0
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# b-jet maximum rapidity; can also have etabjetmin
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etabjetmax = 99.0
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[photon]
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# include fragmentation
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fragmentation = .false.
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# fragmentation set
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fragmentation_set = GdRG__LO
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# fragmentation scale
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fragmentation_scale = 1.0
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# minimum photon pT; can also have gammptmax
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gammptmin = 40
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# maximum photon rapidity; can also have gammrapmin
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gammrapmax = 2.5
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# second photon minimum pT
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gammpt2 = 25
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# third photon minimum pT
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gammpt3 = 25
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# minimum R(photon,lepton)
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Rgalmin = 0.4
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# minimum R(photon,photon)
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Rgagamin = 0.4
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# minimum R(photon,jet)
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Rgajetmin = 0
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# cone size for isolation
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cone_ang = 0.4
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# energy fraction for isolation
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epsilon_h = 0.5
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# exponent for smooth-cone isolation
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n_pow = 1
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[histogram]
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# write top-drawer histograms
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writetop = .false.
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# write raw table file for each histogram
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writetxt = .true.
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[integration]
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# use sobol low discrepancy sequence
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# usesobol = .true.
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# random number seed, when not using sobol, 0 means random
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seed = 1045
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# relative precision goal
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precisiongoal = 0.05
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# resume from previous integration snapshot
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readin = .false.
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# write histograms and results after each vegas iteration
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writeintermediate = .true.
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# warmup precision goal in percent (default: 25%)
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# unless this precision is reached, the number of calls will be
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# increased and the warmup runs again
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warmupprecisiongoal = 0.25
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# warmup chisq goal (default: 2.5)
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# unless this value of chisq/it is reached, the number of calls will be
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# increased and the warmup runs again
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warmupchisqgoal = 2.5
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# process specific initializations
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# Single top SMEFT, nproc=164, 169
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[singletop]
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# C_phiq (O1), real-valued
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c_phiq = 0
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# C_phiphi (O2), real and imaginary part
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c_phiphi = 0.0 0.0
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# C_tW (O3), real and imaginary part
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c_tw = 0.0 0.0
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# C_bW (O4), real and imaginary part
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c_bw = 0.0 0.0
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# C_tG (O6), real and imaginary part
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c_tg = 0.0 0.0
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# C_bG (O7), real and imaginary part
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c_bg = 0.0 0.0
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# Lambda, scale of EFT breakdown in GeV
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lambda = 1000
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# enable 1/Lambda^4 contributions
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enable_lambda4 = .false.
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# disable Standard Model contributions
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disable_sm = .false.
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# anomalous couplings mode (only LO)
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mode_anomcoup = .false.
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# Anomalous couplings of the W and Z
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[anom_wz]
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# enable anomalous W/Z couplings
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enable = .false.
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# Delta g1(Z)
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delg1_z = 0
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# Delta K(Z)
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delk_z = 0
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# Delta K(gamma)
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delk_g = 0
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# Lambda(Z)
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lambda_z = 0
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# Lambda(gamma)
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lambda_g = 0
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# h1(Z)
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h1Z = 0
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# h1(gamma)
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h1gam = 0
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# h2(Z)
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h2Z = 0
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# h2(gamma)
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h2gam = 0
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# h3(Z)
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h3Z = 0
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# h3(gamma)
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h3gam = 0
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# h4(Z)
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h4Z = 0
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# h4(gamma)
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h4gam = 0
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# Form-factor scale, in TeV
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tevscale = 2.0
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# Higgs+jet with mass corrections, process 200
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[hjetmass]
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mtex = 0
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[anom_higgs]
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# Gamma_H / Gamma_H(SM)
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hwidth_ratio = 1.0
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cttH = 1.0
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cWWH = 1.0
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