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Z(inclusive)H(invisible) cards #214

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118 changes: 118 additions & 0 deletions FCCee/Generator/Whizard/v3.0.3/wzp6_ee_ZH_Hinv_ecm240.sin
Original file line number Diff line number Diff line change
@@ -0,0 +1,118 @@
########################################################################
#
# Copyright (C) 1999-2019 by
# Wolfgang Kilian <[email protected]>
# Thorsten Ohl <[email protected]>
# Juergen Reuter <[email protected]>
# with contributions from
# cf. main AUTHORS file
#
# WHIZARD is free software; you can redistribute it and/or modify it
# under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
#
# WHIZARD is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software
# Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
#
########################################################################

model = SM

# Center of mass energy
sqrts = 240 GeV

alias nu = nue:numu:nutau
alias nubar = nuebar:numubar:nutaubar

# Processes

# ?vis_diags = true

# nunuH, H->ZZ*->4l
# Z decays are handled by Pythia

process proc = e1, E1 => (nu, nubar, H)
+ (e1, E1, H)
+ (e2, E2, H)
+ (u, U, H)
+ (d, D, H)
+ (s, S, H)
+ (c, C, H)
+ (b, B, H)


beams = e1, E1 => gaussian => isr
?keep_beams = true
?keep_remnants = true

gaussian_spread1 = 0.185%
gaussian_spread2 = 0.185%


?isr_handler = true
$isr_handler_mode = "recoil"
isr_alpha = 0.0072993
isr_mass = 0.000511



! Parton shower and hadronization
?ps_fsr_active = true
?ps_isr_active = false
?hadronization_active = true
$shower_method = "PYTHIA6"
!?ps_PYTHIA_verbose = true

# I 210 d + dbar I 2.142D-09 I 7.849D-07 I off I 0.000D+00 I
# I 211 u + ubar I 6.855D-10 I 2.511D-07 I off I 0.000D+00 I
# I 212 s + sbar I 8.656D-07 I 3.171D-04 I off I 0.000D+00 I
# I 213 c + cbar I 1.070D-04 I 3.919D-02 I off I 0.000D+00 I
# I 214 b + bbar I 1.952D-03 I 7.150D-01 I on I 1.000D+00 I
# I 215 t + tbar I 0.000D+00 I 0.000D+00 I off I 0.000D+00 I
# I 218 e- + e+ I 1.938D-11 I 7.101D-09 I off I 0.000D+00 I
# I 219 mu- + mu+ I 8.319D-07 I 3.048D-04 I off I 0.000D+00 I
# I 220 tau- + tau+ I 2.350D-04 I 8.608D-02 I off I 0.000D+00 I
# I 222 g + g I 1.490D-04 I 5.460D-02 I off I 0.000D+00 I
# I 223 gamma + gamma I 7.496D-06 I 2.746D-03 I off I 0.000D+00 I
# I 224 gamma + Z0 I 2.255D-06 I 8.263D-04 I off I 0.000D+00 I
# I 225 Z0 + Z0 I 2.561D-05 I 9.383D-03 I off I 0.000D+00 I
# I 226 W+ + W- I 2.498D-04 I 9.153D-02 I off I 0.000D+00 I

# Z decays:
# MDME(174,1) !Z decay into d dbar
# MDME(175,1) !Z decay into u ubar
# MDME(176,1) !Z decay into s sbar
# MDME(177,1) !Z decay into c cbar
# MDME(178,1) !Z decay into b bbar
# MDME(179,1) !Z decay into t tbar
# MDME(180,1) !Z decay into b4 b4bar
# MDME(181,1) !Z decay into t4 t4bar
# MDME(182,1) !Z decay into e- e+
# MDME(183,1) !Z decay into nu_e nu_ebar
# MDME(184,1) !Z decay into mu- mu+
# MDME(185,1) !Z decay into nu_mu nu_mubar
# MDME(186,1) !Z decay into tau- tau+
# MDME(187,1) !Z decay into nu_tau nu_taubar
# MDME(188,1) !Z decay into tau4 tau4bar
# MDME(189,1) !Z decay into nu_tau4 nu_tau4bar

$ps_PYTHIA_PYGIVE = "MDME(174,1)=0; MDME(175,1)=0; MDME(176,1)=0; MDME(177,1)=0; MDME(178,1)=0; MDME(179,1)=0; MDME(180,1)=0; MDME(181,1)=0; MDME(182,1)=1; MDME(183,1)=1; MDME(184,1)=0; MDME(185,1)=1; MDME(186,1)=0; MDME(187,1)=1; MDME(188,1)=0; MDME(189,1)=0; MDME(210,1)=0; MDME(211,1)=0; MDME(212,1)=0; MDME(213,1)=0; MDME(214,1)=0; MDME(215,1)=0; MDME(218,1)=0; MDME(219,1)=0; MDME(220,1)=0; MDME(222,1)=0; MDME(223,1)=0; MDME(224,1)=0; MDME(225,1)=1; MDME(226,1)=0; MSTJ(28)=0; PMAS(25,1)=125.; PMAS(25,2)=0.4143E-02; MSTJ(41)=2; MSTU(22)=2000; PARJ(21)=0.40000; PARJ(41)=0.11000; PARJ(42)=0.52000; PARJ(81)=0.25000; PARJ(82)=1.90000; MSTJ(11)=3; PARJ(54)=-0.03100; PARJ(55)=-0.00200; PARJ(1)=0.08500; PARJ(3)=0.45000; PARJ(4)=0.02500; PARJ(2)=0.31000; PARJ(11)=0.60000; PARJ(12)=0.40000; PARJ(13)=0.72000; PARJ(14)=0.43000; PARJ(15)=0.08000; PARJ(16)=0.08000; PARJ(17)=0.17000; MSTP(3)=1;MSTP(71)=1; MSTP(151)=1; PARP(151)=0.0098; PARP(152)=2.54e-5; PARP(153)=0.646; PARP(154)=1.937; MSTJ(22)=4; PARJ(73)=2250; PARJ(74)=2500"


integrate (proc) { iterations = 10:100000:"gw", 5:200000:"" }

# n_events should be passed by the EventProducer
# n_events = 100000

sample_format = stdhep
$extension_stdhep = "stdhep"
simulate (proc) {checkpoint = 100}


118 changes: 118 additions & 0 deletions FCCee/Generator/Whizard/v3.0.3/wzp6_ee_ZH_Hinv_ecm365.sin
Original file line number Diff line number Diff line change
@@ -0,0 +1,118 @@
########################################################################
#
# Copyright (C) 1999-2019 by
# Wolfgang Kilian <[email protected]>
# Thorsten Ohl <[email protected]>
# Juergen Reuter <[email protected]>
# with contributions from
# cf. main AUTHORS file
#
# WHIZARD is free software; you can redistribute it and/or modify it
# under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
#
# WHIZARD is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software
# Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
#
########################################################################

model = SM

# Center of mass energy
sqrts = 240 GeV

alias nu = nue:numu:nutau
alias nubar = nuebar:numubar:nutaubar

# Processes

# ?vis_diags = true

# nunuH, H->ZZ*->4l
# Z decays are handled by Pythia

process proc = e1, E1 => (nu, nubar, H)
+ (e1, E1, H)
+ (e2, E2, H)
+ (u, U, H)
+ (d, D, H)
+ (s, S, H)
+ (c, C, H)
+ (b, B, H)


beams = e1, E1 => gaussian => isr
?keep_beams = true
?keep_remnants = true

gaussian_spread1 = 0.221%
gaussian_spread2 = 0.221%


?isr_handler = true
$isr_handler_mode = "recoil"
isr_alpha = 0.0072993
isr_mass = 0.000511



! Parton shower and hadronization
?ps_fsr_active = true
?ps_isr_active = false
?hadronization_active = true
$shower_method = "PYTHIA6"
!?ps_PYTHIA_verbose = true

# I 210 d + dbar I 2.142D-09 I 7.849D-07 I off I 0.000D+00 I
# I 211 u + ubar I 6.855D-10 I 2.511D-07 I off I 0.000D+00 I
# I 212 s + sbar I 8.656D-07 I 3.171D-04 I off I 0.000D+00 I
# I 213 c + cbar I 1.070D-04 I 3.919D-02 I off I 0.000D+00 I
# I 214 b + bbar I 1.952D-03 I 7.150D-01 I on I 1.000D+00 I
# I 215 t + tbar I 0.000D+00 I 0.000D+00 I off I 0.000D+00 I
# I 218 e- + e+ I 1.938D-11 I 7.101D-09 I off I 0.000D+00 I
# I 219 mu- + mu+ I 8.319D-07 I 3.048D-04 I off I 0.000D+00 I
# I 220 tau- + tau+ I 2.350D-04 I 8.608D-02 I off I 0.000D+00 I
# I 222 g + g I 1.490D-04 I 5.460D-02 I off I 0.000D+00 I
# I 223 gamma + gamma I 7.496D-06 I 2.746D-03 I off I 0.000D+00 I
# I 224 gamma + Z0 I 2.255D-06 I 8.263D-04 I off I 0.000D+00 I
# I 225 Z0 + Z0 I 2.561D-05 I 9.383D-03 I off I 0.000D+00 I
# I 226 W+ + W- I 2.498D-04 I 9.153D-02 I off I 0.000D+00 I

# Z decays:
# MDME(174,1) !Z decay into d dbar
# MDME(175,1) !Z decay into u ubar
# MDME(176,1) !Z decay into s sbar
# MDME(177,1) !Z decay into c cbar
# MDME(178,1) !Z decay into b bbar
# MDME(179,1) !Z decay into t tbar
# MDME(180,1) !Z decay into b4 b4bar
# MDME(181,1) !Z decay into t4 t4bar
# MDME(182,1) !Z decay into e- e+
# MDME(183,1) !Z decay into nu_e nu_ebar
# MDME(184,1) !Z decay into mu- mu+
# MDME(185,1) !Z decay into nu_mu nu_mubar
# MDME(186,1) !Z decay into tau- tau+
# MDME(187,1) !Z decay into nu_tau nu_taubar
# MDME(188,1) !Z decay into tau4 tau4bar
# MDME(189,1) !Z decay into nu_tau4 nu_tau4bar

$ps_PYTHIA_PYGIVE = "MDME(174,1)=0; MDME(175,1)=0; MDME(176,1)=0; MDME(177,1)=0; MDME(178,1)=0; MDME(179,1)=0; MDME(180,1)=0; MDME(181,1)=0; MDME(182,1)=1; MDME(183,1)=1; MDME(184,1)=0; MDME(185,1)=1; MDME(186,1)=0; MDME(187,1)=1; MDME(188,1)=0; MDME(189,1)=0; MDME(210,1)=0; MDME(211,1)=0; MDME(212,1)=0; MDME(213,1)=0; MDME(214,1)=0; MDME(215,1)=0; MDME(218,1)=0; MDME(219,1)=0; MDME(220,1)=0; MDME(222,1)=0; MDME(223,1)=0; MDME(224,1)=0; MDME(225,1)=1; MDME(226,1)=0; MSTJ(28)=0; PMAS(25,1)=125.; PMAS(25,2)=0.4143E-02; MSTJ(41)=2; MSTU(22)=2000; PARJ(21)=0.40000; PARJ(41)=0.11000; PARJ(42)=0.52000; PARJ(81)=0.25000; PARJ(82)=1.90000; MSTJ(11)=3; PARJ(54)=-0.03100; PARJ(55)=-0.00200; PARJ(1)=0.08500; PARJ(3)=0.45000; PARJ(4)=0.02500; PARJ(2)=0.31000; PARJ(11)=0.60000; PARJ(12)=0.40000; PARJ(13)=0.72000; PARJ(14)=0.43000; PARJ(15)=0.08000; PARJ(16)=0.08000; PARJ(17)=0.17000; MSTP(3)=1;MSTP(71)=1; MSTP(151)=1; PARP(151)=0.0273; PARP(152)=4.88e-5; PARP(153)=1.33; PARP(154)=1.337; MSTJ(22)=4; PARJ(73)=2250; PARJ(74)=2500"


integrate (proc) { iterations = 10:100000:"gw", 5:200000:"" }

# n_events should be passed by the EventProducer
# n_events = 100000

sample_format = stdhep
$extension_stdhep = "stdhep"
simulate (proc) {checkpoint = 100}


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