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RPV_simplified_mC1mN1_400_200.slha
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RPV_simplified_mC1mN1_400_200.slha

##******************************************************************
## MadGraph/MadEvent *
##******************************************************************
## *
## Default MadEvent param_card *
## with SM and Higgs sectors *
## corresponding the SPS point 1a (by SoftSusy 2.0.5) *
## *
##******************************************************************
## Les Houches friendly file for the (MS)SM parameters of MadGraph *
## SM parameter set and decay widths produced by MSSMCalc *
##******************************************************************
##*Please note the following IMPORTANT issues: *
## *
##0. REFRAIN from editing this file by hand! Some of the parame- *
## ters are not independent. Always use a calculator. *
## *
##1. alpha_S(MZ) has been used in the calculation of the parameters*
## This value is KEPT by madgraph when no pdf are used lpp(i)=0, *
## but, for consistency, it will be reset by madgraph to the *
## value expected IF the pdfs for collisions with hadrons are *
## used. *
## *
##2. Values of the charm and bottom kinematic (pole) masses are *
## those used in the matrix elements and phase space UNLESS they *
## are set to ZERO from the start in the model (particles.dat) *
## This happens, for example, when using 5-flavor QCD where *
## charm and bottom are treated as partons in the initial state *
## and a zero mass might be hardwired in the model definition. *
## *
## Despite point 0, the SUSY parameters here correspond to *
## a simplified model, with masses and decays set by hand. *
## Description: *
## WinoPM/Bino simplified model with lambda_121 R-parity violation. *
## mWinoPM = 400; mBino = 200 *
## *
##******************************************************************
#
BLOCK DCINFO # Decay Program information
1 SDECAY # decay calculator
2 1.1a # version number
#
BLOCK SPINFO # Spectrum calculator information
1 SOFTSUSY # spectrum calculator
2 2.0.5 # version number
#
BLOCK MODSEL # Model selection
1 1 sugra
#
BLOCK SMINPUTS # Standard Model inputs
1 1.27934000E+02 # alpha_em^-1(M_Z)^MSbar
2 1.16637000E-05 # G_F [GeV^-2]
3 1.18000000E-01 # alpha_S(M_Z)^MSbar
4 9.11876000E+01 # M_Z pole mass
5 4.25000000E+00 # mb(mb)^MSbar
6 1.75000000E+02 # mt pole mass
7 1.77700000E+00 # mtau pole mass
#
BLOCK MINPAR # Input parameters - minimal models
1 1.00000000E+02 # m0
2 2.50000000E+02 # m12
3 1.00000000E+01 # tanb
4 1.00000000E+00 # sign(mu)
5 -1.00000000E+02 # A0
#
BLOCK MASS # Mass Spectrum
# PDG code mass particle
5 4.88991651E+00 # b-quark pole mass calculated from mb(mb)_Msbar
24 7.98290131E+01 # W+
25 1.10899057E+02 # h
35 3.99960116E+02 # H
36 3.99583917E+02 # A
37 4.07879012E+02 # H+
1000001 4.50000000E+03 #
2000001 4.50000000E+03 #
1000002 4.50000000E+03 #
2000002 4.50000000E+03 #
1000003 4.50000000E+03 #
2000003 4.50000000E+03 #
1000004 4.50000000E+03 #
2000004 4.50000000E+03 #
1000005 4.50000000E+03 #
2000005 4.50000000E+03 #
1000006 4.50000000E+03 #
2000006 4.50000000E+03 #
1000011 4.50000000E+03 #
1000012 4.50000000E+03 #
1000013 4.50000000E+03 #
1000014 4.50000000E+03 #
1000015 4.50000000E+03 #
1000016 4.50000000E+03 #
2000011 4.50000000E+03 #
2000013 4.50000000E+03 #
2000015 4.50000000E+03 #
1000021 4.50000000E+03 #
1000022 200.0 #
1000023 4.50000000E+03 #
1000024 400.0 #
1000025 4.50000000E+03 #
1000035 4.50000000E+03 #
1000037 4.50000000E+03 #
#
BLOCK NMIX # Neutralino Mixing Matrix
1 1 1.00000000E+00 # N_11
1 2 0.00000000E+00 # N_12
1 3 0.00000000E+00 # N_13
1 4 0.00000000E+00 # N_14
2 1 0.00000000E+00 # N_21
2 2 1.00000000E+00 # N_22
2 3 0.00000000E+00 # N_23
2 4 0.00000000E+00 # N_24
3 1 0.00000000E+00 # N_31
3 2 0.00000000E+00 # N_32
3 3 1.00000000E+00 # N_33
3 4 0.00000000E+00 # N_34
4 1 0.00000000E+00 # N_41
4 2 0.00000000E+00 # N_42
4 3 0.00000000E+00 # N_43
4 4 1.00000000E+00 # N_44
#
BLOCK UMIX # Chargino Mixing Matrix U
1 1 1.00000000E+00 # U_11
1 2 0.00000000E+00 # U_12
2 1 0.00000000E+00 # U_21
2 2 1.00000000E+00 # U_22
#
BLOCK VMIX # Chargino Mixing Matrix V
1 1 1.00000000E+00 # U_11
1 2 0.00000000E+00 # U_12
2 1 0.00000000E+00 # U_21
2 2 1.00000000E+00 # U_22
#
BLOCK STOPMIX # Stop Mixing Matrix
1 1 1.00000000E+00 # U_11
1 2 0.00000000E+00 # U_12
2 1 0.00000000E+00 # U_21
2 2 1.00000000E+00 # U_22
#
BLOCK SBOTMIX # Sbottom Mixing Matrix
1 1 1.00000000E+00 # U_11
1 2 0.00000000E+00 # U_12
2 1 0.00000000E+00 # U_21
2 2 1.00000000E+00 # U_22
#
BLOCK STAUMIX # Stau Mixing Matrix
1 1 1.00000000E+00 # U_11
1 2 0.00000000E+00 # U_12
2 1 0.00000000E+00 # U_21
2 2 1.00000000E+00 # U_22
#
BLOCK ALPHA # Higgs mixing
-1.13825210E-01 # Mixing angle in the neutral Higgs boson sector
#
BLOCK HMIX Q= 4.67034192E+02 # DRbar Higgs Parameters
1 3.57680977E+02 # mu(Q)MSSM DRbar
2 9.74862403E+00 # tan beta(Q)MSSM DRba
3 2.44894549E+02 # higgs vev(Q)MSSM DRb
4 1.66439065E+05 # mA^2(Q)MSSM DRbar
#
BLOCK GAUGE Q= 4.67034192E+02 # The gauge couplings
3 1.10178679E+00 # g3(Q) MSbar
#
BLOCK AU Q= 4.67034192E+02 # The trilinear couplings
1 1 0.00000000E+00 # A_u(Q) DRbar
2 2 0.00000000E+00 # A_c(Q) DRbar
3 3 -4.98129778E+02 # A_t(Q) DRbar
#
BLOCK AD Q= 4.67034192E+02 # The trilinear couplings
1 1 0.00000000E+00 # A_d(Q) DRbar
2 2 0.00000000E+00 # A_s(Q) DRbar
3 3 -7.97274397E+02 # A_b(Q) DRbar
#
BLOCK AE Q= 4.67034192E+02 # The trilinear couplings
1 1 0.00000000E+00 # A_e(Q) DRbar
2 2 0.00000000E+00 # A_mu(Q) DRbar
3 3 -2.51776873E+02 # A_tau(Q) DRbar
#
BLOCK YU Q= 4.67034192E+02 # The Yukawa couplings
3 3 8.92844550E-01 # y_t(Q) DRbar
#
BLOCK YD Q= 4.67034192E+02 # The Yukawa couplings
3 3 1.38840206E-01 # y_b(Q) DRbar
#
BLOCK YE Q= 4.67034192E+02 # The Yukawa couplings
3 3 1.00890810E-01 # y_tau(Q) DRbar
#
BLOCK MSOFT Q= 4.67034192E+02 # The soft SUSY breaking masses at the scale Q
1 1.01396534E+02 # M_1(Q)
2 1.91504241E+02 # M_2(Q)
3 5.88263031E+02 # M_3(Q)
21 3.23374943E+04 # mH1^2(Q)
22 -1.28800134E+05 # mH2^2(Q)
31 1.95334764E+02 # meL(Q)
32 1.95334764E+02 # mmuL(Q)
33 1.94495956E+02 # mtauL(Q)
34 1.36494061E+02 # meR(Q)
35 1.36494061E+02 # mmuR(Q)
36 1.34043428E+02 # mtauR(Q)
41 5.47573466E+02 # mqL1(Q)
42 5.47573466E+02 # mqL2(Q)
43 4.98763839E+02 # mqL3(Q)
44 5.29511195E+02 # muR(Q)
45 5.29511195E+02 # mcR(Q)
46 4.23245877E+02 # mtR(Q)
47 5.23148807E+02 # mdR(Q)
48 5.23148807E+02 # msR(Q)
49 5.19867261E+02 # mbR(Q)
#
#
#
# =================
# |The decay table|
# =================
#
# - The multi-body decays for the inos, stops and sbottoms are included.
#
# - The SUSY decays of the top quark are included.
#
#
# PDG Width
DECAY 23 2.41143316E+00 # Z width (SM calculation)
DECAY 24 2.00282196E+00 # W width (SM calculation)
#
# PDG Width
DECAY 6 1.56194983E+00 # top decays
# BR NDA ID1 ID2
1.00000000E+00 2 5 24 # BR(t -> b W+)
#
# PDG Width
DECAY 25 1.98610799E-03 # h decays
# BR NDA ID1 ID2
1.45642955E-01 2 15 -15 # BR(H1 -> tau- tau+)
8.19070713E-01 2 5 -5 # BR(H1 -> b bb)
3.36338173E-02 2 24 -24 # BR(H1 -> W+ W-)
1.65251528E-03 2 23 23 # BR(H1 -> Z Z)
#
# PDG Width
DECAY 35 5.74801389E-01 # H decays
# BR NDA ID1 ID2
1.39072676E-01 2 15 -15 # BR(H -> tau- tau+)
4.84110879E-02 2 6 -6 # BR(H -> t tb)
7.89500067E-01 2 5 -5 # BR(H -> b bb)
3.87681171E-03 2 24 -24 # BR(H -> W+ W-)
1.80454752E-03 2 23 23 # BR(H -> Z Z)
1.73348101E-02 2 25 25 # BR(H -> h h)
#
# PDG Width
DECAY 36 6.32178488E-01 # A decays
# BR NDA ID1 ID2
1.26659725E-01 2 15 -15 # BR(A -> tau- tau+)
1.51081526E-01 2 6 -6 # BR(A -> t tb)
7.19406137E-01 2 5 -5 # BR(A -> b bb)
2.85261228E-03 2 23 25 # BR(A -> Z h)
#
# PDG Width
DECAY 37 5.46962813E-01 # H+ decays
# BR NDA ID1 ID2
1.49435135E-01 2 -15 16 # BR(H+ -> tau+ nu_tau)
8.46811711E-01 2 6 -5 # BR(H+ -> t bb)
3.75315387E-03 2 24 25 # BR(H+ -> W+ h)
#
# PDG Width
DECAY 1000021 0.1 # gluino decays
# BR NDA ID1 ID2
0.25000000E+00 3 1000022 1 -1 # BR(~go -> ddbar chi10)
0.25000000E+00 3 1000022 2 -2 # BR(~go -> uubar chi10)
0.25000000E+00 3 1000022 3 -3 # BR(~go -> ssbar chi10)
0.25000000E+00 3 1000022 4 -4 # BR(~go -> ccbar chi10)
# PDG Width
DECAY 1000001 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 1 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 2000001 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 1 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 1000002 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 2 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 2000002 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 2 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 1000003 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 3 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 2000003 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 3 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 1000004 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 4 # BR(~q_L -> ~chi_10 q)
#
# PDG Width
DECAY 2000004 0.1 #
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 4 # BR(~q_L -> ~chi_10 q)
#
DECAY 1000023 2.07770048E-02 # neutralino2 decays
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 23 # BR(~chi_20 -> ~chi_10 Z )
# PDG Width
DECAY 1000024 0.1 # chargino1+ decays
# BR NDA ID1 ID2
1.00000000E+00 2 1000022 24 # BR(~chi_1+ -> ~chi_10 W+)
#
# PDG Width
DECAY 1000037 0.00000000E+00 # chargino2+ decays
#
# PDG Width
DECAY 1000022 0.1 # neutralino1 decays
#
2.50000000E-01 3 -12 -13 11
2.50000000E-01 3 12 13 -11
2.50000000E-01 3 -14 -11 11
2.50000000E-01 3 14 11 -11
#
# PDG Width
DECAY 1000025 0.00000000E+00 # neutralino3 decays
#
# PDG Width
DECAY 1000035 0.00000000E+00 # neutralino4 decays
#
# PDG Width
DECAY 1000006 0.00000000E+00 # stop1 decays
#
# PDG Width
DECAY 2000006 0.00000000E+00 # stop2 decays
#
# PDG Width
DECAY 1000005 0.00000000E+00 # sbottom1 decays
#
# PDG Width
DECAY 2000005 0.00000000E+00 # sbottom2 decays
#
# PDG Width
DECAY 1000011 0.00000000E+00 # selectron_L decays
#
# PDG Width
DECAY 2000011 0.00000000E+00 # selectron_R decays
#
# PDG Width
DECAY 1000013 0.00000000E+00 # smuon_L decays
#
# PDG Width
DECAY 2000013 0.00000000E+00 # smuon_R decays
#
# PDG Width
DECAY 1000015 0.00000000E+00 # stau_1 decays
#
# PDG Width
DECAY 2000015 0.00000000E+00 # stau_2 decays
#
# PDG Width
DECAY 1000012 0.00000000E+00 # snu_eL decays
#
# PDG Width
DECAY 1000014 0.00000000E+00 # snu_muL decays
#
# PDG Width
DECAY 1000016 0.00000000E+00 # snu_tauL decays
#

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