comparison slepton pair production with prospino

Asked by Marcel Rothering

Hello,

I want to compare total xs with Madgraph, prospino and my program. Maybe first for an easy example: p p > stau1+ stau2-
I think I use the same PDfs in all three programs ( Cteq6). I also use the same BP so that I should have the same mass spectrum.
My program and prospino fits very well. But I don't get the same results with Madgraph. Maybe you can help me? I think I have to change some parameters or something else. Below u can find my process, parameter and run card!
And also the log file..

Thank you in advance and enjoy the summer.

Best,

Marcel

#************************************************************
#* MadGraph 5 *
#* *
#* * * *
#* * * * * *
#* * * * * 5 * * * * *
#* * * * * *
#* * * *
#* *
#* *
#* VERSION 1.4.7 2012-06-25 *
#* *
#* The MadGraph Development Team - Please visit us at *
#* https://server06.fynu.ucl.ac.be/projects/madgraph *
#* *
#************************************************************
#* *
#* Command File for MadGraph 5 *
#* *
#* run as ./bin/mg5 filename *
#* *
#************************************************************

import model sm
import model mssm
mssm particles
generate p p > ta1- ta2+
output MyRunDir/LO_stau12

##******************************************************************
## MadGraph/MadEvent *
##******************************************************************
## 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. *
## *
## The SUSY decays have calculated using SDECAY 1.1a *
## *
##******************************************************************
#
BLOCK DCINFO # Decay Program information
     1 SDECAY # decay calculator
     2 1.1a # version number
#
BLOCK SPINFO # Spectrum calculator information
     1 SuSpect
     2 2.41
#
BLOCK MODSEL # Model selection
     1 1 #
#
BLOCK SMINPUTS # Standard Model inputs
     1 1.27934000E+02 # alpha_em^-1(M_Z)^MSbar
     2 1.16639000E-05 # G_F [GeV^-2]
     3 1.17200000E-01 # alpha_S(M_Z)^MSbar
     4 9.11870000E+01 # M_Z pole mass
     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 4.00000000E+02 # m_1
     3 1.00000000E+01 # tanbeta(mZ)
     4 1.00000000E+00 # sign(mu)
#
BLOCK EXTPAR # Input parameters - non-minimal models
     0 6.00000000E+02 # High
#
BLOCK MASS # Mass Spectrum
# PDG code mass particle
         5 4.87884274E+00 # b-quark pole mass
         6 1.75000000E+02 # t-quark pole mass (not read by ME)
        24 7.98285576E+01 # W+
        25 1.14163047E+02 # h
        35 5.89052667E+02 # H
        36 5.88692582E+02 # A
        37 5.94472962E+02 # H+
   1000001 8.60024492E+02 # ~d_L
   2000001 8.25409494E+02 # ~d_R
   1000002 8.56439284E+02 # ~u_L
   2000002 8.27762055E+02 # ~u_R
   1000003 8.60024492E+02 # ~s_L
   2000003 8.25409494E+02 # ~s_R
   1000004 8.56439284E+02 # ~c_L
   2000004 8.27762055E+02 # ~c_R
   1000005 7.91870891E+02 # ~b_1
   2000005 8.24276386E+02 # ~b_2
   1000006 6.47823761E+02 # ~t_1
   2000006 8.41982666E+02 # ~t_2
   1000011 2.88147997E+02 # ~e_L
   2000011 1.83114008E+02 # ~e_R
   1000012 2.77422267E+02 # ~nu_eL
   1000013 2.88147997E+02 # ~mu_L
   2000013 1.83114008E+02 # ~mu_R
   1000014 2.77422267E+02 # ~nu_muL
   1000015 1.75675108E+02 # ~tau_1
   2000015 2.90338316E+02 # ~tau_2
   1000016 2.76585940E+02 # ~nu_tauL
   1000021 9.33507752E+02 # ~g
   1000022 1.61666769E+02 # ~chi_10
   1000023 3.03764723E+02 # ~chi_20
   1000025 -5.26525826E+02 # ~chi_30
   1000035 5.42396367E+02 # ~chi_40
   1000024 3.03516314E+02 # ~chi_1+
   1000037 5.42197677E+02 # ~chi_2+
#
BLOCK NMIX # Neutralino Mixing Matrix
  1 1 9.93878707E-01 # N_11
  1 2 -2.52624038E-02 # N_12
  1 3 9.98605244E-02 # N_13
  1 4 -3.99349753E-02 # N_14
  2 1 5.27653372E-02 # N_21
  2 2 9.62387929E-01 # N_22
  2 3 -2.23869126E-01 # N_23
  2 4 1.44595667E-01 # N_24
  3 1 4.05505066E-02 # N_31
  3 2 -5.90286858E-02 # N_32
  3 3 -7.01914010E-01 # N_33
  3 4 -7.08652237E-01 # N_34
  4 1 8.81849830E-02 # N_41
  4 2 -2.63982762E-01 # N_42
  4 3 -6.68750486E-01 # N_43
  4 4 6.89426790E-01 # N_44
#
BLOCK UMIX # Chargino Mixing Matrix U
  1 1 -9.46840550E-01 # U_11
  1 2 3.21703236E-01 # U_12
  2 1 3.21703236E-01 # U_21
  2 2 9.46840550E-01 # U_22
#
BLOCK VMIX # Chargino Mixing Matrix V
  1 1 -9.78065813E-01 # V_11
  1 2 2.08296098E-01 # V_12
  2 1 2.08296098E-01 # V_21
  2 2 9.78065813E-01 # V_22
#
BLOCK STOPMIX # Stop Mixing Matrix
  1 1 4.66779270E-01 # O_{11}
  1 2 8.84373854E-01 # O_{12}
  2 1 -8.84373854E-01 # O_{21}
  2 2 4.66779270E-01 # O_{22}
#
BLOCK SBOTMIX # Sbottom Mixing Matrix
  1 1 9.52672239E-01 # O_{11}
  1 2 3.03999350E-01 # O_{12}
  2 1 -3.03999350E-01 # O_{21}
  2 2 9.52672239E-01 # O_{22}
#
BLOCK STAUMIX # Stau Mixing Matrix
  1 1 1.79788507E-01 # O_{11}
  1 2 9.83705288E-01 # O_{12}
  2 1 -9.83705288E-01 # O_{21}
  2 2 1.79788507E-01 # O_{22}
#
BLOCK ALPHA # Higgs mixing
          -1.08429234E-01 # Mixing angle in the neutral Higgs boson sector
#
BLOCK HMIX Q= 6.00000000E+02 # DRbar Higgs Parameters
     1 5.21696741E+02 # mu(Q)
     2 9.68562503E+00 # tanbeta(Q)
     3 2.44467672E+02 # vev(Q)
     4 3.59989864E+05 # MA^2(Q)
#
BLOCK GAUGE Q= 6.00000000E+02 # The gauge couplings
     3 1.08390907E+00 # g3(Q) MSbar
#
BLOCK AU Q= 6.00000000E+02 # The trilinear couplings
  3 3 -7.09036504E+02 # A_t(Q) DRbar
#
BLOCK AD Q= 6.00000000E+02 # The trilinear couplings
  3 3 -1.07065308E+03 # A_b(Q) DRbar
#
BLOCK AE Q= 6.00000000E+02 # The trilinear couplings
  3 3 -2.40545007E+02 # A_tau(Q) DRbar
#
BLOCK YU Q= 6.00000000E+02 # The Yukawa couplings
  3 3 8.77930803E-01 # y_t(Q) DRbar
#
BLOCK YD Q= 6.00000000E+02 # The Yukawa couplings
  3 3 1.36706779E-01 # y_b(Q) DRbar
#
BLOCK YE Q= 6.00000000E+02 # The Yukawa couplings
  3 3 1.00558932E-01 # y_tau(Q) DRbar
#
BLOCK MSOFT Q= 6.00000000E+02 # The soft SUSY breaking masses at the scale Q
     1 1.65837967E+02 # M_1
     2 3.09462504E+02 # M_2
     3 9.05287667E+02 # M_3
    21 6.99211112E+04 # M^2_Hd
    22 -2.65754591E+05 # M^2_Hu
    31 2.84524455E+02 # M_eL
    32 2.84524455E+02 # M_muL
    33 2.83709064E+02 # M_tauL
    34 1.77805487E+02 # M_eR
    35 1.77805487E+02 # M_muR
    36 1.75128019E+02 # M_tauR
    41 8.29989482E+02 # M_q1L
    42 8.29989482E+02 # M_q2L
    43 7.63590310E+02 # M_q3L
    44 7.99958120E+02 # M_uR
    45 7.99958120E+02 # M_cR
    46 6.55619751E+02 # M_tR
    47 7.96365672E+02 # M_dR
    48 7.96365672E+02 # M_sR
    49 7.92222367E+02 # M_bR
#
#
#
# =================
# |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 2.41180140E+00 # Z width (SM calculation)
DECAY 24 2.00313009E+00 # W width (SM calculation)
#
# PDG Width
DECAY 6 1.56198074E+00 # top decays
# BR NDA ID1 ID2
     1.00000000E+00 2 5 24 # BR(t -> b W+)
     0.00000000E+00 2 5 37 # BR(t -> b H+)
     0.00000000E+00 2 1000006 1000022 # BR(t -> ~t_1 ~chi_10)
     0.00000000E+00 2 1000006 1000023 # BR(t -> ~t_1 ~chi_20)
     0.00000000E+00 2 1000006 1000025 # BR(t -> ~t_1 ~chi_30)
     0.00000000E+00 2 1000006 1000035 # BR(t -> ~t_1 ~chi_40)
     0.00000000E+00 2 2000006 1000022 # BR(t -> ~t_2 ~chi_10)
     0.00000000E+00 2 2000006 1000023 # BR(t -> ~t_2 ~chi_20)
     0.00000000E+00 2 2000006 1000025 # BR(t -> ~t_2 ~chi_30)
     0.00000000E+00 2 2000006 1000035 # BR(t -> ~t_2 ~chi_40)
#
# PDG Width
DECAY 25 1.85789801E-03 # h decays
# BR NDA ID1 ID2
     1.44555166E-01 2 15 -15 # BR(H1 -> tau- tau+)
     7.93868950E-01 2 5 -5 # BR(H1 -> b bb)
     5.79364620E-02 2 24 -24 # BR(H1 -> W+ W-)
     3.63942184E-03 2 23 23 # BR(H1 -> Z Z)
#
# PDG Width
DECAY 35 9.40999375E-01 # H decays
# BR NDA ID1 ID2
     1.24450468E-01 2 15 -15 # BR(H -> tau- tau+)
     1.75484930E-01 2 6 -6 # BR(H -> t tb)
     6.89765580E-01 2 5 -5 # BR(H -> b bb)
     1.96522997E-03 2 24 -24 # BR(H -> W+ W-)
     9.50277261E-04 2 23 23 # BR(H -> Z Z)
     0.00000000E+00 2 24 -37 # BR(H -> W+ H-)
     0.00000000E+00 2 -24 37 # BR(H -> W- H+)
     0.00000000E+00 2 37 -37 # BR(H -> H+ H-)
     7.38351443E-03 2 25 25 # BR(H -> h h)
     0.00000000E+00 2 36 36 # BR(H -> A A)
#
# PDG Width
DECAY 36 9.98148791E-01 # A decays
# BR NDA ID1 ID2
     1.17395613E-01 2 15 -15 # BR(A -> tau- tau+)
     2.30089920E-01 2 6 -6 # BR(A -> t tb)
     6.50818916E-01 2 5 -5 # BR(A -> b bb)
     1.69555130E-03 2 23 25 # BR(A -> Z h)
     0.00000000E+00 2 23 35 # BR(A -> Z H)
     0.00000000E+00 2 24 -37 # BR(A -> W+ H-)
     0.00000000E+00 2 -24 37 # BR(A -> W- H+)
#
# PDG Width
DECAY 37 9.24592140E-01 # H+ decays
# BR NDA ID1 ID2
     1.27980711E-01 2 -15 16 # BR(H+ -> tau+ nu_tau)
     8.70090552E-01 2 6 -5 # BR(H+ -> t bb)
     1.92873642E-03 2 24 25 # BR(H+ -> W+ h)
     0.00000000E+00 2 24 35 # BR(H+ -> W+ H)
     0.00000000E+00 2 24 36 # BR(H+ -> W+ A)
#
# PDG Width
DECAY 1000021 1.10958309E+01 # gluino decays
# BR NDA ID1 ID2
     2.24888600E-02 2 1000001 -1 # BR(~g -> ~d_L db)
     2.24888600E-02 2 -1000001 1 # BR(~g -> ~d_L* d )
     4.68058824E-02 2 2000001 -1 # BR(~g -> ~d_R db)
     4.68058824E-02 2 -2000001 1 # BR(~g -> ~d_R* d )
     2.46380337E-02 2 1000002 -2 # BR(~g -> ~u_L ub)
     2.46380337E-02 2 -1000002 2 # BR(~g -> ~u_L* u )
     4.49106583E-02 2 2000002 -2 # BR(~g -> ~u_R ub)
     4.49106583E-02 2 -2000002 2 # BR(~g -> ~u_R* u )
     2.24888600E-02 2 1000003 -3 # BR(~g -> ~s_L sb)
     2.24888600E-02 2 -1000003 3 # BR(~g -> ~s_L* s )
     4.68058824E-02 2 2000003 -3 # BR(~g -> ~s_R sb)
     4.68058824E-02 2 -2000003 3 # BR(~g -> ~s_R* s )
     2.46380337E-02 2 1000004 -4 # BR(~g -> ~c_L cb)
     2.46380337E-02 2 -1000004 4 # BR(~g -> ~c_L* c )
     4.49106583E-02 2 2000004 -4 # BR(~g -> ~c_R cb)
     4.49106583E-02 2 -2000004 4 # BR(~g -> ~c_R* c )
     7.56133156E-02 2 1000005 -5 # BR(~g -> ~b_1 bb)
     7.56133156E-02 2 -1000005 5 # BR(~g -> ~b_1* b )
     4.89990891E-02 2 2000005 -5 # BR(~g -> ~b_2 bb)
     4.89990891E-02 2 -2000005 5 # BR(~g -> ~b_2* b )
     9.77007265E-02 2 1000006 -6 # BR(~g -> ~t_1 tb)
     9.77007265E-02 2 -1000006 6 # BR(~g -> ~t_1* t )
     0.00000000E+00 2 2000006 -6 # BR(~g -> ~t_2 tb)
     0.00000000E+00 2 -2000006 6 # BR(~g -> ~t_2* t )
#
# PDG Width
DECAY 1000006 3.71102886E+00 # stop1 decays
# BR NDA ID1 ID2
     2.52082119E-01 2 1000022 6 # BR(~t_1 -> ~chi_10 t )
     1.53247808E-01 2 1000023 6 # BR(~t_1 -> ~chi_20 t )
     0.00000000E+00 2 1000025 6 # BR(~t_1 -> ~chi_30 t )
     0.00000000E+00 2 1000035 6 # BR(~t_1 -> ~chi_40 t )
     4.43762806E-01 2 1000024 5 # BR(~t_1 -> ~chi_1+ b )
     1.50907267E-01 2 1000037 5 # BR(~t_1 -> ~chi_2+ b )
     0.00000000E+00 2 1000021 6 # BR(~t_1 -> ~g t )
     0.00000000E+00 2 1000005 37 # BR(~t_1 -> ~b_1 H+)
     0.00000000E+00 2 2000005 37 # BR(~t_1 -> ~b_2 H+)
     0.00000000E+00 2 1000005 24 # BR(~t_1 -> ~b_1 W+)
     0.00000000E+00 2 2000005 24 # BR(~t_1 -> ~b_2 W+)
#
# PDG Width
DECAY 2000006 1.21153150E+01 # stop2 decays
# BR NDA ID1 ID2
     2.38579783E-02 2 1000022 6 # BR(~t_2 -> ~chi_10 t )
     1.04119512E-01 2 1000023 6 # BR(~t_2 -> ~chi_20 t )
     9.18549113E-02 2 1000025 6 # BR(~t_2 -> ~chi_30 t )
     2.31536546E-01 2 1000035 6 # BR(~t_2 -> ~chi_40 t )
     2.38041572E-01 2 1000024 5 # BR(~t_2 -> ~chi_1+ b )
     1.35113532E-01 2 1000037 5 # BR(~t_2 -> ~chi_2+ b )
     0.00000000E+00 2 1000021 6 # BR(~t_2 -> ~g t )
     4.74141205E-02 2 1000006 25 # BR(~t_2 -> ~t_1 h )
     0.00000000E+00 2 1000006 35 # BR(~t_2 -> ~t_1 H )
     0.00000000E+00 2 1000006 36 # BR(~t_2 -> ~t_1 A )
     0.00000000E+00 2 1000005 37 # BR(~t_2 -> ~b_1 H+)
     0.00000000E+00 2 2000005 37 # BR(~t_2 -> ~b_2 H+)
     1.28061828E-01 2 1000006 23 # BR(~t_2 -> ~t_1 Z )
     0.00000000E+00 2 1000005 24 # BR(~t_2 -> ~b_1 W+)
     0.00000000E+00 2 2000005 24 # BR(~t_2 -> ~b_2 W+)
#
# PDG Width
DECAY 1000005 9.59819674E+00 # sbottom1 decays
# BR NDA ID1 ID2
     1.97507159E-02 2 1000022 5 # BR(~b_1 -> ~chi_10 b )
     2.16750001E-01 2 1000023 5 # BR(~b_1 -> ~chi_20 b )
     4.07609106E-03 2 1000025 5 # BR(~b_1 -> ~chi_30 b )
     7.40600361E-03 2 1000035 5 # BR(~b_1 -> ~chi_40 b )
     3.57400741E-01 2 -1000024 6 # BR(~b_1 -> ~chi_1- t )
     2.55177892E-01 2 -1000037 6 # BR(~b_1 -> ~chi_2- t )
     0.00000000E+00 2 1000021 5 # BR(~b_1 -> ~g b )
     0.00000000E+00 2 1000006 -37 # BR(~b_1 -> ~t_1 H-)
     0.00000000E+00 2 2000006 -37 # BR(~b_1 -> ~t_2 H-)
     1.39438556E-01 2 1000006 -24 # BR(~b_1 -> ~t_1 W-)
     0.00000000E+00 2 2000006 -24 # BR(~b_1 -> ~t_2 W-)
#
# PDG Width
DECAY 2000005 1.77043323E+00 # sbottom2 decays
# BR NDA ID1 ID2
     2.09730228E-01 2 1000022 5 # BR(~b_2 -> ~chi_10 b )
     7.63480968E-02 2 1000023 5 # BR(~b_2 -> ~chi_20 b )
     3.67320124E-02 2 1000025 5 # BR(~b_2 -> ~chi_30 b )
     5.30576628E-02 2 1000035 5 # BR(~b_2 -> ~chi_40 b )
     1.28003033E-01 2 -1000024 6 # BR(~b_2 -> ~chi_1- t )
     3.31166223E-01 2 -1000037 6 # BR(~b_2 -> ~chi_2- t )
     0.00000000E+00 2 1000021 5 # BR(~b_2 -> ~g b )
     0.00000000E+00 2 1000005 25 # BR(~b_2 -> ~b_1 h )
     0.00000000E+00 2 1000005 35 # BR(~b_2 -> ~b_1 H )
     0.00000000E+00 2 1000005 36 # BR(~b_2 -> ~b_1 A )
     0.00000000E+00 2 1000006 -37 # BR(~b_2 -> ~t_1 H-)
     0.00000000E+00 2 2000006 -37 # BR(~b_2 -> ~t_2 H-)
     0.00000000E+00 2 1000005 23 # BR(~b_2 -> ~b_1 Z )
     1.64962744E-01 2 1000006 -24 # BR(~b_2 -> ~t_1 W-)
     0.00000000E+00 2 2000006 -24 # BR(~b_2 -> ~t_2 W-)
#
# PDG Width
DECAY 1000002 8.10372287E+00 # sup_L decays
# BR NDA ID1 ID2
     1.02162691E-02 2 1000022 2 # BR(~u_L -> ~chi_10 u)
     3.19219506E-01 2 1000023 2 # BR(~u_L -> ~chi_20 u)
     4.54790014E-04 2 1000025 2 # BR(~u_L -> ~chi_30 u)
     9.73224438E-03 2 1000035 2 # BR(~u_L -> ~chi_40 u)
     6.46605388E-01 2 1000024 1 # BR(~u_L -> ~chi_1+ d)
     1.37718033E-02 2 1000037 1 # BR(~u_L -> ~chi_2+ d)
     0.00000000E+00 2 1000021 2 # BR(~u_L -> ~g u)
#
# PDG Width
DECAY 2000002 1.72427694E+00 # sup_R decays
# BR NDA ID1 ID2
     9.94342140E-01 2 1000022 2 # BR(~u_R -> ~chi_10 u)
     2.26836269E-03 2 1000023 2 # BR(~u_R -> ~chi_20 u)
     6.34243746E-04 2 1000025 2 # BR(~u_R -> ~chi_30 u)
     2.75525362E-03 2 1000035 2 # BR(~u_R -> ~chi_40 u)
     0.00000000E+00 2 1000024 1 # BR(~u_R -> ~chi_1+ d)
     0.00000000E+00 2 1000037 1 # BR(~u_R -> ~chi_2+ d)
     0.00000000E+00 2 1000021 2 # BR(~u_R -> ~g u)
#
# PDG Width
DECAY 1000001 7.96796027E+00 # sdown_L decays
# BR NDA ID1 ID2
     1.82048111E-02 2 1000022 1 # BR(~d_L -> ~chi_10 d)
     3.13871213E-01 2 1000023 1 # BR(~d_L -> ~chi_20 d)
     7.80091698E-04 2 1000025 1 # BR(~d_L -> ~chi_30 d)
     1.28565157E-02 2 1000035 1 # BR(~d_L -> ~chi_40 d)
     6.20363025E-01 2 -1000024 2 # BR(~d_L -> ~chi_1- u)
     3.39243438E-02 2 -1000037 2 # BR(~d_L -> ~chi_2- u)
     0.00000000E+00 2 1000021 1 # BR(~d_L -> ~g d)
#
# PDG Width
DECAY 2000001 4.29636615E-01 # sdown_R decays
# BR NDA ID1 ID2
     9.94371981E-01 2 1000022 1 # BR(~d_R -> ~chi_10 d)
     2.26542767E-03 2 1000023 1 # BR(~d_R -> ~chi_20 d)
     6.29636516E-04 2 1000025 1 # BR(~d_R -> ~chi_30 d)
     2.73295508E-03 2 1000035 1 # BR(~d_R -> ~chi_40 d)
     0.00000000E+00 2 -1000024 2 # BR(~d_R -> ~chi_1- u)
     0.00000000E+00 2 -1000037 2 # BR(~d_R -> ~chi_2- u)
     0.00000000E+00 2 1000021 1 # BR(~d_R -> ~g d)
#
# PDG Width
DECAY 1000004 8.10372287E+00 # scharm_L decays
# BR NDA ID1 ID2
     1.02162691E-02 2 1000022 4 # BR(~c_L -> ~chi_10 c)
     3.19219506E-01 2 1000023 4 # BR(~c_L -> ~chi_20 c)
     4.54790014E-04 2 1000025 4 # BR(~c_L -> ~chi_30 c)
     9.73224438E-03 2 1000035 4 # BR(~c_L -> ~chi_40 c)
     6.46605388E-01 2 1000024 3 # BR(~c_L -> ~chi_1+ s)
     1.37718033E-02 2 1000037 3 # BR(~c_L -> ~chi_2+ s)
     0.00000000E+00 2 1000021 4 # BR(~c_L -> ~g c)
#
# PDG Width
DECAY 2000004 1.72427694E+00 # scharm_R decays
# BR NDA ID1 ID2
     9.94342140E-01 2 1000022 4 # BR(~c_R -> ~chi_10 c)
     2.26836269E-03 2 1000023 4 # BR(~c_R -> ~chi_20 c)
     6.34243746E-04 2 1000025 4 # BR(~c_R -> ~chi_30 c)
     2.75525362E-03 2 1000035 4 # BR(~c_R -> ~chi_40 c)
     0.00000000E+00 2 1000024 3 # BR(~c_R -> ~chi_1+ s)
     0.00000000E+00 2 1000037 3 # BR(~c_R -> ~chi_2+ s)
     0.00000000E+00 2 1000021 4 # BR(~c_R -> ~g c)
#
# PDG Width
DECAY 1000003 7.96796027E+00 # sstrange_L decays
# BR NDA ID1 ID2
     1.82048111E-02 2 1000022 3 # BR(~s_L -> ~chi_10 s)
     3.13871213E-01 2 1000023 3 # BR(~s_L -> ~chi_20 s)
     7.80091698E-04 2 1000025 3 # BR(~s_L -> ~chi_30 s)
     1.28565157E-02 2 1000035 3 # BR(~s_L -> ~chi_40 s)
     6.20363025E-01 2 -1000024 4 # BR(~s_L -> ~chi_1- c)
     3.39243438E-02 2 -1000037 4 # BR(~s_L -> ~chi_2- c)
     0.00000000E+00 2 1000021 3 # BR(~s_L -> ~g s)
#
# PDG Width
DECAY 2000003 4.29636615E-01 # sstrange_R decays
# BR NDA ID1 ID2
     9.94371981E-01 2 1000022 3 # BR(~s_R -> ~chi_10 s)
     2.26542767E-03 2 1000023 3 # BR(~s_R -> ~chi_20 s)
     6.29636516E-04 2 1000025 3 # BR(~s_R -> ~chi_30 s)
     2.73295508E-03 2 1000035 3 # BR(~s_R -> ~chi_40 s)
     0.00000000E+00 2 -1000024 4 # BR(~s_R -> ~chi_1- c)
     0.00000000E+00 2 -1000037 4 # BR(~s_R -> ~chi_2- c)
     0.00000000E+00 2 1000021 3 # BR(~s_R -> ~g s)
#
# PDG Width
DECAY 1000011 1.55050948E-01 # selectron_L decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 11 # BR(~e_L -> ~chi_10 e-)
     0.00000000E+00 2 1000023 11 # BR(~e_L -> ~chi_20 e-)
     0.00000000E+00 2 1000025 11 # BR(~e_L -> ~chi_30 e-)
     0.00000000E+00 2 1000035 11 # BR(~e_L -> ~chi_40 e-)
     0.00000000E+00 2 -1000024 12 # BR(~e_L -> ~chi_1- nu_e)
     0.00000000E+00 2 -1000037 12 # BR(~e_L -> ~chi_2- nu_e)
#
# PDG Width
DECAY 2000011 4.48605149E-02 # selectron_R decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 11 # BR(~e_R -> ~chi_10 e-)
     0.00000000E+00 2 1000023 11 # BR(~e_R -> ~chi_20 e-)
     0.00000000E+00 2 1000025 11 # BR(~e_R -> ~chi_30 e-)
     0.00000000E+00 2 1000035 11 # BR(~e_R -> ~chi_40 e-)
     0.00000000E+00 2 -1000024 12 # BR(~e_R -> ~chi_1- nu_e)
     0.00000000E+00 2 -1000037 12 # BR(~e_R -> ~chi_2- nu_e)
#
# PDG Width
DECAY 1000013 1.55050948E-01 # smuon_L decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 13 # BR(~mu_L -> ~chi_10 mu-)
     0.00000000E+00 2 1000023 13 # BR(~mu_L -> ~chi_20 mu-)
     0.00000000E+00 2 1000025 13 # BR(~mu_L -> ~chi_30 mu-)
     0.00000000E+00 2 1000035 13 # BR(~mu_L -> ~chi_40 mu-)
     0.00000000E+00 2 -1000024 14 # BR(~mu_L -> ~chi_1- nu_mu)
     0.00000000E+00 2 -1000037 14 # BR(~mu_L -> ~chi_2- nu_mu)
#
# PDG Width
DECAY 2000013 4.48605149E-02 # smuon_R decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 13 # BR(~mu_R -> ~chi_10 mu-)
     0.00000000E+00 2 1000023 13 # BR(~mu_R -> ~chi_20 mu-)
     0.00000000E+00 2 1000025 13 # BR(~mu_R -> ~chi_30 mu-)
     0.00000000E+00 2 1000035 13 # BR(~mu_R -> ~chi_40 mu-)
     0.00000000E+00 2 -1000024 14 # BR(~mu_R -> ~chi_1- nu_mu)
     0.00000000E+00 2 -1000037 14 # BR(~mu_R -> ~chi_2- nu_mu)
#
# PDG Width
DECAY 1000015 2.04639734E-02 # stau_1 decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 15 # BR(~tau_1 -> ~chi_10 tau-)
     0.00000000E+00 2 1000023 15 # BR(~tau_1 -> ~chi_20 tau-)
     0.00000000E+00 2 1000025 15 # BR(~tau_1 -> ~chi_30 tau-)
     0.00000000E+00 2 1000035 15 # BR(~tau_1 -> ~chi_40 tau-)
     0.00000000E+00 2 -1000024 16 # BR(~tau_1 -> ~chi_1- nu_tau)
     0.00000000E+00 2 -1000037 16 # BR(~tau_1 -> ~chi_2- nu_tau)
     0.00000000E+00 2 1000016 -37 # BR(~tau_1 -> ~nu_tauL H-)
     0.00000000E+00 2 1000016 -24 # BR(~tau_1 -> ~nu_tauL W-)
#
# PDG Width
DECAY 2000015 1.90912473E-01 # stau_2 decays
# BR NDA ID1 ID2
     9.03120170E-01 2 1000022 15 # BR(~tau_2 -> ~chi_10 tau-)
     0.00000000E+00 2 1000023 15 # BR(~tau_2 -> ~chi_20 tau-)
     0.00000000E+00 2 1000025 15 # BR(~tau_2 -> ~chi_30 tau-)
     0.00000000E+00 2 1000035 15 # BR(~tau_2 -> ~chi_40 tau-)
     0.00000000E+00 2 -1000024 16 # BR(~tau_2 -> ~chi_1- nu_tau)
     0.00000000E+00 2 -1000037 16 # BR(~tau_2 -> ~chi_2- nu_tau)
     0.00000000E+00 2 1000016 -37 # BR(~tau_2 -> ~nu_tauL H-)
     0.00000000E+00 2 1000016 -24 # BR(~tau_2 -> ~nu_tauL W-)
     2.64386248E-02 2 1000015 25 # BR(~tau_2 -> ~tau_1 h)
     0.00000000E+00 2 1000015 35 # BR(~tau_2 -> ~tau_1 H)
     0.00000000E+00 2 1000015 36 # BR(~tau_2 -> ~tau_1 A)
     7.04412048E-02 2 1000015 23 # BR(~tau_2 -> ~tau_1 Z)
#
# PDG Width
DECAY 1000012 1.66724735E-01 # snu_eL decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 12 # BR(~nu_eL -> ~chi_10 nu_e)
     0.00000000E+00 2 1000023 12 # BR(~nu_eL -> ~chi_20 nu_e)
     0.00000000E+00 2 1000025 12 # BR(~nu_eL -> ~chi_30 nu_e)
     0.00000000E+00 2 1000035 12 # BR(~nu_eL -> ~chi_40 nu_e)
     0.00000000E+00 2 1000024 11 # BR(~nu_eL -> ~chi_1+ e-)
     0.00000000E+00 2 1000037 11 # BR(~nu_eL -> ~chi_2+ e-)
#
# PDG Width
DECAY 1000014 1.66724735E-01 # snu_muL decays
# BR NDA ID1 ID2
     1.00000000E+00 2 1000022 14 # BR(~nu_muL -> ~chi_10 nu_mu)
     0.00000000E+00 2 1000023 14 # BR(~nu_muL -> ~chi_20 nu_mu)
     0.00000000E+00 2 1000025 14 # BR(~nu_muL -> ~chi_30 nu_mu)
     0.00000000E+00 2 1000035 14 # BR(~nu_muL -> ~chi_40 nu_mu)
     0.00000000E+00 2 1000024 13 # BR(~nu_muL -> ~chi_1+ mu-)
     0.00000000E+00 2 1000037 13 # BR(~nu_muL -> ~chi_2+ mu-)
#
# PDG Width
DECAY 1000016 1.85992814E-01 # snu_tauL decays
# BR NDA ID1 ID2
     8.88143757E-01 2 1000022 16 # BR(~nu_tauL -> ~chi_10 nu_tau)
     0.00000000E+00 2 1000023 16 # BR(~nu_tauL -> ~chi_20 nu_tau)
     0.00000000E+00 2 1000025 16 # BR(~nu_tauL -> ~chi_30 nu_tau)
     0.00000000E+00 2 1000035 16 # BR(~nu_tauL -> ~chi_40 nu_tau)
     0.00000000E+00 2 1000024 15 # BR(~nu_tauL -> ~chi_1+ tau-)
     0.00000000E+00 2 1000037 15 # BR(~nu_tauL -> ~chi_2+ tau-)
     0.00000000E+00 2 -1000015 -37 # BR(~nu_tauL -> ~tau_1+ H-)
     0.00000000E+00 2 -2000015 -37 # BR(~nu_tauL -> ~tau_2+ H-)
     1.11856243E-01 2 -1000015 -24 # BR(~nu_tauL -> ~tau_1+ W-)
     0.00000000E+00 2 -2000015 -24 # BR(~nu_tauL -> ~tau_2+ W-)
#
# PDG Width
DECAY 1000024 1.70896703E-01 # chargino1+ decays
# BR NDA ID1 ID2
     0.00000000E+00 2 1000002 -1 # BR(~chi_1+ -> ~u_L db)
     0.00000000E+00 2 2000002 -1 # BR(~chi_1+ -> ~u_R db)
     0.00000000E+00 2 -1000001 2 # BR(~chi_1+ -> ~d_L* u )
     0.00000000E+00 2 -2000001 2 # BR(~chi_1+ -> ~d_R* u )
     0.00000000E+00 2 1000004 -3 # BR(~chi_1+ -> ~c_L sb)
     0.00000000E+00 2 2000004 -3 # BR(~chi_1+ -> ~c_R sb)
     0.00000000E+00 2 -1000003 4 # BR(~chi_1+ -> ~s_L* c )
     0.00000000E+00 2 -2000003 4 # BR(~chi_1+ -> ~s_R* c )
     0.00000000E+00 2 1000006 -5 # BR(~chi_1+ -> ~t_1 bb)
     0.00000000E+00 2 2000006 -5 # BR(~chi_1+ -> ~t_2 bb)
     0.00000000E+00 2 -1000005 6 # BR(~chi_1+ -> ~b_1* t )
     0.00000000E+00 2 -2000005 6 # BR(~chi_1+ -> ~b_2* t )
     1.92413334E-01 2 1000012 -11 # BR(~chi_1+ -> ~nu_eL e+ )
     1.92413334E-01 2 1000014 -13 # BR(~chi_1+ -> ~nu_muL mu+ )
     2.05917095E-01 2 1000016 -15 # BR(~chi_1+ -> ~nu_tau1 tau+)
     6.48802856E-02 2 -1000011 12 # BR(~chi_1+ -> ~e_L+ nu_e)
     0.00000000E+00 2 -2000011 12 # BR(~chi_1+ -> ~e_R+ nu_e)
     6.48802856E-02 2 -1000013 14 # BR(~chi_1+ -> ~mu_L+ nu_mu)
     0.00000000E+00 2 -2000013 14 # BR(~chi_1+ -> ~mu_R+ nu_mu)
     1.57987440E-01 2 -1000015 16 # BR(~chi_1+ -> ~tau_1+ nu_tau)
     4.56135081E-02 2 -2000015 16 # BR(~chi_1+ -> ~tau_2+ nu_tau)
     7.58947169E-02 2 1000022 24 # BR(~chi_1+ -> ~chi_10 W+)
     0.00000000E+00 2 1000023 24 # BR(~chi_1+ -> ~chi_20 W+)
     0.00000000E+00 2 1000025 24 # BR(~chi_1+ -> ~chi_30 W+)
     0.00000000E+00 2 1000035 24 # BR(~chi_1+ -> ~chi_40 W+)
     0.00000000E+00 2 1000022 37 # BR(~chi_1+ -> ~chi_10 H+)
     0.00000000E+00 2 1000023 37 # BR(~chi_1+ -> ~chi_20 H+)
     0.00000000E+00 2 1000025 37 # BR(~chi_1+ -> ~chi_30 H+)
     0.00000000E+00 2 1000035 37 # BR(~chi_1+ -> ~chi_40 H+)
#
# PDG Width
DECAY 1000037 3.61118584E+00 # chargino2+ decays
# BR NDA ID1 ID2
     0.00000000E+00 2 1000002 -1 # BR(~chi_2+ -> ~u_L db)
     0.00000000E+00 2 2000002 -1 # BR(~chi_2+ -> ~u_R db)
     0.00000000E+00 2 -1000001 2 # BR(~chi_2+ -> ~d_L* u )
     0.00000000E+00 2 -2000001 2 # BR(~chi_2+ -> ~d_R* u )
     0.00000000E+00 2 1000004 -3 # BR(~chi_2+ -> ~c_L sb)
     0.00000000E+00 2 2000004 -3 # BR(~chi_2+ -> ~c_R sb)
     0.00000000E+00 2 -1000003 4 # BR(~chi_2+ -> ~s_L* c )
     0.00000000E+00 2 -2000003 4 # BR(~chi_2+ -> ~s_R* c )
     0.00000000E+00 2 1000006 -5 # BR(~chi_2+ -> ~t_1 bb)
     0.00000000E+00 2 2000006 -5 # BR(~chi_2+ -> ~t_2 bb)
     0.00000000E+00 2 -1000005 6 # BR(~chi_2+ -> ~b_1* t )
     0.00000000E+00 2 -2000005 6 # BR(~chi_2+ -> ~b_2* t )
     1.48475671E-02 2 1000012 -11 # BR(~chi_2+ -> ~nu_eL e+ )
     1.48475671E-02 2 1000014 -13 # BR(~chi_2+ -> ~nu_muL mu+ )
     2.21343177E-02 2 1000016 -15 # BR(~chi_2+ -> ~nu_tau1 tau+)
     3.34640663E-02 2 -1000011 12 # BR(~chi_2+ -> ~e_L+ nu_e)
     0.00000000E+00 2 -2000011 12 # BR(~chi_2+ -> ~e_R+ nu_e)
     3.34640663E-02 2 -1000013 14 # BR(~chi_2+ -> ~mu_L+ nu_mu)
     0.00000000E+00 2 -2000013 14 # BR(~chi_2+ -> ~mu_R+ nu_mu)
     3.77297597E-03 2 -1000015 16 # BR(~chi_2+ -> ~tau_1+ nu_tau)
     3.75551644E-02 2 -2000015 16 # BR(~chi_2+ -> ~tau_2+ nu_tau)
     2.57205479E-01 2 1000024 23 # BR(~chi_2+ -> ~chi_1+ Z )
     8.37376575E-02 2 1000022 24 # BR(~chi_2+ -> ~chi_10 W+)
     2.87194736E-01 2 1000023 24 # BR(~chi_2+ -> ~chi_20 W+)
     0.00000000E+00 2 1000025 24 # BR(~chi_2+ -> ~chi_30 W+)
     0.00000000E+00 2 1000035 24 # BR(~chi_2+ -> ~chi_40 W+)
     2.11776403E-01 2 1000024 25 # BR(~chi_2+ -> ~chi_1+ h )
     0.00000000E+00 2 1000024 35 # BR(~chi_2+ -> ~chi_1+ H )
     0.00000000E+00 2 1000024 36 # BR(~chi_2+ -> ~chi_1+ A )
     0.00000000E+00 2 1000022 37 # BR(~chi_2+ -> ~chi_10 H+)
     0.00000000E+00 2 1000023 37 # BR(~chi_2+ -> ~chi_20 H+)
     0.00000000E+00 2 1000025 37 # BR(~chi_2+ -> ~chi_30 H+)
     0.00000000E+00 2 1000035 37 # BR(~chi_2+ -> ~chi_40 H+)
#
# PDG Width
DECAY 1000022 0.00000000E+00 # neutralino1 decays
#
# PDG Width
DECAY 1000023 1.73966257E-01 # neutralino2 decays
# BR NDA ID1 ID2
     7.05947975E-03 2 1000022 23 # BR(~chi_20 -> ~chi_10 Z )
     0.00000000E+00 2 1000024 -24 # BR(~chi_20 -> ~chi_1+ W-)
     0.00000000E+00 2 -1000024 24 # BR(~chi_20 -> ~chi_1- W+)
     0.00000000E+00 2 1000037 -24 # BR(~chi_20 -> ~chi_2+ W-)
     0.00000000E+00 2 -1000037 24 # BR(~chi_20 -> ~chi_2- W+)
     6.86900525E-02 2 1000022 25 # BR(~chi_20 -> ~chi_10 h )
     0.00000000E+00 2 1000022 35 # BR(~chi_20 -> ~chi_10 H )
     0.00000000E+00 2 1000022 36 # BR(~chi_20 -> ~chi_10 A )
     0.00000000E+00 2 1000024 -37 # BR(~chi_20 -> ~chi_1+ H-)
     0.00000000E+00 2 -1000024 37 # BR(~chi_20 -> ~chi_1- H+)
     0.00000000E+00 2 1000037 -37 # BR(~chi_20 -> ~chi_2+ H-)
     0.00000000E+00 2 -1000037 37 # BR(~chi_20 -> ~chi_2- H+)
     0.00000000E+00 2 1000002 -2 # BR(~chi_20 -> ~u_L ub)
     0.00000000E+00 2 -1000002 2 # BR(~chi_20 -> ~u_L* u )
     0.00000000E+00 2 2000002 -2 # BR(~chi_20 -> ~u_R ub)
     0.00000000E+00 2 -2000002 2 # BR(~chi_20 -> ~u_R* u )
     0.00000000E+00 2 1000001 -1 # BR(~chi_20 -> ~d_L db)
     0.00000000E+00 2 -1000001 1 # BR(~chi_20 -> ~d_L* d )
     0.00000000E+00 2 2000001 -1 # BR(~chi_20 -> ~d_R db)
     0.00000000E+00 2 -2000001 1 # BR(~chi_20 -> ~d_R* d )
     0.00000000E+00 2 1000004 -4 # BR(~chi_20 -> ~c_L cb)
     0.00000000E+00 2 -1000004 4 # BR(~chi_20 -> ~c_L* c )
     0.00000000E+00 2 2000004 -4 # BR(~chi_20 -> ~c_R cb)
     0.00000000E+00 2 -2000004 4 # BR(~chi_20 -> ~c_R* c )
     0.00000000E+00 2 1000003 -3 # BR(~chi_20 -> ~s_L sb)
     0.00000000E+00 2 -1000003 3 # BR(~chi_20 -> ~s_L* s )
     0.00000000E+00 2 2000003 -3 # BR(~chi_20 -> ~s_R sb)
     0.00000000E+00 2 -2000003 3 # BR(~chi_20 -> ~s_R* s )
     0.00000000E+00 2 1000006 -6 # BR(~chi_20 -> ~t_1 tb)
     0.00000000E+00 2 -1000006 6 # BR(~chi_20 -> ~t_1* t )
     0.00000000E+00 2 2000006 -6 # BR(~chi_20 -> ~t_2 tb)
     0.00000000E+00 2 -2000006 6 # BR(~chi_20 -> ~t_2* t )
     0.00000000E+00 2 1000005 -5 # BR(~chi_20 -> ~b_1 bb)
     0.00000000E+00 2 -1000005 5 # BR(~chi_20 -> ~b_1* b )
     0.00000000E+00 2 2000005 -5 # BR(~chi_20 -> ~b_2 bb)
     0.00000000E+00 2 -2000005 5 # BR(~chi_20 -> ~b_2* b )
     3.60268699E-02 2 1000011 -11 # BR(~chi_20 -> ~e_L- e+)
     3.60268699E-02 2 -1000011 11 # BR(~chi_20 -> ~e_L+ e-)
     5.02371662E-03 2 2000011 -11 # BR(~chi_20 -> ~e_R- e+)
     5.02371662E-03 2 -2000011 11 # BR(~chi_20 -> ~e_R+ e-)
     3.60268699E-02 2 1000013 -13 # BR(~chi_20 -> ~mu_L- mu+)
     3.60268699E-02 2 -1000013 13 # BR(~chi_20 -> ~mu_L+ mu-)
     5.02371662E-03 2 2000013 -13 # BR(~chi_20 -> ~mu_R- mu+)
     5.02371662E-03 2 -2000013 13 # BR(~chi_20 -> ~mu_R+ mu-)
     8.61962122E-02 2 1000015 -15 # BR(~chi_20 -> ~tau_1- tau+)
     8.61962122E-02 2 -1000015 15 # BR(~chi_20 -> ~tau_1+ tau-)
     2.57872231E-02 2 2000015 -15 # BR(~chi_20 -> ~tau_2- tau+)
     2.57872231E-02 2 -2000015 15 # BR(~chi_20 -> ~tau_2+ tau-)
     8.75536874E-02 2 1000012 -12 # BR(~chi_20 -> ~nu_eL nu_eb)
     8.75536874E-02 2 -1000012 12 # BR(~chi_20 -> ~nu_eL* nu_e )
     8.75536874E-02 2 1000014 -14 # BR(~chi_20 -> ~nu_muL nu_mub)
     8.75536874E-02 2 -1000014 14 # BR(~chi_20 -> ~nu_muL* nu_mu )
     9.29332508E-02 2 1000016 -16 # BR(~chi_20 -> ~nu_tau1 nu_taub)
     9.29332508E-02 2 -1000016 16 # BR(~chi_20 -> ~nu_tau1* nu_tau )
#
# PDG Width
DECAY 1000025 3.02317232E+00 # neutralino3 decays
# BR NDA ID1 ID2
     1.06152539E-01 2 1000022 23 # BR(~chi_30 -> ~chi_10 Z )
     2.45156088E-01 2 1000023 23 # BR(~chi_30 -> ~chi_20 Z )
     2.93768499E-01 2 1000024 -24 # BR(~chi_30 -> ~chi_1+ W-)
     2.93768499E-01 2 -1000024 24 # BR(~chi_30 -> ~chi_1- W+)
     0.00000000E+00 2 1000037 -24 # BR(~chi_30 -> ~chi_2+ W-)
     0.00000000E+00 2 -1000037 24 # BR(~chi_30 -> ~chi_2- W+)
     1.78191616E-02 2 1000022 25 # BR(~chi_30 -> ~chi_10 h )
     0.00000000E+00 2 1000022 35 # BR(~chi_30 -> ~chi_10 H )
     0.00000000E+00 2 1000022 36 # BR(~chi_30 -> ~chi_10 A )
     9.82820997E-03 2 1000023 25 # BR(~chi_30 -> ~chi_20 h )
     0.00000000E+00 2 1000023 35 # BR(~chi_30 -> ~chi_20 H )
     0.00000000E+00 2 1000023 36 # BR(~chi_30 -> ~chi_20 A )
     0.00000000E+00 2 1000024 -37 # BR(~chi_30 -> ~chi_1+ H-)
     0.00000000E+00 2 -1000024 37 # BR(~chi_30 -> ~chi_1- H+)
     0.00000000E+00 2 1000037 -37 # BR(~chi_30 -> ~chi_2+ H-)
     0.00000000E+00 2 -1000037 37 # BR(~chi_30 -> ~chi_2- H+)
     0.00000000E+00 2 1000002 -2 # BR(~chi_30 -> ~u_L ub)
     0.00000000E+00 2 -1000002 2 # BR(~chi_30 -> ~u_L* u )
     0.00000000E+00 2 2000002 -2 # BR(~chi_30 -> ~u_R ub)
     0.00000000E+00 2 -2000002 2 # BR(~chi_30 -> ~u_R* u )
     0.00000000E+00 2 1000001 -1 # BR(~chi_30 -> ~d_L db)
     0.00000000E+00 2 -1000001 1 # BR(~chi_30 -> ~d_L* d )
     0.00000000E+00 2 2000001 -1 # BR(~chi_30 -> ~d_R db)
     0.00000000E+00 2 -2000001 1 # BR(~chi_30 -> ~d_R* d )
     0.00000000E+00 2 1000004 -4 # BR(~chi_30 -> ~c_L cb)
     0.00000000E+00 2 -1000004 4 # BR(~chi_30 -> ~c_L* c )
     0.00000000E+00 2 2000004 -4 # BR(~chi_30 -> ~c_R cb)
     0.00000000E+00 2 -2000004 4 # BR(~chi_30 -> ~c_R* c )
     0.00000000E+00 2 1000003 -3 # BR(~chi_30 -> ~s_L sb)
     0.00000000E+00 2 -1000003 3 # BR(~chi_30 -> ~s_L* s )
     0.00000000E+00 2 2000003 -3 # BR(~chi_30 -> ~s_R sb)
     0.00000000E+00 2 -2000003 3 # BR(~chi_30 -> ~s_R* s )
     0.00000000E+00 2 1000006 -6 # BR(~chi_30 -> ~t_1 tb)
     0.00000000E+00 2 -1000006 6 # BR(~chi_30 -> ~t_1* t )
     0.00000000E+00 2 2000006 -6 # BR(~chi_30 -> ~t_2 tb)
     0.00000000E+00 2 -2000006 6 # BR(~chi_30 -> ~t_2* t )
     0.00000000E+00 2 1000005 -5 # BR(~chi_30 -> ~b_1 bb)
     0.00000000E+00 2 -1000005 5 # BR(~chi_30 -> ~b_1* b )
     0.00000000E+00 2 2000005 -5 # BR(~chi_30 -> ~b_2 bb)
     0.00000000E+00 2 -2000005 5 # BR(~chi_30 -> ~b_2* b )
     2.39944118E-04 2 1000011 -11 # BR(~chi_30 -> ~e_L- e+)
     2.39944118E-04 2 -1000011 11 # BR(~chi_30 -> ~e_L+ e-)
     5.64261472E-04 2 2000011 -11 # BR(~chi_30 -> ~e_R- e+)
     5.64261472E-04 2 -2000011 11 # BR(~chi_30 -> ~e_R+ e-)
     2.39944118E-04 2 1000013 -13 # BR(~chi_30 -> ~mu_L- mu+)
     2.39944118E-04 2 -1000013 13 # BR(~chi_30 -> ~mu_L+ mu-)
     5.64261472E-04 2 2000013 -13 # BR(~chi_30 -> ~mu_R- mu+)
     5.64261472E-04 2 -2000013 13 # BR(~chi_30 -> ~mu_R+ mu-)
     6.12208283E-03 2 1000015 -15 # BR(~chi_30 -> ~tau_1- tau+)
     6.12208283E-03 2 -1000015 15 # BR(~chi_30 -> ~tau_1+ tau-)
     5.23755695E-03 2 2000015 -15 # BR(~chi_30 -> ~tau_2- tau+)
     5.23755695E-03 2 -2000015 15 # BR(~chi_30 -> ~tau_2+ tau-)
     1.25987143E-03 2 1000012 -12 # BR(~chi_30 -> ~nu_eL nu_eb)
     1.25987143E-03 2 -1000012 12 # BR(~chi_30 -> ~nu_eL* nu_e )
     1.25987143E-03 2 1000014 -14 # BR(~chi_30 -> ~nu_muL nu_mub)
     1.25987143E-03 2 -1000014 14 # BR(~chi_30 -> ~nu_muL* nu_mu )
     1.26570780E-03 2 1000016 -16 # BR(~chi_30 -> ~nu_tau1 nu_taub)
     1.26570780E-03 2 -1000016 16 # BR(~chi_30 -> ~nu_tau1* nu_tau )
#
# PDG Width
DECAY 1000035 3.71536496E+00 # neutralino4 decays
# BR NDA ID1 ID2
     1.73305022E-02 2 1000022 23 # BR(~chi_40 -> ~chi_10 Z )
     1.33793472E-02 2 1000023 23 # BR(~chi_40 -> ~chi_20 Z )
     0.00000000E+00 2 1000025 23 # BR(~chi_40 -> ~chi_30 Z )
     2.68888255E-01 2 1000024 -24 # BR(~chi_40 -> ~chi_1+ W-)
     2.68888255E-01 2 -1000024 24 # BR(~chi_40 -> ~chi_1- W+)
     0.00000000E+00 2 1000037 -24 # BR(~chi_40 -> ~chi_2+ W-)
     0.00000000E+00 2 -1000037 24 # BR(~chi_40 -> ~chi_2- W+)
     7.54771057E-02 2 1000022 25 # BR(~chi_40 -> ~chi_10 h )
     0.00000000E+00 2 1000022 35 # BR(~chi_40 -> ~chi_10 H )
     0.00000000E+00 2 1000022 36 # BR(~chi_40 -> ~chi_10 A )
     1.86706122E-01 2 1000023 25 # BR(~chi_40 -> ~chi_20 h )
     0.00000000E+00 2 1000023 35 # BR(~chi_40 -> ~chi_20 H )
     0.00000000E+00 2 1000023 36 # BR(~chi_40 -> ~chi_20 A )
     0.00000000E+00 2 1000025 25 # BR(~chi_40 -> ~chi_30 h )
     0.00000000E+00 2 1000025 35 # BR(~chi_40 -> ~chi_30 H )
     0.00000000E+00 2 1000025 36 # BR(~chi_40 -> ~chi_30 A )
     0.00000000E+00 2 1000024 -37 # BR(~chi_40 -> ~chi_1+ H-)
     0.00000000E+00 2 -1000024 37 # BR(~chi_40 -> ~chi_1- H+)
     0.00000000E+00 2 1000037 -37 # BR(~chi_40 -> ~chi_2+ H-)
     0.00000000E+00 2 -1000037 37 # BR(~chi_40 -> ~chi_2- H+)
     0.00000000E+00 2 1000002 -2 # BR(~chi_40 -> ~u_L ub)
     0.00000000E+00 2 -1000002 2 # BR(~chi_40 -> ~u_L* u )
     0.00000000E+00 2 2000002 -2 # BR(~chi_40 -> ~u_R ub)
     0.00000000E+00 2 -2000002 2 # BR(~chi_40 -> ~u_R* u )
     0.00000000E+00 2 1000001 -1 # BR(~chi_40 -> ~d_L db)
     0.00000000E+00 2 -1000001 1 # BR(~chi_40 -> ~d_L* d )
     0.00000000E+00 2 2000001 -1 # BR(~chi_40 -> ~d_R db)
     0.00000000E+00 2 -2000001 1 # BR(~chi_40 -> ~d_R* d )
     0.00000000E+00 2 1000004 -4 # BR(~chi_40 -> ~c_L cb)
     0.00000000E+00 2 -1000004 4 # BR(~chi_40 -> ~c_L* c )
     0.00000000E+00 2 2000004 -4 # BR(~chi_40 -> ~c_R cb)
     0.00000000E+00 2 -2000004 4 # BR(~chi_40 -> ~c_R* c )
     0.00000000E+00 2 1000003 -3 # BR(~chi_40 -> ~s_L sb)
     0.00000000E+00 2 -1000003 3 # BR(~chi_40 -> ~s_L* s )
     0.00000000E+00 2 2000003 -3 # BR(~chi_40 -> ~s_R sb)
     0.00000000E+00 2 -2000003 3 # BR(~chi_40 -> ~s_R* s )
     0.00000000E+00 2 1000006 -6 # BR(~chi_40 -> ~t_1 tb)
     0.00000000E+00 2 -1000006 6 # BR(~chi_40 -> ~t_1* t )
     0.00000000E+00 2 2000006 -6 # BR(~chi_40 -> ~t_2 tb)
     0.00000000E+00 2 -2000006 6 # BR(~chi_40 -> ~t_2* t )
     0.00000000E+00 2 1000005 -5 # BR(~chi_40 -> ~b_1 bb)
     0.00000000E+00 2 -1000005 5 # BR(~chi_40 -> ~b_1* b )
     0.00000000E+00 2 2000005 -5 # BR(~chi_40 -> ~b_2 bb)
     0.00000000E+00 2 -2000005 5 # BR(~chi_40 -> ~b_2* b )
     7.29065323E-03 2 1000011 -11 # BR(~chi_40 -> ~e_L- e+)
     7.29065323E-03 2 -1000011 11 # BR(~chi_40 -> ~e_L+ e-)
     2.27247878E-03 2 2000011 -11 # BR(~chi_40 -> ~e_R- e+)
     2.27247878E-03 2 -2000011 11 # BR(~chi_40 -> ~e_R+ e-)
     7.29065323E-03 2 1000013 -13 # BR(~chi_40 -> ~mu_L- mu+)
     7.29065323E-03 2 -1000013 13 # BR(~chi_40 -> ~mu_L+ mu-)
     2.27247878E-03 2 2000013 -13 # BR(~chi_40 -> ~mu_R- mu+)
     2.27247878E-03 2 -2000013 13 # BR(~chi_40 -> ~mu_R+ mu-)
     3.87853219E-03 2 1000015 -15 # BR(~chi_40 -> ~tau_1- tau+)
     3.87853219E-03 2 -1000015 15 # BR(~chi_40 -> ~tau_1+ tau-)
     1.27718708E-02 2 2000015 -15 # BR(~chi_40 -> ~tau_2- tau+)
     1.27718708E-02 2 -2000015 15 # BR(~chi_40 -> ~tau_2+ tau-)
     1.62730161E-02 2 1000012 -12 # BR(~chi_40 -> ~nu_eL nu_eb)
     1.62730161E-02 2 -1000012 12 # BR(~chi_40 -> ~nu_eL* nu_e )
     1.62730161E-02 2 1000014 -14 # BR(~chi_40 -> ~nu_muL nu_mub)
     1.62730161E-02 2 -1000014 14 # BR(~chi_40 -> ~nu_muL* nu_mu )
     1.63425076E-02 2 1000016 -16 # BR(~chi_40 -> ~nu_tau1 nu_taub)
     1.63425076E-02 2 -1000016 16 # BR(~chi_40 -> ~nu_tau1* nu_tau )

#*********************************************************************
# MadGraph/MadEvent *
# http://madgraph.hep.uiuc.edu *
# *
# run_card.dat *
# *
# This file is used to set the parameters of the run. *
# *
# Some notation/conventions: *
# *
# Lines starting with a '# ' are info or comments *
# *
# mind the format: value = variable ! comment *
#*********************************************************************
#
#*******************
# Running parameters
#*******************
#
#*********************************************************************
# Tag name for the run (one word) *
#*********************************************************************
  tag_1 = run_tag ! name of the run
#*********************************************************************
# Run to generate the grid pack *
#*********************************************************************
  .false. = gridpack !True = setting up the grid pack
#*********************************************************************
# Number of events and rnd seed *
# Warning: Do not generate more than 1M events in a single run *
# If you want to run Pythia, avoid more than 50k events in a run. *
#*********************************************************************
  10000 = nevents ! Number of unweighted events requested
      0 = iseed ! rnd seed (0=assigned automatically=default))
#*********************************************************************
# Collider type and energy *
#*********************************************************************
        1 = lpp1 ! beam 1 type (0=NO PDF)
        1 = lpp2 ! beam 2 type (0=NO PDF)
     7000 = ebeam1 ! beam 1 energy in GeV
     7000 = ebeam2 ! beam 2 energy in GeV
#*********************************************************************
# Beam polarization from -100 (left-handed) to 100 (right-handed) *
#*********************************************************************
        0 = polbeam1 ! beam polarization for beam 1
        0 = polbeam2 ! beam polarization for beam 2
#*********************************************************************
# PDF CHOICE: this automatically fixes also alpha_s and its evol. *
#*********************************************************************
 'cteq6l1' = pdlabel ! PDF set
#*********************************************************************
# Renormalization and factorization scales *
#*********************************************************************
 F = fixed_ren_scale ! if .true. use fixed ren scale
 F = fixed_fac_scale ! if .true. use fixed fac scale
 91.1880 = scale ! fixed ren scale
 91.1880 = dsqrt_q2fact1 ! fixed fact scale for pdf1
 91.1880 = dsqrt_q2fact2 ! fixed fact scale for pdf2
 1 = scalefact ! scale factor for event-by-event scales
#*********************************************************************
# Matching - Warning! ickkw > 1 is still beta
#*********************************************************************
 0 = ickkw ! 0 no matching, 1 MLM, 2 CKKW matching
 1 = highestmult ! for ickkw=2, highest mult group
 1 = ktscheme ! for ickkw=1, 1 Durham kT, 2 Pythia pTE
 1 = alpsfact ! scale factor for QCD emission vx
 F = chcluster ! cluster only according to channel diag
 T = pdfwgt ! for ickkw=1, perform pdf reweighting
#*********************************************************************
# Automatic ptj and mjj cuts if xqcut > 0
# (turn off for VBF and single top processes)
#**********************************************************
   T = auto_ptj_mjj ! Automatic setting of ptj and mjj
#**********************************************************
#
#**********************************
# BW cutoff (M+/-bwcutoff*Gamma)
#**********************************
  15 = bwcutoff ! (M+/-bwcutoff*Gamma)
#**********************************************************
# Apply pt/E/eta/dr/mij cuts on decay products or not
# (note that etmiss/ptll/ptheavy/ht/sorted cuts always apply)
#**********************************************************
   T = cut_decays ! Cut decay products
#*************************************************************
# Number of helicities to sum per event (0 = all helicities)
# 0 gives more stable result, but longer run time (needed for
# long decay chains e.g.).
# Use >=2 if most helicities contribute, e.g. pure QCD.
#*************************************************************
   0 = nhel ! Number of helicities used per event
#*******************
# Standard Cuts
#*******************
#
#*********************************************************************
# Minimum and maximum pt's *
#*********************************************************************
 20 = ptj ! minimum pt for the jets
  0 = ptb ! minimum pt for the b
 10 = pta ! minimum pt for the photons
 10 = ptl ! minimum pt for the charged leptons
  0 = misset ! minimum missing Et (sum of neutrino's momenta)
  0 = ptheavy ! minimum pt for one heavy final state
 1.0 = ptonium ! minimum pt for the quarkonium states
 1d5 = ptjmax ! maximum pt for the jets
 1d5 = ptbmax ! maximum pt for the b
 1d5 = ptamax ! maximum pt for the photons
 1d5 = ptlmax ! maximum pt for the charged leptons
 1d5 = missetmax ! maximum missing Et (sum of neutrino's momenta)
#*********************************************************************
# Minimum and maximum E's (in the lab frame) *
#*********************************************************************
  0 = ej ! minimum E for the jets
  0 = eb ! minimum E for the b
  0 = ea ! minimum E for the photons
  0 = el ! minimum E for the charged leptons
 1d5 = ejmax ! maximum E for the jets
 1d5 = ebmax ! maximum E for the b
 1d5 = eamax ! maximum E for the photons
 1d5 = elmax ! maximum E for the charged leptons
#*********************************************************************
# Maximum and minimum rapidity *
#*********************************************************************
   5 = etaj ! max rap for the jets
 1d2 = etab ! max rap for the b
 2.5 = etaa ! max rap for the photons
 2.5 = etal ! max rap for the charged leptons
 0.6 = etaonium ! max rap for the quarkonium states
 0d0 = etajmin ! min rap for the jets
 0d0 = etabmin ! min rap for the b
 0d0 = etaamin ! min rap for the photons
 0d0 = etalmin ! main rap for the charged leptons
#*********************************************************************
# Minimum and maximum DeltaR distance *
#*********************************************************************
 0.4 = drjj ! min distance between jets
 0 = drbb ! min distance between b's
 0.4 = drll ! min distance between leptons
 0.4 = draa ! min distance between gammas
 0 = drbj ! min distance between b and jet
 0.4 = draj ! min distance between gamma and jet
 0.4 = drjl ! min distance between jet and lepton
 0 = drab ! min distance between gamma and b
 0 = drbl ! min distance between b and lepton
 0.4 = dral ! min distance between gamma and lepton
 1d2 = drjjmax ! max distance between jets
 1d2 = drbbmax ! max distance between b's
 1d2 = drllmax ! max distance between leptons
 1d2 = draamax ! max distance between gammas
 1d2 = drbjmax ! max distance between b and jet
 1d2 = drajmax ! max distance between gamma and jet
 1d2 = drjlmax ! max distance between jet and lepton
 1d2 = drabmax ! max distance between gamma and b
 1d2 = drblmax ! max distance between b and lepton
 1d2 = dralmax ! maxdistance between gamma and lepton
#*********************************************************************
# Minimum and maximum invariant mass for pairs *
#*********************************************************************
 0 = mmjj ! min invariant mass of a jet pair
 0 = mmbb ! min invariant mass of a b pair
 0 = mmaa ! min invariant mass of gamma gamma pair
 0 = mmll ! min invariant mass of l+l- (same flavour) lepton pair
 1d5 = mmjjmax ! max invariant mass of a jet pair
 1d5 = mmbbmax ! max invariant mass of a b pair
 1d5 = mmaamax ! max invariant mass of gamma gamma pair
 1d5 = mmllmax ! max invariant mass of l+l- (same flavour) lepton pair
#*********************************************************************
# Minimum and maximum invariant mass for all letpons *
#*********************************************************************
 0 = mmnl ! min invariant mass for all letpons (l+- and vl)
 1d5 = mmnlmax ! max invariant mass for all letpons (l+- and vl)
#*********************************************************************
# Minimum and maximum pt for 4-momenta sum of leptons *
#*********************************************************************
 0 = ptllmin ! Minimum pt for 4-momenta sum of leptons(l and vl)
 1d5 = ptllmax ! Maximum pt for 4-momenta sum of leptons(l and vl)
#*********************************************************************
# Inclusive cuts *
#*********************************************************************
 0 = xptj ! minimum pt for at least one jet
 0 = xptb ! minimum pt for at least one b
 0 = xpta ! minimum pt for at least one photon
 0 = xptl ! minimum pt for at least one charged lepton
#*********************************************************************
# Control the pt's of the jets sorted by pt *
#*********************************************************************
 0 = ptj1min ! minimum pt for the leading jet in pt
 0 = ptj2min ! minimum pt for the second jet in pt
 0 = ptj3min ! minimum pt for the third jet in pt
 0 = ptj4min ! minimum pt for the fourth jet in pt
 1d5 = ptj1max ! maximum pt for the leading jet in pt
 1d5 = ptj2max ! maximum pt for the second jet in pt
 1d5 = ptj3max ! maximum pt for the third jet in pt
 1d5 = ptj4max ! maximum pt for the fourth jet in pt
 0 = cutuse ! reject event if fails any (0) / all (1) jet pt cuts
#*********************************************************************
# Control the pt's of leptons sorted by pt *
#*********************************************************************
 0 = ptl1min ! minimum pt for the leading lepton in pt
 0 = ptl2min ! minimum pt for the second lepton in pt
 0 = ptl3min ! minimum pt for the third lepton in pt
 0 = ptl4min ! minimum pt for the fourth lepton in pt
 1d5 = ptl1max ! maximum pt for the leading lepton in pt
 1d5 = ptl2max ! maximum pt for the second lepton in pt
 1d5 = ptl3max ! maximum pt for the third lepton in pt
 1d5 = ptl4max ! maximum pt for the fourth lepton in pt
#*********************************************************************
# Control the Ht(k)=Sum of k leading jets *
#*********************************************************************
 0 = htjmin ! minimum jet HT=Sum(jet pt)
 1d5 = htjmax ! maximum jet HT=Sum(jet pt)
 0 = ihtmin !inclusive Ht for all partons (including b)
 1d5 = ihtmax !inclusive Ht for all partons (including b)
 0 = ht2min ! minimum Ht for the two leading jets
 0 = ht3min ! minimum Ht for the three leading jets
 0 = ht4min ! minimum Ht for the four leading jets
 1d5 = ht2max ! maximum Ht for the two leading jets
 1d5 = ht3max ! maximum Ht for the three leading jets
 1d5 = ht4max ! maximum Ht for the four leading jets
#*********************************************************************
# WBF cuts *
#*********************************************************************
 0 = xetamin ! minimum rapidity for two jets in the WBF case
 0 = deltaeta ! minimum rapidity for two jets in the WBF case
#*********************************************************************
# maximal pdg code for quark to be considered as a light jet *
# (otherwise b cuts are applied) *
#*********************************************************************
 4 = maxjetflavor ! Maximum jet pdg code
#*********************************************************************
# Jet measure cuts *
#*********************************************************************
 0 = xqcut ! minimum kt jet measure between partons
#*********************************************************************

 Process in group number 0
 Warning: parameter xmtcentral not found
          setting it to default value 0.0000000000000000
 Warning: parameter d not found
          setting it to default value 1.0000000000000000
 Warning: parameter fixed_couplings not found
          setting it to default value T
 Warning: parameter lhaid not found
          setting it to default value 10042
 A PDF is used, so alpha_s(MZ) is going to be modified
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 Old value of alpha_s from param_card: 0.11720000000000001
 New value of alpha_s from PDF cteq6l1: 0.13000000000000000
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 *****************************************************
 * MadGraph/MadEvent *
 * -------------------------------- *
 * http://madgraph.hep.uiuc.edu *
 * http://madgraph.phys.ucl.ac.be *
 * http://madgraph.roma2.infn.it *
 * -------------------------------- *
 * *
 * PARAMETER AND COUPLING VALUES *
 * *
 *****************************************************

  External Params
  ---------------------------------

 RRd33 = 0.95267219999999997
 RRd36 = 0.30399939999999998
 RRd63 = -0.30399939999999998
 RRd66 = 0.95267219999999997
 alp = -0.10842920000000000
 RMUH = 521.69669999999996
 tb = 9.6856249999999999
 MA2 = 359989.90000000002
 MB = 4.8788429999999998
 MT = 175.00000000000000
 Mta = 1.7769999999999999
 MZ = 91.187600000000003
 MW = 79.828559999999996
 MH01 = 114.16300000000000
 MH02 = 589.05269999999996
 MA0 = 588.69259999999997
 MH = 594.47299999999996
 Msd1 = 860.02449999999999
 Msu1 = 856.43930000000000
 Msd3 = 791.87090000000001
 Msu3 = 647.82380000000001
 Msl1 = 288.14800000000002
 Msn1 = 277.42230000000001
 Msl3 = 175.67509999999999
 Msn3 = 276.58589999999998
 Mgo = 933.50779999999997
 Mneu1 = 161.66679999999999
 Mneu2 = 303.76470000000000
 Mch1 = 303.51630000000000
 Mneu3 = -526.52580000000000
 Mneu4 = 542.39639999999997
 Mch2 = 542.19770000000005
 Msd4 = 825.40949999999998
 Msu4 = 827.76210000000003
 Msd6 = 824.27639999999997
 Msu6 = 841.98270000000002
 Msl4 = 183.11400000000000
 Msl6 = 290.33830000000000
 RmD211 = 634198.30000000005
 RmD233 = 627616.30000000005
 RmE211 = 31614.790000000001
 RmE233 = 30669.820000000000
 RmL211 = 80954.169999999998
 RmL233 = 80490.830000000002
 RMx1 = 165.83799999999999
 RMx2 = 309.46249999999998
 RMx3 = 905.28769999999997
 mHd2 = 69921.110000000001
 mHu2 = -265754.59999999998
 RmQ211 = 688882.50000000000
 RmQ233 = 583070.19999999995
 RmU211 = 639933.00000000000
 RmU233 = 429837.29999999999
 RNN11 = 0.99387870000000000
 RNN12 = -2.52624000000000008E-002
 RNN13 = 9.98605199999999943E-002
 RNN14 = -3.99349800000000019E-002
 RNN21 = 5.27653400000000009E-002
 RNN22 = 0.96238789999999996
 RNN23 = -0.22386909999999999
 RNN24 = 0.14459569999999999
 RNN31 = 4.05505099999999979E-002
 RNN32 = -5.90286900000000017E-002
 RNN33 = -0.70191400000000004
 RNN34 = -0.70865219999999995
 RNN41 = 8.81849799999999961E-002
 RNN42 = -0.26398280000000002
 RNN43 = -0.66875050000000003
 RNN44 = 0.68942680000000001
 RRl33 = 0.17978849999999999
 RRl36 = 0.98370530000000000
 RRl63 = -0.98370530000000000
 RRl66 = 0.17978849999999999
 aEWM1 = 127.93400000000000
 aS = 0.11720000000000001
 Rtd33 = -146.36550000000000
 Rte33 = -24.188949999999998
 Rtu33 = -622.48500000000001
 RUU11 = -0.94684060000000003
 RUU12 = 0.32170320000000002
 RUU21 = 0.32170320000000002
 RUU22 = 0.94684060000000003
 RRu33 = 0.46677930000000001
 RRu36 = 0.88437390000000005
 RRu63 = -0.88437390000000005
 RRu66 = 0.46677930000000001
 RVV11 = -0.97806579999999999
 RVV12 = 0.20829610000000001
 RVV21 = 0.20829610000000001
 RVV22 = 0.97806579999999999
 Ryd33 = 0.13670679999999999
 Rye33 = 0.10055890000000001
 Ryu33 = 0.87793080000000001
 WT = 1.5619810000000001
 WZ = 2.4118010000000001
 WW = 2.0031300000000001
 WH01 = 1.85789799999999997E-003
 WH02 = 0.94099940000000004
 WA0 = 0.99814879999999995
 WH = 0.92459210000000003
 Wsd1 = 7.9679599999999997
 Wsu1 = 8.1037230000000005
 Wsd3 = 9.5981970000000008
 Wsu3 = 3.7110289999999999
 Wsl1 = 0.15505089999999999
 Wsn1 = 0.16672470000000000
 Wsl3 = 2.04639700000000015E-002
 Wsn3 = 0.18599280000000001
 Wgo = 11.095829999999999
 Wneu2 = 0.17396629999999999
 Wch1 = 0.17089670000000001
 Wneu3 = -3.0231720000000002
 Wneu4 = 3.7153649999999998
 Wch2 = 3.6111860000000000
 Wsd4 = 0.42963659999999998
 Wsu4 = 1.7242770000000001
 Wsd6 = 1.7704329999999999
 Wsu6 = 12.115320000000001
 Wsl4 = 4.48605099999999993E-002
 Wsl6 = 0.19091250000000001
  Internal Params
  ---------------------------------

 Wsu2 = 8.1037230000000005
 Wsl2 = 0.15505089999999999
 Msu5 = 827.76210000000003
 Msu2 = 856.43930000000000
 RmD222 = 634198.30000000005
 Msl2 = 288.14800000000002
 Msl5 = 183.11400000000000
 RmL222 = 80954.169999999998
 Msd2 = 860.02449999999999
 RmQ222 = 688882.50000000000
 Wsl5 = 4.48605099999999993E-002
 Wsd5 = 0.42963659999999998
 Msd5 = 825.40949999999998
 RmU222 = 639933.00000000000
 Msn2 = 277.42230000000001
 RmE222 = 31614.790000000001
 Wsd2 = 7.9679599999999997
 Wsu5 = 1.7242770000000001
 Wsn2 = 0.16672470000000000
 I2522 = 1.0000000000000000
 I6322 = 1.0000000000000000
 I5322 = 1.0000000000000000
 I9422 = 1.0000000000000000
 I5111 = 1.0000000000000000
 I9622 = 1.0000000000000000
 conjg__Rl22 = 1.0000000000000000
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 I8333 = ( 4.15587851759199947E-002, 0.0000000000000000 )
 I8336 = ( 0.13023676791095998 , 0.0000000000000000 )
 I8433 = ( 0.83638026668375998 , 0.0000000000000000 )
 I8436 = (-0.26689043644152000 , 0.0000000000000000 )
 I8533 = ( 0.17978849999999999 , 0.0000000000000000 )
 I8536 = (-0.98370530000000000 , 0.0000000000000000 )
 I8633 = ( 9.89203228921700095E-002, 0.0000000000000000 )
 I8636 = ( 1.80793337926500007E-002, 0.0000000000000000 )
 I8833 = ( 0.10055890000000001 , 0.0000000000000000 )
 I8933 = ( 0.46677930000000001 , 0.0000000000000000 )
 I8936 = (-0.88437390000000005 , 0.0000000000000000 )
 I933 = ( 4.15587851759199947E-002, 0.0000000000000000 )
 I936 = ( 0.13023676791095998 , 0.0000000000000000 )
 I9033 = ( 0.77641908552612005 , 0.0000000000000000 )
 I9036 = ( 0.40979992427244000 , 0.0000000000000000 )
 I9133 = ( 6.38119044092399917E-002, 0.0000000000000000 )
 I9136 = (-0.12089992587251999 , 0.0000000000000000 )
 I9233 = ( 0.44468766264546000 , 0.0000000000000000 )
 I9236 = (-0.84251842893558004 , 0.0000000000000000 )
 I9263 = (-0.14190062713241999 , 0.0000000000000000 )
 I9266 = ( 0.26884913497565999 , 0.0000000000000000 )
 I9333 = ( 0.17978849999999999 , 0.0000000000000000 )
 I9336 = (-0.98370530000000000 , 0.0000000000000000 )
 I9433 = ( 0.44468766264546000 , 0.0000000000000000 )
 I9436 = (-0.84251842893558004 , 0.0000000000000000 )
 I9463 = (-0.14190062713241999 , 0.0000000000000000 )
 I9466 = ( 0.26884913497565999 , 0.0000000000000000 )
 I9533 = ( 0.17978849999999999 , 0.0000000000000000 )
 I9536 = (-0.98370530000000000 , 0.0000000000000000 )
 I9633 = ( 0.90758432065283989 , 0.0000000000000000 )
 I9636 = (-0.28961177719667996 , 0.0000000000000000 )
 I9663 = (-0.28961177719667996 , 0.0000000000000000 )
 I9666 = ( 9.24156352003599885E-002, 0.0000000000000000 )
 I9733 = ( 3.23239047322499973E-002, 0.0000000000000000 )
 I9736 = (-0.17685890032905000 , 0.0000000000000000 )
 I9763 = (-0.17685890032905000 , 0.0000000000000000 )
 I9766 = ( 0.96767611724809000 , 0.0000000000000000 )
 I9833 = ( 0.21788291490849002 , 0.0000000000000000 )
 I9836 = (-0.41280742998027004 , 0.0000000000000000 )
 I9863 = (-0.41280742998027004 , 0.0000000000000000 )
 I9866 = ( 0.78211719500121013 , 0.0000000000000000 )
 I9933 = ( 0.10055890000000001 , 0.0000000000000000 )
 complexi = ( 0.0000000000000000 , 1.0000000000000000 )
 sqrt__2 = 1.4142135623730951
 sw__exp__2 = 0.23361848779386141
 conjg__NN11 = ( 0.99387870000000000 , 0.0000000000000000 )
 conjg__NN12 = (-2.52624000000000008E-002, 0.0000000000000000 )
 conjg__NN13 = ( 9.98605199999999943E-002, 0.0000000000000000 )
 conjg__NN14 = (-3.99349800000000019E-002, 0.0000000000000000 )
 conjg__NN21 = ( 5.27653400000000009E-002, 0.0000000000000000 )
 conjg__NN22 = ( 0.96238789999999996 , 0.0000000000000000 )
 conjg__NN23 = (-0.22386909999999999 , 0.0000000000000000 )
 conjg__NN24 = ( 0.14459569999999999 , 0.0000000000000000 )
 conjg__NN31 = ( 4.05505099999999979E-002, 0.0000000000000000 )
 conjg__NN32 = (-5.90286900000000017E-002, 0.0000000000000000 )
 conjg__NN33 = (-0.70191400000000004 , 0.0000000000000000 )
 conjg__NN34 = (-0.70865219999999995 , 0.0000000000000000 )
 conjg__NN41 = ( 8.81849799999999961E-002, 0.0000000000000000 )
 conjg__NN42 = (-0.26398280000000002 , 0.0000000000000000 )
 conjg__NN43 = (-0.66875050000000003 , 0.0000000000000000 )
 conjg__NN44 = ( 0.68942680000000001 , 0.0000000000000000 )
 conjg__UU11 = (-0.94684060000000003 , 0.0000000000000000 )
 conjg__UU12 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU21 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU22 = ( 0.94684060000000003 , 0.0000000000000000 )
 conjg__VV11 = (-0.97806579999999999 , 0.0000000000000000 )
 conjg__VV12 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV21 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV22 = ( 0.97806579999999999 , 0.0000000000000000 )
 cos__alp = 0.99412731139107080
 sin__alp = -0.10821685980641312
 conjg__MUH = ( 521.69669999999996 , 0.0000000000000000 )
 ee = 0.31340934559420641
 vev = 246.22375633285301
 vd = 25.287146774416566
 vu = 244.92182097695846
 ee__exp__2 = 9.82254179057887034E-002
  Internal Params evaluated point by point
  ----------------------------------------

 sqrt__aS = 0.34234485537247383
 G__exp__2 = ( 1.4727786360028952 , 0.0000000000000000 )
  Couplings of mssm
  ---------------------------------

         GC_1 = -0.00000E+00 -0.10447E+00
         GC_2 = 0.00000E+00 0.20894E+00
        GC_40 = 0.00000E+00 0.00000E+00
       GC_243 = 0.00000E+00 0.37034E+00
       GC_244 = -0.00000E+00 -0.37034E+00
       GC_245 = 0.00000E+00 0.57680E-01
       GC_246 = -0.00000E+00 -0.11536E+00
       GC_310 = 0.00000E+00 0.65499E-01

 Collider parameters:
 --------------------

 Running at P P machine @ 14000.000000000000 GeV
 PDF set = cteq6l1
 alpha_s(Mz)= 0.1300 running at 1 loops.
 alpha_s(Mz)= 0.1300 running at 1 loops.
 Renormalization scale set on event-by-event basis
 Factorization scale set on event-by-event basis

 getting user params
Enter number of events and max and min iterations:
 Number of events and iterations 1000 5 3
Enter desired fractional accuracy:
 Desired fractional accuracy: 0.10000000000000001
Enter 0 for fixed, 2 for adjustable grid:
Suppress amplitude (0 no, 1 yes)?
 Using suppressed amplitude.
Exact helicity sum (0 yes, n = number/event)?
 Explicitly summing over helicities
Enter Configuration Number:
Running Configuration Number: 2
 Using dconfig= 2
 BW Setting 2 0
 Attempting mappinvarients 1 4
 Completed mapping 4
 about to integrate 4 1000 5 3 4 1
 Using non-zero grid deformation.
  4 dimensions 1000 events 4 invarients 5 iterations 1 config(s), (0.99)
 Using h-tuple random number sequence.
 Error opening grid
 Using Uniform Grid!
 Using uniform alpha 1.0000000000000000
 Grid defined OK
 Mapping Graph 2 to config 2
Setting grid 1 0.11080E-02 1
 Transforming s_hat 1/s 3 1.10800249479367356E-003
 Masses: 0.000E+00 0.000E+00 0.176E+03 0.290E+03
   2 1 2 3 4
 Got moffset 1
Using random seed offsets 2 : 1
  with seed 33
 Ranmar initialization seeds 11950 12565
  Particle 3 4
      Et > 0.0 0.0
       E > 0.0 0.0
     Eta < 100.0 100.0
   xqcut: 0.0 0.0
d R # 3 > -0.0 0.0
s min # 3> 0.0 0.0
xqcutij # 3> 0.0 0.0
 Excluding BW -1 1
 alpha_s for scale 581.89170093967800 is 0.10046458438277200
 Added good helicity 2 3.3203869038889748 in event 1
 Added good helicity 3 0.67961309611102527 in event 1
 Added good helicity 2 3.3203869038889744 in event 1
 Added good helicity 3 0.67961309611102516 in event 1
 Added good helicity 2 3.8683528754756407 in event 1
 Added good helicity 3 0.13164712452435950 in event 1
 Added good helicity 2 3.8683528754756402 in event 1
 Added good helicity 3 0.13164712452435959 in event 1
 Iteration 1 Mean: 0.2567E-03 Fluctuation: 0.244E-04 0.668E-02 100.0%
  1 0.2567E-03 +- 0.2438E-04 3.00
 Writing out events 5.13359732492738673E-008 3.0035040230303185
 Relative summed weights:
  0.3241E+00 0.3213E+00 0.2303E+00 0.1243E+00
 Relative number of events:
  0.2930E+00 0.3080E+00 0.2060E+00 0.1930E+00
 Events:
         293 308 206 193
 Iteration 2 Mean: 0.3015E-03 Fluctuation: 0.798E-05 0.188E-02 100.0%
  2 0.3015E-03 +- 0.7983E-05 1.18
 Relative summed weights:
  0.2935E+00 0.2769E+00 0.2230E+00 0.2066E+00
 Relative number of events:
  0.2965E+00 0.3125E+00 0.1950E+00 0.1960E+00
 Events:
         593 625 390 392
 Iteration 3 Mean: 0.2984E-03 Fluctuation: 0.340E-05 0.107E-02 100.0%
  3 0.2984E-03 +- 0.3397E-05 0.72
 Relative summed weights:
  0.2714E+00 0.2640E+00 0.2330E+00 0.2316E+00
 Relative number of events:
  0.2985E+00 0.2960E+00 0.2085E+00 0.1970E+00
 Events:
        1194 1184 834 788
 Accuracy: 0.011 0.100 0.010 1.163
 Finished due to accuracy 1.12120415673496697E-002 0.10000000000000001

 -------------------------------------------------------------------------------
 Accumulated results: Integral = 0.2984E-03
                        Std dev = 0.3102E-05
             Chi**2 per DoF. = 1.1629
 -------------------------------------------------------------------------------
 Found 395 events.
 Wrote 392 events.
 Correct xsec 2.98353453376117798E-004
 Event xsec 2.98353453376116171E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
-----------------------------------------------------
---------------------------
 Results Last 3 iters: Integral = 0.2984E-03
                         Std dev = 0.3102E-05
                 Chi**2 per DoF. = 1.5408
-----------------------------------------------------
---------------------------
 Status 0.10000000000000001 4 5
 Process in group number 0
 Warning: parameter xmtcentral not found
          setting it to default value 0.0000000000000000
 Warning: parameter d not found
          setting it to default value 1.0000000000000000
 Warning: parameter fixed_couplings not found
          setting it to default value T
 Warning: parameter lhaid not found
          setting it to default value 10042
 A PDF is used, so alpha_s(MZ) is going to be modified
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 Old value of alpha_s from param_card: 0.11720000000000001
 New value of alpha_s from PDF cteq6l1: 0.13000000000000000
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 *****************************************************
 * MadGraph/MadEvent *
 * -------------------------------- *
 * http://madgraph.hep.uiuc.edu *
 * http://madgraph.phys.ucl.ac.be *
 * http://madgraph.roma2.infn.it *
 * -------------------------------- *
 * *
 * PARAMETER AND COUPLING VALUES *
 * *
 *****************************************************

  External Params
  ---------------------------------

 RRd33 = 0.95267219999999997
 RRd36 = 0.30399939999999998
 RRd63 = -0.30399939999999998
 RRd66 = 0.95267219999999997
 alp = -0.10842920000000000
 RMUH = 521.69669999999996
 tb = 9.6856249999999999
 MA2 = 359989.90000000002
 MB = 4.8788429999999998
 MT = 175.00000000000000
 Mta = 1.7769999999999999
 MZ = 91.187600000000003
 MW = 79.828559999999996
 MH01 = 114.16300000000000
 MH02 = 589.05269999999996
 MA0 = 588.69259999999997
 MH = 594.47299999999996
 Msd1 = 860.02449999999999
 Msu1 = 856.43930000000000
 Msd3 = 791.87090000000001
 Msu3 = 647.82380000000001
 Msl1 = 288.14800000000002
 Msn1 = 277.42230000000001
 Msl3 = 175.67509999999999
 Msn3 = 276.58589999999998
 Mgo = 933.50779999999997
 Mneu1 = 161.66679999999999
 Mneu2 = 303.76470000000000
 Mch1 = 303.51630000000000
 Mneu3 = -526.52580000000000
 Mneu4 = 542.39639999999997
 Mch2 = 542.19770000000005
 Msd4 = 825.40949999999998
 Msu4 = 827.76210000000003
 Msd6 = 824.27639999999997
 Msu6 = 841.98270000000002
 Msl4 = 183.11400000000000
 Msl6 = 290.33830000000000
 RmD211 = 634198.30000000005
 RmD233 = 627616.30000000005
 RmE211 = 31614.790000000001
 RmE233 = 30669.820000000000
 RmL211 = 80954.169999999998
 RmL233 = 80490.830000000002
 RMx1 = 165.83799999999999
 RMx2 = 309.46249999999998
 RMx3 = 905.28769999999997
 mHd2 = 69921.110000000001
 mHu2 = -265754.59999999998
 RmQ211 = 688882.50000000000
 RmQ233 = 583070.19999999995
 RmU211 = 639933.00000000000
 RmU233 = 429837.29999999999
 RNN11 = 0.99387870000000000
 RNN12 = -2.52624000000000008E-002
 RNN13 = 9.98605199999999943E-002
 RNN14 = -3.99349800000000019E-002
 RNN21 = 5.27653400000000009E-002
 RNN22 = 0.96238789999999996
 RNN23 = -0.22386909999999999
 RNN24 = 0.14459569999999999
 RNN31 = 4.05505099999999979E-002
 RNN32 = -5.90286900000000017E-002
 RNN33 = -0.70191400000000004
 RNN34 = -0.70865219999999995
 RNN41 = 8.81849799999999961E-002
 RNN42 = -0.26398280000000002
 RNN43 = -0.66875050000000003
 RNN44 = 0.68942680000000001
 RRl33 = 0.17978849999999999
 RRl36 = 0.98370530000000000
 RRl63 = -0.98370530000000000
 RRl66 = 0.17978849999999999
 aEWM1 = 127.93400000000000
 aS = 0.11720000000000001
 Rtd33 = -146.36550000000000
 Rte33 = -24.188949999999998
 Rtu33 = -622.48500000000001
 RUU11 = -0.94684060000000003
 RUU12 = 0.32170320000000002
 RUU21 = 0.32170320000000002
 RUU22 = 0.94684060000000003
 RRu33 = 0.46677930000000001
 RRu36 = 0.88437390000000005
 RRu63 = -0.88437390000000005
 RRu66 = 0.46677930000000001
 RVV11 = -0.97806579999999999
 RVV12 = 0.20829610000000001
 RVV21 = 0.20829610000000001
 RVV22 = 0.97806579999999999
 Ryd33 = 0.13670679999999999
 Rye33 = 0.10055890000000001
 Ryu33 = 0.87793080000000001
 WT = 1.5619810000000001
 WZ = 2.4118010000000001
 WW = 2.0031300000000001
 WH01 = 1.85789799999999997E-003
 WH02 = 0.94099940000000004
 WA0 = 0.99814879999999995
 WH = 0.92459210000000003
 Wsd1 = 7.9679599999999997
 Wsu1 = 8.1037230000000005
 Wsd3 = 9.5981970000000008
 Wsu3 = 3.7110289999999999
 Wsl1 = 0.15505089999999999
 Wsn1 = 0.16672470000000000
 Wsl3 = 2.04639700000000015E-002
 Wsn3 = 0.18599280000000001
 Wgo = 11.095829999999999
 Wneu2 = 0.17396629999999999
 Wch1 = 0.17089670000000001
 Wneu3 = -3.0231720000000002
 Wneu4 = 3.7153649999999998
 Wch2 = 3.6111860000000000
 Wsd4 = 0.42963659999999998
 Wsu4 = 1.7242770000000001
 Wsd6 = 1.7704329999999999
 Wsu6 = 12.115320000000001
 Wsl4 = 4.48605099999999993E-002
 Wsl6 = 0.19091250000000001
  Internal Params
  ---------------------------------

 Wsu2 = 8.1037230000000005
 Wsl2 = 0.15505089999999999
 Msu5 = 827.76210000000003
 Msu2 = 856.43930000000000
 RmD222 = 634198.30000000005
 Msl2 = 288.14800000000002
 Msl5 = 183.11400000000000
 RmL222 = 80954.169999999998
 Msd2 = 860.02449999999999
 RmQ222 = 688882.50000000000
 Wsl5 = 4.48605099999999993E-002
 Wsd5 = 0.42963659999999998
 Msd5 = 825.40949999999998
 RmU222 = 639933.00000000000
 Msn2 = 277.42230000000001
 RmE222 = 31614.790000000001
 Wsd2 = 7.9679599999999997
 Wsu5 = 1.7242770000000001
 Wsn2 = 0.16672470000000000
 I2522 = 1.0000000000000000
 I6322 = 1.0000000000000000
 I5322 = 1.0000000000000000
 I9422 = 1.0000000000000000
 I5111 = 1.0000000000000000
 I9622 = 1.0000000000000000
 conjg__Rl22 = 1.0000000000000000
 conjg__Rd11 = 1.0000000000000000
 I655 = 1.0000000000000000
 I5244 = 1.0000000000000000
 I5311 = 1.0000000000000000
 conjg__Rn33 = 1.0000000000000000
 I10144 = 1.0000000000000000
 conjg__Rn11 = 1.0000000000000000
 Rn22 = 1.0000000000000000
 I9522 = 1.0000000000000000
 I8211 = 1.0000000000000000
 Ru11 = 1.0000000000000000
 I9322 = 1.0000000000000000
 I9822 = 1.0000000000000000
 Rn33 = 1.0000000000000000
 I1344 = 1.0000000000000000
 I2655 = 1.0000000000000000
 I511 = 1.0000000000000000
 I10055 = 1.0000000000000000
 I5122 = 1.0000000000000000
 Rd22 = 1.0000000000000000
 I4522 = 1.0000000000000000
 I9611 = 1.0000000000000000
 I8711 = 1.0000000000000000
 conjg__Rd22 = 1.0000000000000000
 I9711 = 1.0000000000000000
 Rl11 = 1.0000000000000000
 I9222 = 1.0000000000000000
 conjg__Rd44 = 1.0000000000000000
 I644 = 1.0000000000000000
 I5255 = 1.0000000000000000
 I2511 = 1.0000000000000000
 conjg__Ru44 = 1.0000000000000000
 I10155 = 1.0000000000000000
 Rn11 = 1.0000000000000000
 conjg__Ru22 = 1.0000000000000000
 I10255 = 1.0000000000000000
 I7411 = 1.0000000000000000
 conjg__Rl11 = 1.0000000000000000
 I3244 = 1.0000000000000000
 Rl22 = 1.0000000000000000
 I522 = 1.0000000000000000
 I2644 = 1.0000000000000000
 Ru44 = 1.0000000000000000
 I10244 = 1.0000000000000000
 I8522 = 1.0000000000000000
 conjg__Rl55 = 1.0000000000000000
 I7555 = 1.0000000000000000
 I7544 = 1.0000000000000000
 atan__tb = 1.4679150648029704
 bb = ( 73550.853360095585 , 0.0000000000000000 )
 beta = 1.4679150648029704
 cw = 0.87543218595510786
 mD211 = ( 634198.30000000005 , 0.0000000000000000 )
 mD222 = ( 634198.30000000005 , 0.0000000000000000 )
 mD233 = ( 627616.30000000005 , 0.0000000000000000 )
 mE211 = ( 31614.790000000001 , 0.0000000000000000 )
 mE222 = ( 31614.790000000001 , 0.0000000000000000 )
 mE233 = ( 30669.820000000000 , 0.0000000000000000 )
 mL211 = ( 80954.169999999998 , 0.0000000000000000 )
 mL222 = ( 80954.169999999998 , 0.0000000000000000 )
 mL233 = ( 80490.830000000002 , 0.0000000000000000 )
 mQ211 = ( 688882.50000000000 , 0.0000000000000000 )
 mQ222 = ( 688882.50000000000 , 0.0000000000000000 )
 mQ233 = ( 583070.19999999995 , 0.0000000000000000 )
 mU211 = ( 639933.00000000000 , 0.0000000000000000 )
 mU222 = ( 639933.00000000000 , 0.0000000000000000 )
 mU233 = ( 429837.29999999999 , 0.0000000000000000 )
 MUH = ( 521.69669999999996 , 0.0000000000000000 )
 Mx1 = ( 165.83799999999999 , 0.0000000000000000 )
 Mx2 = ( 309.46249999999998 , 0.0000000000000000 )
 Mx3 = ( 905.28769999999997 , 0.0000000000000000 )
 NN11 = ( 0.99387870000000000 , 0.0000000000000000 )
 NN12 = (-2.52624000000000008E-002, 0.0000000000000000 )
 NN13 = ( 9.98605199999999943E-002, 0.0000000000000000 )
 NN14 = (-3.99349800000000019E-002, 0.0000000000000000 )
 NN21 = ( 5.27653400000000009E-002, 0.0000000000000000 )
 NN22 = ( 0.96238789999999996 , 0.0000000000000000 )
 NN23 = (-0.22386909999999999 , 0.0000000000000000 )
 NN24 = ( 0.14459569999999999 , 0.0000000000000000 )
 NN31 = ( 4.05505099999999979E-002, 0.0000000000000000 )
 NN32 = (-5.90286900000000017E-002, 0.0000000000000000 )
 NN33 = (-0.70191400000000004 , 0.0000000000000000 )
 NN34 = (-0.70865219999999995 , 0.0000000000000000 )
 NN41 = ( 8.81849799999999961E-002, 0.0000000000000000 )
 NN42 = (-0.26398280000000002 , 0.0000000000000000 )
 NN43 = (-0.66875050000000003 , 0.0000000000000000 )
 NN44 = ( 0.68942680000000001 , 0.0000000000000000 )
 Rd33 = ( 0.95267219999999997 , 0.0000000000000000 )
 Rd36 = ( 0.30399939999999998 , 0.0000000000000000 )
 Rd63 = (-0.30399939999999998 , 0.0000000000000000 )
 Rd66 = ( 0.95267219999999997 , 0.0000000000000000 )
 Rl33 = ( 0.17978849999999999 , 0.0000000000000000 )
 Rl36 = ( 0.98370530000000000 , 0.0000000000000000 )
 Rl63 = (-0.98370530000000000 , 0.0000000000000000 )
 Rl66 = ( 0.17978849999999999 , 0.0000000000000000 )
 Ru33 = ( 0.46677930000000001 , 0.0000000000000000 )
 Ru36 = ( 0.88437390000000005 , 0.0000000000000000 )
 Ru63 = (-0.88437390000000005 , 0.0000000000000000 )
 Ru66 = ( 0.46677930000000001 , 0.0000000000000000 )
 UU11 = (-0.94684060000000003 , 0.0000000000000000 )
 UU12 = ( 0.32170320000000002 , 0.0000000000000000 )
 UU21 = ( 0.32170320000000002 , 0.0000000000000000 )
 UU22 = ( 0.94684060000000003 , 0.0000000000000000 )
 VV11 = (-0.97806579999999999 , 0.0000000000000000 )
 VV12 = ( 0.20829610000000001 , 0.0000000000000000 )
 VV21 = ( 0.20829610000000001 , 0.0000000000000000 )
 VV22 = ( 0.97806579999999999 , 0.0000000000000000 )
 td33 = ( -146.36550000000000 , 0.0000000000000000 )
 te33 = ( -24.188949999999998 , 0.0000000000000000 )
 tu33 = ( -622.48500000000001 , 0.0000000000000000 )
 yd33 = ( 0.13670679999999999 , 0.0000000000000000 )
 ye33 = ( 0.10055890000000001 , 0.0000000000000000 )
 yu33 = ( 0.87793080000000001 , 0.0000000000000000 )
 cw__exp__2 = 0.76638151220613859
 sw = 0.48334096432421431
 cos__beta = 0.10269986597163519
 sin__beta = 0.99471238935151907
 conjg__yu33 = ( 0.87793080000000001 , 0.0000000000000000 )
 I133 = ( 0.87793080000000001 , 0.0000000000000000 )
 conjg__yd33 = ( 0.13670679999999999 , 0.0000000000000000 )
 I1033 = ( 0.13023676791095998 , 0.0000000000000000 )
 I1036 = (-4.15587851759199947E-002, 0.0000000000000000 )
 conjg__Rd36 = ( 0.30399939999999998 , 0.0000000000000000 )
 I10033 = ( 9.24156352003599885E-002, 0.0000000000000000 )
 I10036 = ( 0.28961177719667996 , 0.0000000000000000 )
 conjg__Rd66 = ( 0.95267219999999997 , 0.0000000000000000 )
 I10063 = ( 0.28961177719667996 , 0.0000000000000000 )
 I10066 = ( 0.90758432065283989 , 0.0000000000000000 )
 conjg__Rl36 = ( 0.98370530000000000 , 0.0000000000000000 )
 I10133 = ( 0.96767611724809000 , 0.0000000000000000 )
 I10136 = ( 0.17685890032905000 , 0.0000000000000000 )
 conjg__Rl66 = ( 0.17978849999999999 , 0.0000000000000000 )
 I10163 = ( 0.17685890032905000 , 0.0000000000000000 )
 I10166 = ( 3.23239047322499973E-002, 0.0000000000000000 )
 conjg__Ru36 = ( 0.88437390000000005 , 0.0000000000000000 )
 I10233 = ( 0.78211719500121013 , 0.0000000000000000 )
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 complexi = ( 0.0000000000000000 , 1.0000000000000000 )
 sqrt__2 = 1.4142135623730951
 sw__exp__2 = 0.23361848779386141
 conjg__NN11 = ( 0.99387870000000000 , 0.0000000000000000 )
 conjg__NN12 = (-2.52624000000000008E-002, 0.0000000000000000 )
 conjg__NN13 = ( 9.98605199999999943E-002, 0.0000000000000000 )
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 conjg__NN23 = (-0.22386909999999999 , 0.0000000000000000 )
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 conjg__NN41 = ( 8.81849799999999961E-002, 0.0000000000000000 )
 conjg__NN42 = (-0.26398280000000002 , 0.0000000000000000 )
 conjg__NN43 = (-0.66875050000000003 , 0.0000000000000000 )
 conjg__NN44 = ( 0.68942680000000001 , 0.0000000000000000 )
 conjg__UU11 = (-0.94684060000000003 , 0.0000000000000000 )
 conjg__UU12 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU21 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU22 = ( 0.94684060000000003 , 0.0000000000000000 )
 conjg__VV11 = (-0.97806579999999999 , 0.0000000000000000 )
 conjg__VV12 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV21 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV22 = ( 0.97806579999999999 , 0.0000000000000000 )
 cos__alp = 0.99412731139107080
 sin__alp = -0.10821685980641312
 conjg__MUH = ( 521.69669999999996 , 0.0000000000000000 )
 ee = 0.31340934559420641
 vev = 246.22375633285301
 vd = 25.287146774416566
 vu = 244.92182097695846
 ee__exp__2 = 9.82254179057887034E-002
  Internal Params evaluated point by point
  ----------------------------------------

 sqrt__aS = 0.34234485537247383
 G__exp__2 = ( 1.4727786360028952 , 0.0000000000000000 )
  Couplings of mssm
  ---------------------------------

         GC_1 = -0.00000E+00 -0.10447E+00
         GC_2 = 0.00000E+00 0.20894E+00
        GC_40 = 0.00000E+00 0.00000E+00
       GC_243 = 0.00000E+00 0.37034E+00
       GC_244 = -0.00000E+00 -0.37034E+00
       GC_245 = 0.00000E+00 0.57680E-01
       GC_246 = -0.00000E+00 -0.11536E+00
       GC_310 = 0.00000E+00 0.65499E-01

 Collider parameters:
 --------------------

 Running at P P machine @ 14000.000000000000 GeV
 PDF set = cteq6l1
 alpha_s(Mz)= 0.1300 running at 1 loops.
 alpha_s(Mz)= 0.1300 running at 1 loops.
 Renormalization scale set on event-by-event basis
 Factorization scale set on event-by-event basis

 getting user params
Enter number of events and max and min iterations:
 Number of events and iterations 1000 9 3
Enter desired fractional accuracy:
 Desired fractional accuracy: -40221000.000000000
Enter 0 for fixed, 2 for adjustable grid:
Suppress amplitude (0 no, 1 yes)?
 Using suppressed amplitude.
Exact helicity sum (0 yes, n = number/event)?
 Explicitly summing over helicities
Enter Configuration Number:
Running Configuration Number: 2
 Using dconfig= 2
 BW Setting 2 0
 Attempting mappinvarients 1 4
 Completed mapping 4
 about to integrate 4 1000 9 3 4 1
 Using non-zero grid deformation.
  4 dimensions 1000 events 4 invarients 9 iterations 1 config(s), (0.99)
 Using h-tuple random number sequence.
 Error opening grid
 Using Uniform Grid!
 Using uniform alpha 1.0000000000000000
 Grid defined OK
 Mapping Graph 2 to config 2
Setting grid 1 0.11080E-02 1
 Transforming s_hat 1/s 3 1.10800249479367356E-003
 Masses: 0.000E+00 0.000E+00 0.176E+03 0.290E+03
   2 1 2 3 4
 Got moffset 1
Using random seed offsets 2 : 1
  with seed 36
 Ranmar initialization seeds 15607 12568
  Particle 3 4
      Et > 0.0 0.0
       E > 0.0 0.0
     Eta < 100.0 100.0
   xqcut: 0.0 0.0
d R # 3 > -0.0 0.0
s min # 3> 0.0 0.0
xqcutij # 3> 0.0 0.0
 Excluding BW -1 1
 alpha_s for scale 1292.7971474336025 is 9.15096693915726234E-002
 Added good helicity 2 3.3203869038889748 in event 1
 Added good helicity 3 0.67961309611102538 in event 1
 Added good helicity 2 3.3203869038889748 in event 1
 Added good helicity 3 0.67961309611102472 in event 1
 Added good helicity 2 3.8683528754756407 in event 1
 Added good helicity 3 0.13164712452435959 in event 1
 Added good helicity 2 3.8683528754756402 in event 1
 Added good helicity 3 0.13164712452435956 in event 1
 Iteration 1 Mean: 0.2833E-03 Fluctuation: 0.291E-04 0.840E-02 99.9%
  1 0.2833E-03 +- 0.2906E-04 3.24
 Relative summed weights:
  0.2686E+00 0.2540E+00 0.2365E+00 0.2409E+00
 Relative number of events:
  0.3190E+00 0.3020E+00 0.1930E+00 0.1860E+00
 Events:
         319 302 193 186
 Iteration 2 Mean: 0.2966E-03 Fluctuation: 0.776E-05 0.184E-02 100.0%
  2 0.2966E-03 +- 0.7755E-05 1.17
 Relative summed weights:
  0.2713E+00 0.2755E+00 0.2254E+00 0.2278E+00
 Relative number of events:
  0.3100E+00 0.3015E+00 0.1880E+00 0.2005E+00
 Events:
         620 603 376 401
 Iteration 3 Mean: 0.2935E-03 Fluctuation: 0.315E-05 0.993E-03 100.0%
  3 0.2935E-03 +- 0.3145E-05 0.68
 Relative summed weights:
  0.2708E+00 0.2794E+00 0.2360E+00 0.2138E+00
 Relative number of events:
  0.3005E+00 0.3105E+00 0.2005E+00 0.1885E+00
 Events:
        1202 1242 802 754
 Found 416 events.
 Wrote 411 events.
 Correct xsec 2.93861555875631953E-004
 Event xsec 2.93861555875633688E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11819.405638873794 411 chi2: 0.13414187019383278
 Found 416 events.
 Wrote 411 events.
 Correct xsec 2.93861555875631953E-004
 Event xsec 2.93861555875633688E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 4 Mean: 0.2928E-03 Fluctuation: 0.149E-05 0.727E-03 100.0%
  4 0.2928E-03 +- 0.1488E-05 0.45
 Relative summed weights:
  0.2779E+00 0.2736E+00 0.2192E+00 0.2293E+00
 Relative number of events:
  0.3075E+00 0.3010E+00 0.1930E+00 0.1985E+00
 Events:
        2460 2408 1544 1588
 Found 774 events.
 Wrote 770 events.
 Correct xsec 2.93074995621712888E-004
 Event xsec 2.93074995621711587E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11787.769398900915 770 chi2: 0.12522284411745760
 Found 774 events.
 Wrote 770 events.
 Correct xsec 2.93074995621712888E-004
 Event xsec 2.93074995621711587E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 5 Mean: 0.2913E-03 Fluctuation: 0.782E-06 0.714E-03 100.0%
  5 0.2913E-03 +- 0.7821E-06 0.34
 Relative summed weights:
  0.2709E+00 0.2745E+00 0.2278E+00 0.2268E+00
 Relative number of events:
  0.3006E+00 0.3052E+00 0.1982E+00 0.1961E+00
 Events:
        4809 4883 3171 3137
 Found 1605 events.
 Wrote 1601 events.
 Correct xsec 2.91712770785027562E-004
 Event xsec 2.91712770785024905E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11732.979353744593 1601 chi2: 0.60278823553546035
 Found 1605 events.
 Wrote 1601 events.
 Correct xsec 2.91712770785027562E-004
 Event xsec 2.91712770785024905E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 6 Mean: 0.2925E-03 Fluctuation: 0.458E-06 0.966E-03 100.0%
  6 0.2925E-03 +- 0.4575E-06 0.28
 Relative summed weights:
  0.2741E+00 0.2677E+00 0.2297E+00 0.2286E+00
 Relative number of events:
  0.3053E+00 0.2980E+00 0.1993E+00 0.1974E+00
 Events:
        9771 9537 6376 6316
 Found 3156 events.
 Wrote 3151 events.
 Correct xsec 2.92241258421465104E-004
 Event xsec 2.92241258421465483E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11754.235654969749 3151 chi2: 1.0017501863994869
 Found 3156 events.
 Wrote 3151 events.
 Correct xsec 2.92241258421465104E-004
 Event xsec 2.92241258421465483E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 7 Mean: 0.2930E-03 Fluctuation: 0.293E-06 0.127E-02 100.0%
  7 0.2930E-03 +- 0.2930E-06 0.25
 Relative summed weights:
  0.2695E+00 0.2722E+00 0.2289E+00 0.2294E+00
 Relative number of events:
  0.3006E+00 0.3028E+00 0.1982E+00 0.1984E+00
 Events:
       19240 19378 12685 12697
 Found 6471 events.
 Wrote 6466 events.
 Correct xsec 2.92724328549119942E-004
 Event xsec 2.92724328549121785E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11773.665218574153 6466 chi2: 2.2881184810691897
 Found 6471 events.
 Wrote 6466 events.
 Correct xsec 2.92724328549119942E-004
 Event xsec 2.92724328549121785E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 8 Mean: 0.2930E-03 Fluctuation: 0.201E-06 0.149E-02 100.0%
  8 0.2930E-03 +- 0.2015E-06 0.25
 Relative summed weights:
  0.2717E+00 0.2717E+00 0.2291E+00 0.2274E+00
 Relative number of events:
  0.3027E+00 0.3022E+00 0.1986E+00 0.1966E+00
 Events:
       38744 38677 25419 25160
 Found 12799 events.
 Wrote 12794 events.
 Correct xsec 2.92963650803767682E-004
 Event xsec 2.92963650803685716E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11783.290998978340 12794 chi2: 0.55897595213913387

 -------------------------------------------------------------------------------
 Accumulated results: Integral = 0.2929E-03
                        Std dev = 0.1520E-06
             Chi**2 per DoF. = 0.8397
 -------------------------------------------------------------------------------
-----------------------------------------------------
---------------------------
 Results Last 3 iters: Integral = 0.2930E-03
                         Std dev = 0.1561E-06
                 Chi**2 per DoF. = 0.5590
-----------------------------------------------------
---------------------------
 Status -40221000.000000000 9 9
 We found enough events 12794 11783.290998978340
 Process in group number 0
 Warning: parameter xmtcentral not found
          setting it to default value 0.0000000000000000
 Warning: parameter d not found
          setting it to default value 1.0000000000000000
 Warning: parameter fixed_couplings not found
          setting it to default value T
 Warning: parameter lhaid not found
          setting it to default value 10042
 A PDF is used, so alpha_s(MZ) is going to be modified
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 Old value of alpha_s from param_card: 0.11720000000000001
 New value of alpha_s from PDF cteq6l1: 0.13000000000000000
 Warning: parameter Mta not found
          setting it to default value 1.7769999999999999
 Warning: parameter MZ not found
          setting it to default value 91.187600000000003
 *****************************************************
 * MadGraph/MadEvent *
 * -------------------------------- *
 * http://madgraph.hep.uiuc.edu *
 * http://madgraph.phys.ucl.ac.be *
 * http://madgraph.roma2.infn.it *
 * -------------------------------- *
 * *
 * PARAMETER AND COUPLING VALUES *
 * *
 *****************************************************

  External Params
  ---------------------------------

 RRd33 = 0.95267219999999997
 RRd36 = 0.30399939999999998
 RRd63 = -0.30399939999999998
 RRd66 = 0.95267219999999997
 alp = -0.10842920000000000
 RMUH = 521.69669999999996
 tb = 9.6856249999999999
 MA2 = 359989.90000000002
 MB = 4.8788429999999998
 MT = 175.00000000000000
 Mta = 1.7769999999999999
 MZ = 91.187600000000003
 MW = 79.828559999999996
 MH01 = 114.16300000000000
 MH02 = 589.05269999999996
 MA0 = 588.69259999999997
 MH = 594.47299999999996
 Msd1 = 860.02449999999999
 Msu1 = 856.43930000000000
 Msd3 = 791.87090000000001
 Msu3 = 647.82380000000001
 Msl1 = 288.14800000000002
 Msn1 = 277.42230000000001
 Msl3 = 175.67509999999999
 Msn3 = 276.58589999999998
 Mgo = 933.50779999999997
 Mneu1 = 161.66679999999999
 Mneu2 = 303.76470000000000
 Mch1 = 303.51630000000000
 Mneu3 = -526.52580000000000
 Mneu4 = 542.39639999999997
 Mch2 = 542.19770000000005
 Msd4 = 825.40949999999998
 Msu4 = 827.76210000000003
 Msd6 = 824.27639999999997
 Msu6 = 841.98270000000002
 Msl4 = 183.11400000000000
 Msl6 = 290.33830000000000
 RmD211 = 634198.30000000005
 RmD233 = 627616.30000000005
 RmE211 = 31614.790000000001
 RmE233 = 30669.820000000000
 RmL211 = 80954.169999999998
 RmL233 = 80490.830000000002
 RMx1 = 165.83799999999999
 RMx2 = 309.46249999999998
 RMx3 = 905.28769999999997
 mHd2 = 69921.110000000001
 mHu2 = -265754.59999999998
 RmQ211 = 688882.50000000000
 RmQ233 = 583070.19999999995
 RmU211 = 639933.00000000000
 RmU233 = 429837.29999999999
 RNN11 = 0.99387870000000000
 RNN12 = -2.52624000000000008E-002
 RNN13 = 9.98605199999999943E-002
 RNN14 = -3.99349800000000019E-002
 RNN21 = 5.27653400000000009E-002
 RNN22 = 0.96238789999999996
 RNN23 = -0.22386909999999999
 RNN24 = 0.14459569999999999
 RNN31 = 4.05505099999999979E-002
 RNN32 = -5.90286900000000017E-002
 RNN33 = -0.70191400000000004
 RNN34 = -0.70865219999999995
 RNN41 = 8.81849799999999961E-002
 RNN42 = -0.26398280000000002
 RNN43 = -0.66875050000000003
 RNN44 = 0.68942680000000001
 RRl33 = 0.17978849999999999
 RRl36 = 0.98370530000000000
 RRl63 = -0.98370530000000000
 RRl66 = 0.17978849999999999
 aEWM1 = 127.93400000000000
 aS = 0.11720000000000001
 Rtd33 = -146.36550000000000
 Rte33 = -24.188949999999998
 Rtu33 = -622.48500000000001
 RUU11 = -0.94684060000000003
 RUU12 = 0.32170320000000002
 RUU21 = 0.32170320000000002
 RUU22 = 0.94684060000000003
 RRu33 = 0.46677930000000001
 RRu36 = 0.88437390000000005
 RRu63 = -0.88437390000000005
 RRu66 = 0.46677930000000001
 RVV11 = -0.97806579999999999
 RVV12 = 0.20829610000000001
 RVV21 = 0.20829610000000001
 RVV22 = 0.97806579999999999
 Ryd33 = 0.13670679999999999
 Rye33 = 0.10055890000000001
 Ryu33 = 0.87793080000000001
 WT = 1.5619810000000001
 WZ = 2.4118010000000001
 WW = 2.0031300000000001
 WH01 = 1.85789799999999997E-003
 WH02 = 0.94099940000000004
 WA0 = 0.99814879999999995
 WH = 0.92459210000000003
 Wsd1 = 7.9679599999999997
 Wsu1 = 8.1037230000000005
 Wsd3 = 9.5981970000000008
 Wsu3 = 3.7110289999999999
 Wsl1 = 0.15505089999999999
 Wsn1 = 0.16672470000000000
 Wsl3 = 2.04639700000000015E-002
 Wsn3 = 0.18599280000000001
 Wgo = 11.095829999999999
 Wneu2 = 0.17396629999999999
 Wch1 = 0.17089670000000001
 Wneu3 = -3.0231720000000002
 Wneu4 = 3.7153649999999998
 Wch2 = 3.6111860000000000
 Wsd4 = 0.42963659999999998
 Wsu4 = 1.7242770000000001
 Wsd6 = 1.7704329999999999
 Wsu6 = 12.115320000000001
 Wsl4 = 4.48605099999999993E-002
 Wsl6 = 0.19091250000000001
  Internal Params
  ---------------------------------

 Wsu2 = 8.1037230000000005
 Wsl2 = 0.15505089999999999
 Msu5 = 827.76210000000003
 Msu2 = 856.43930000000000
 RmD222 = 634198.30000000005
 Msl2 = 288.14800000000002
 Msl5 = 183.11400000000000
 RmL222 = 80954.169999999998
 Msd2 = 860.02449999999999
 RmQ222 = 688882.50000000000
 Wsl5 = 4.48605099999999993E-002
 Wsd5 = 0.42963659999999998
 Msd5 = 825.40949999999998
 RmU222 = 639933.00000000000
 Msn2 = 277.42230000000001
 RmE222 = 31614.790000000001
 Wsd2 = 7.9679599999999997
 Wsu5 = 1.7242770000000001
 Wsn2 = 0.16672470000000000
 I2522 = 1.0000000000000000
 I6322 = 1.0000000000000000
 I5322 = 1.0000000000000000
 I9422 = 1.0000000000000000
 I5111 = 1.0000000000000000
 I9622 = 1.0000000000000000
 conjg__Rl22 = 1.0000000000000000
 conjg__Rd11 = 1.0000000000000000
 I655 = 1.0000000000000000
 I5244 = 1.0000000000000000
 I5311 = 1.0000000000000000
 conjg__Rn33 = 1.0000000000000000
 I10144 = 1.0000000000000000
 conjg__Rn11 = 1.0000000000000000
 Rn22 = 1.0000000000000000
 I9522 = 1.0000000000000000
 I8211 = 1.0000000000000000
 Ru11 = 1.0000000000000000
 I9322 = 1.0000000000000000
 I9822 = 1.0000000000000000
 Rn33 = 1.0000000000000000
 I1344 = 1.0000000000000000
 I2655 = 1.0000000000000000
 I511 = 1.0000000000000000
 I10055 = 1.0000000000000000
 I5122 = 1.0000000000000000
 Rd22 = 1.0000000000000000
 I4522 = 1.0000000000000000
 I9611 = 1.0000000000000000
 I8711 = 1.0000000000000000
 conjg__Rd22 = 1.0000000000000000
 I9711 = 1.0000000000000000
 Rl11 = 1.0000000000000000
 I9222 = 1.0000000000000000
 conjg__Rd44 = 1.0000000000000000
 I644 = 1.0000000000000000
 I5255 = 1.0000000000000000
 I2511 = 1.0000000000000000
 conjg__Ru44 = 1.0000000000000000
 I10155 = 1.0000000000000000
 Rn11 = 1.0000000000000000
 conjg__Ru22 = 1.0000000000000000
 I10255 = 1.0000000000000000
 I7411 = 1.0000000000000000
 conjg__Rl11 = 1.0000000000000000
 I3244 = 1.0000000000000000
 Rl22 = 1.0000000000000000
 I522 = 1.0000000000000000
 I2644 = 1.0000000000000000
 Ru44 = 1.0000000000000000
 I10244 = 1.0000000000000000
 I8522 = 1.0000000000000000
 conjg__Rl55 = 1.0000000000000000
 I7555 = 1.0000000000000000
 I7544 = 1.0000000000000000
 atan__tb = 1.4679150648029704
 bb = ( 73550.853360095585 , 0.0000000000000000 )
 beta = 1.4679150648029704
 cw = 0.87543218595510786
 mD211 = ( 634198.30000000005 , 0.0000000000000000 )
 mD222 = ( 634198.30000000005 , 0.0000000000000000 )
 mD233 = ( 627616.30000000005 , 0.0000000000000000 )
 mE211 = ( 31614.790000000001 , 0.0000000000000000 )
 mE222 = ( 31614.790000000001 , 0.0000000000000000 )
 mE233 = ( 30669.820000000000 , 0.0000000000000000 )
 mL211 = ( 80954.169999999998 , 0.0000000000000000 )
 mL222 = ( 80954.169999999998 , 0.0000000000000000 )
 mL233 = ( 80490.830000000002 , 0.0000000000000000 )
 mQ211 = ( 688882.50000000000 , 0.0000000000000000 )
 mQ222 = ( 688882.50000000000 , 0.0000000000000000 )
 mQ233 = ( 583070.19999999995 , 0.0000000000000000 )
 mU211 = ( 639933.00000000000 , 0.0000000000000000 )
 mU222 = ( 639933.00000000000 , 0.0000000000000000 )
 mU233 = ( 429837.29999999999 , 0.0000000000000000 )
 MUH = ( 521.69669999999996 , 0.0000000000000000 )
 Mx1 = ( 165.83799999999999 , 0.0000000000000000 )
 Mx2 = ( 309.46249999999998 , 0.0000000000000000 )
 Mx3 = ( 905.28769999999997 , 0.0000000000000000 )
 NN11 = ( 0.99387870000000000 , 0.0000000000000000 )
 NN12 = (-2.52624000000000008E-002, 0.0000000000000000 )
 NN13 = ( 9.98605199999999943E-002, 0.0000000000000000 )
 NN14 = (-3.99349800000000019E-002, 0.0000000000000000 )
 NN21 = ( 5.27653400000000009E-002, 0.0000000000000000 )
 NN22 = ( 0.96238789999999996 , 0.0000000000000000 )
 NN23 = (-0.22386909999999999 , 0.0000000000000000 )
 NN24 = ( 0.14459569999999999 , 0.0000000000000000 )
 NN31 = ( 4.05505099999999979E-002, 0.0000000000000000 )
 NN32 = (-5.90286900000000017E-002, 0.0000000000000000 )
 NN33 = (-0.70191400000000004 , 0.0000000000000000 )
 NN34 = (-0.70865219999999995 , 0.0000000000000000 )
 NN41 = ( 8.81849799999999961E-002, 0.0000000000000000 )
 NN42 = (-0.26398280000000002 , 0.0000000000000000 )
 NN43 = (-0.66875050000000003 , 0.0000000000000000 )
 NN44 = ( 0.68942680000000001 , 0.0000000000000000 )
 Rd33 = ( 0.95267219999999997 , 0.0000000000000000 )
 Rd36 = ( 0.30399939999999998 , 0.0000000000000000 )
 Rd63 = (-0.30399939999999998 , 0.0000000000000000 )
 Rd66 = ( 0.95267219999999997 , 0.0000000000000000 )
 Rl33 = ( 0.17978849999999999 , 0.0000000000000000 )
 Rl36 = ( 0.98370530000000000 , 0.0000000000000000 )
 Rl63 = (-0.98370530000000000 , 0.0000000000000000 )
 Rl66 = ( 0.17978849999999999 , 0.0000000000000000 )
 Ru33 = ( 0.46677930000000001 , 0.0000000000000000 )
 Ru36 = ( 0.88437390000000005 , 0.0000000000000000 )
 Ru63 = (-0.88437390000000005 , 0.0000000000000000 )
 Ru66 = ( 0.46677930000000001 , 0.0000000000000000 )
 UU11 = (-0.94684060000000003 , 0.0000000000000000 )
 UU12 = ( 0.32170320000000002 , 0.0000000000000000 )
 UU21 = ( 0.32170320000000002 , 0.0000000000000000 )
 UU22 = ( 0.94684060000000003 , 0.0000000000000000 )
 VV11 = (-0.97806579999999999 , 0.0000000000000000 )
 VV12 = ( 0.20829610000000001 , 0.0000000000000000 )
 VV21 = ( 0.20829610000000001 , 0.0000000000000000 )
 VV22 = ( 0.97806579999999999 , 0.0000000000000000 )
 td33 = ( -146.36550000000000 , 0.0000000000000000 )
 te33 = ( -24.188949999999998 , 0.0000000000000000 )
 tu33 = ( -622.48500000000001 , 0.0000000000000000 )
 yd33 = ( 0.13670679999999999 , 0.0000000000000000 )
 ye33 = ( 0.10055890000000001 , 0.0000000000000000 )
 yu33 = ( 0.87793080000000001 , 0.0000000000000000 )
 cw__exp__2 = 0.76638151220613859
 sw = 0.48334096432421431
 cos__beta = 0.10269986597163519
 sin__beta = 0.99471238935151907
 conjg__yu33 = ( 0.87793080000000001 , 0.0000000000000000 )
 I133 = ( 0.87793080000000001 , 0.0000000000000000 )
 conjg__yd33 = ( 0.13670679999999999 , 0.0000000000000000 )
 I1033 = ( 0.13023676791095998 , 0.0000000000000000 )
 I1036 = (-4.15587851759199947E-002, 0.0000000000000000 )
 conjg__Rd36 = ( 0.30399939999999998 , 0.0000000000000000 )
 I10033 = ( 9.24156352003599885E-002, 0.0000000000000000 )
 I10036 = ( 0.28961177719667996 , 0.0000000000000000 )
 conjg__Rd66 = ( 0.95267219999999997 , 0.0000000000000000 )
 I10063 = ( 0.28961177719667996 , 0.0000000000000000 )
 I10066 = ( 0.90758432065283989 , 0.0000000000000000 )
 conjg__Rl36 = ( 0.98370530000000000 , 0.0000000000000000 )
 I10133 = ( 0.96767611724809000 , 0.0000000000000000 )
 I10136 = ( 0.17685890032905000 , 0.0000000000000000 )
 conjg__Rl66 = ( 0.17978849999999999 , 0.0000000000000000 )
 I10163 = ( 0.17685890032905000 , 0.0000000000000000 )
 I10166 = ( 3.23239047322499973E-002, 0.0000000000000000 )
 conjg__Ru36 = ( 0.88437390000000005 , 0.0000000000000000 )
 I10233 = ( 0.78211719500121013 , 0.0000000000000000 )
 I10236 = ( 0.41280742998027004 , 0.0000000000000000 )
 conjg__Ru66 = ( 0.46677930000000001 , 0.0000000000000000 )
 I10263 = ( 0.41280742998027004 , 0.0000000000000000 )
 I10266 = ( 0.21788291490849002 , 0.0000000000000000 )
 I1133 = ( 4.15587851759199947E-002, 0.0000000000000000 )
 I1136 = ( 0.13023676791095998 , 0.0000000000000000 )
 conjg__Rd33 = ( 0.95267219999999997 , 0.0000000000000000 )
 I1233 = ( 0.90758432065283989 , 0.0000000000000000 )
 I1236 = (-0.28961177719667996 , 0.0000000000000000 )
 conjg__Rd63 = (-0.30399939999999998 , 0.0000000000000000 )
 I1263 = (-0.28961177719667996 , 0.0000000000000000 )
 I1266 = ( 9.24156352003599885E-002, 0.0000000000000000 )
 I1333 = ( 9.24156352003599885E-002, 0.0000000000000000 )
 I1336 = ( 0.28961177719667996 , 0.0000000000000000 )
 I1363 = ( 0.28961177719667996 , 0.0000000000000000 )
 I1366 = ( 0.90758432065283989 , 0.0000000000000000 )
 conjg__td33 = ( -146.36550000000000 , 0.0000000000000000 )
 I1433 = ( -42.389172575280661 , 0.0000000000000000 )
 I1436 = ( 13.526460653918290 , 0.0000000000000000 )
 I1463 = ( -132.83903288451324 , 0.0000000000000000 )
 I1466 = ( 42.389172575280661 , 0.0000000000000000 )
 I1533 = ( 3.95918993028710822E-002, 0.0000000000000000 )
 I1536 = (-1.26338457582085718E-002, 0.0000000000000000 )
 I1563 = ( 0.12407294820662364 , 0.0000000000000000 )
 I1566 = (-3.95918993028710822E-002, 0.0000000000000000 )
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 complexi = ( 0.0000000000000000 , 1.0000000000000000 )
 sqrt__2 = 1.4142135623730951
 sw__exp__2 = 0.23361848779386141
 conjg__NN11 = ( 0.99387870000000000 , 0.0000000000000000 )
 conjg__NN12 = (-2.52624000000000008E-002, 0.0000000000000000 )
 conjg__NN13 = ( 9.98605199999999943E-002, 0.0000000000000000 )
 conjg__NN14 = (-3.99349800000000019E-002, 0.0000000000000000 )
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 conjg__NN22 = ( 0.96238789999999996 , 0.0000000000000000 )
 conjg__NN23 = (-0.22386909999999999 , 0.0000000000000000 )
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 conjg__NN31 = ( 4.05505099999999979E-002, 0.0000000000000000 )
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 conjg__NN34 = (-0.70865219999999995 , 0.0000000000000000 )
 conjg__NN41 = ( 8.81849799999999961E-002, 0.0000000000000000 )
 conjg__NN42 = (-0.26398280000000002 , 0.0000000000000000 )
 conjg__NN43 = (-0.66875050000000003 , 0.0000000000000000 )
 conjg__NN44 = ( 0.68942680000000001 , 0.0000000000000000 )
 conjg__UU11 = (-0.94684060000000003 , 0.0000000000000000 )
 conjg__UU12 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU21 = ( 0.32170320000000002 , 0.0000000000000000 )
 conjg__UU22 = ( 0.94684060000000003 , 0.0000000000000000 )
 conjg__VV11 = (-0.97806579999999999 , 0.0000000000000000 )
 conjg__VV12 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV21 = ( 0.20829610000000001 , 0.0000000000000000 )
 conjg__VV22 = ( 0.97806579999999999 , 0.0000000000000000 )
 cos__alp = 0.99412731139107080
 sin__alp = -0.10821685980641312
 conjg__MUH = ( 521.69669999999996 , 0.0000000000000000 )
 ee = 0.31340934559420641
 vev = 246.22375633285301
 vd = 25.287146774416566
 vu = 244.92182097695846
 ee__exp__2 = 9.82254179057887034E-002
  Internal Params evaluated point by point
  ----------------------------------------

 sqrt__aS = 0.34234485537247383
 G__exp__2 = ( 1.4727786360028952 , 0.0000000000000000 )
  Couplings of mssm
  ---------------------------------

         GC_1 = -0.00000E+00 -0.10447E+00
         GC_2 = 0.00000E+00 0.20894E+00
        GC_40 = 0.00000E+00 0.00000E+00
       GC_243 = 0.00000E+00 0.37034E+00
       GC_244 = -0.00000E+00 -0.37034E+00
       GC_245 = 0.00000E+00 0.57680E-01
       GC_246 = -0.00000E+00 -0.11536E+00
       GC_310 = 0.00000E+00 0.65499E-01

 Collider parameters:
 --------------------

 Running at P P machine @ 14000.000000000000 GeV
 PDF set = cteq6l1
 alpha_s(Mz)= 0.1300 running at 1 loops.
 alpha_s(Mz)= 0.1300 running at 1 loops.
 Renormalization scale set on event-by-event basis
 Factorization scale set on event-by-event basis

 getting user params
Enter number of events and max and min iterations:
 Number of events and iterations 1000 9 3
Enter desired fractional accuracy:
 Desired fractional accuracy: -40961000.000000000
Enter 0 for fixed, 2 for adjustable grid:
Suppress amplitude (0 no, 1 yes)?
 Using suppressed amplitude.
Exact helicity sum (0 yes, n = number/event)?
 Explicitly summing over helicities
Enter Configuration Number:
Running Configuration Number: 2
 Using dconfig= 2
 BW Setting 2 0
 Attempting mappinvarients 1 4
 Completed mapping 4
 about to integrate 4 1000 9 3 4 1
 Keeping grid fixed.
  4 dimensions 1000 events 4 invarients 9 iterations 1 config(s), (0.99)
 Using h-tuple random number sequence.
 Grid read from file
 Grid defined OK
 Mapping Graph 2 to config 2
 No modification is setgrid, grid read from file
 Transforming s_hat 1/s 3 1.10800249479367356E-003
 Masses: 0.000E+00 0.000E+00 0.176E+03 0.290E+03
   2 1 2 3 4
 Got moffset 1
Using random seed offsets 2 : 1
  with seed 39
 Ranmar initialization seeds 19264 12571
  Particle 3 4
      Et > 0.0 0.0
       E > 0.0 0.0
     Eta < 100.0 100.0
   xqcut: 0.0 0.0
d R # 3 > -0.0 0.0
s min # 3> 0.0 0.0
xqcutij # 3> 0.0 0.0
 Excluding BW -1 1
 alpha_s for scale 549.46094898911190 is 0.10117583806531946
 Added good helicity 2 3.3203869038889753 in event 1
 Added good helicity 3 0.67961309611102505 in event 1
 Added good helicity 2 3.3203869038889753 in event 1
 Added good helicity 3 0.67961309611102494 in event 1
 Added good helicity 2 3.8683528754756402 in event 1
 Added good helicity 3 0.13164712452435956 in event 1
 Added good helicity 2 3.8683528754756402 in event 1
 Added good helicity 3 0.13164712452435964 in event 1
 Iteration 1 Mean: 0.2908E-03 Fluctuation: 0.212E-05 0.854E-03 100.0%
  1 0.2908E-03 +- 0.2119E-05 0.23
 Relative summed weights:
  0.2516E+00 0.2887E+00 0.2141E+00 0.2455E+00
 Relative number of events:
  0.2830E+00 0.3180E+00 0.1860E+00 0.2130E+00
 Events:
         283 318 186 213
 Iteration 2 Mean: 0.2941E-03 Fluctuation: 0.166E-05 0.104E-02 100.0%
  2 0.2941E-03 +- 0.1661E-05 0.25
 Relative summed weights:
  0.2660E+00 0.2547E+00 0.2529E+00 0.2264E+00
 Relative number of events:
  0.2955E+00 0.2870E+00 0.2180E+00 0.1995E+00
 Events:
         591 574 436 399
 Iteration 3 Mean: 0.2929E-03 Fluctuation: 0.110E-05 0.123E-02 100.0%
  3 0.2929E-03 +- 0.1100E-05 0.24
 Relative summed weights:
  0.2785E+00 0.2678E+00 0.2219E+00 0.2318E+00
 Relative number of events:
  0.3080E+00 0.2973E+00 0.1920E+00 0.2028E+00
 Events:
        1232 1189 768 811
 Found 394 events.
 Wrote 389 events.
 Correct xsec 2.92878983584128529E-004
 Event xsec 2.92878983584129613E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11996.616046589488 389 chi2: 0.78470817104252510
 Found 394 events.
 Wrote 389 events.
 Correct xsec 2.92878983584128529E-004
 Event xsec 2.92878983584129613E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 4 Mean: 0.2923E-03 Fluctuation: 0.769E-06 0.110E-02 100.0%
  4 0.2923E-03 +- 0.7688E-06 0.24
 Relative summed weights:
  0.2775E+00 0.2731E+00 0.2127E+00 0.2367E+00
 Relative number of events:
  0.3078E+00 0.3031E+00 0.1840E+00 0.2051E+00
 Events:
        2462 2425 1472 1641
 Found 783 events.
 Wrote 778 events.
 Correct xsec 2.92693589889005709E-004
 Event xsec 2.92693589889003541E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11989.022135443563 778 chi2: 0.53160039017477145
 Found 783 events.
 Wrote 778 events.
 Correct xsec 2.92693589889005709E-004
 Event xsec 2.92693589889003541E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 5 Mean: 0.2929E-03 Fluctuation: 0.579E-06 0.131E-02 100.0%
  5 0.2929E-03 +- 0.5787E-06 0.25
 Relative summed weights:
  0.2756E+00 0.2731E+00 0.2229E+00 0.2284E+00
 Relative number of events:
  0.3061E+00 0.3036E+00 0.1935E+00 0.1968E+00
 Events:
        4897 4858 3096 3149
 Found 1628 events.
 Wrote 1623 events.
 Correct xsec 2.92730308173952663E-004
 Event xsec 2.92730308173954343E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11990.526153113275 1623 chi2: 0.24067305605977157
 Found 1628 events.
 Wrote 1623 events.
 Correct xsec 2.92730308173952663E-004
 Event xsec 2.92730308173954343E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 6 Mean: 0.2931E-03 Fluctuation: 0.413E-06 0.144E-02 100.0%
  6 0.2931E-03 +- 0.4125E-06 0.25
 Relative summed weights:
  0.2718E+00 0.2679E+00 0.2303E+00 0.2301E+00
 Relative number of events:
  0.3032E+00 0.2989E+00 0.1991E+00 0.1989E+00
 Events:
        9701 9564 6371 6364
 Found 3119 events.
 Wrote 3114 events.
 Correct xsec 2.92946919055011765E-004
 Event xsec 2.92946919054991870E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 11999.398751412336 3114 chi2: 0.47935180917230730
 Found 3119 events.
 Wrote 3114 events.
 Correct xsec 2.92946919055011765E-004
 Event xsec 2.92946919054991870E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 7 Mean: 0.2931E-03 Fluctuation: 0.284E-06 0.145E-02 100.0%
  7 0.2931E-03 +- 0.2840E-06 0.25
 Relative summed weights:
  0.2729E+00 0.2714E+00 0.2282E+00 0.2275E+00
 Relative number of events:
  0.3034E+00 0.3024E+00 0.1973E+00 0.1969E+00
 Events:
       19417 19355 12628 12600
 Found 6506 events.
 Wrote 6501 events.
 Correct xsec 2.93070386146353809E-004
 Event xsec 2.93070386146379830E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 12004.456086940798 6501 chi2: 4.09238294614342954E-002
 Found 6506 events.
 Wrote 6501 events.
 Correct xsec 2.93070386146353809E-004
 Event xsec 2.93070386146379830E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Iteration 8 Mean: 0.2933E-03 Fluctuation: 0.201E-06 0.220E-02 100.0%
  8 0.2933E-03 +- 0.2014E-06 0.25
 Relative summed weights:
  0.2727E+00 0.2710E+00 0.2278E+00 0.2285E+00
 Relative number of events:
  0.3033E+00 0.3020E+00 0.1970E+00 0.1976E+00
 Events:
       38826 38660 25220 25294
 Found 12741 events.
 Wrote 12736 events.
 Correct xsec 2.93203586398204426E-004
 Event xsec 2.93203586398193855E-004
 Events wgts > 1: 0
 % Cross section > 1: 0.0000000000000000 0.0000000000000000
 Checking number of events 12009.912102456852 12736 chi2: 0.20793061743970487

 -------------------------------------------------------------------------------
 Accumulated results: Integral = 0.2931E-03
                        Std dev = 0.1428E-06
             Chi**2 per DoF. = 0.5125
 -------------------------------------------------------------------------------
-----------------------------------------------------
---------------------------
 Results Last 3 iters: Integral = 0.2932E-03
                         Std dev = 0.1526E-06
                 Chi**2 per DoF. = 0.2079
-----------------------------------------------------
---------------------------
 Status -40961000.000000000 9 9
 We found enough events 12736 12009.912102456852

Question information

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MadGraph5_aMC@NLO Edit question
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Revision history for this message
Johan Alwall (johan-alwall) said :
#1

Hello Marcel,

I notice that you are not using fixed renormalization and factorization scales in the MadGraph simulation (in the run_card). When comparing between different programs, I would suggest to use fixed scales in all programs (or make sure the dynamical scales are defined in exactly the same way between the programs). In general (although not relevant for this process) you also need to make sure that all programs use the same alpha_s (cteq6l1 requires 1-loop alpha_s(Mz)=0.130). Finally (for this example), you can check that the stau1-stau2 mixing is identical, to make sure the programs treat the param_card in exactly the same way. If this is not the case, please let us know.

All the best,
Johan

Revision history for this message
Marcel Rothering (marcel-rothering) said :
#2

Hello,

thank you for your answer. Which ren. and fact. scale does madgraph use if it's not fixed?
I would like to use the invariant mass of the two produced particles as a ren. and fact. scale as the central scale value.
Do you know what I have to change?

And I will change my process to sel+ sel- to get rid of the mixing :) and I'll check the stau case later.

Have a nice weekend,
Marcel

Revision history for this message
Johan Alwall (johan-alwall) said :
#3

Hello Marcel,

You find information about how to implement your own scales in the FAQ on our wiki:
https://cp3wks05.fynu.ucl.ac.be/projects/madgraph/wiki/FAQ-General-2

All the best,
Johan

Can you help with this problem?

Provide an answer of your own, or ask Marcel Rothering for more information if necessary.

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