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source: git/examples/Pythia8/split_stop.slha@ 9e1e2eb

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Last change on this file since 9e1e2eb was 258feee, checked in by ozgunkdz <ozgun.karadeniz@…>, 5 years ago

adding new cards for event production

  • Property mode set to 100644
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[258feee]1
2########################################################################################
3# TITLE: split_stau.slha
4#
5# AUTHOR: Olmo Cerri (Caltech)
6#
7##########################################################################################
8
9Block MODSEL # Model selection
10 1 0 # Generic MSSM
11Block MINPAR # Input parameters
12 3 1.00000000E+00 # tanb at m_Z
13#
14Block SMINPUTS # SM parameters
15 1 1.27931277E+02 # alpha_em^-1(MZ)^MSbar
16 2 1.16639000E-05 # G_mu [GeV^-2]
17 3 1.17200000E-01 # alpha_s(MZ)^MSbar
18 4 9.11876000E+01 # m_Z(pole)
19 5 4.20000000E+00 # m_b(m_b), MSbar
20 6 1.74300000E+02 # m_t(pole)
21 7 1.77700000E+00 # m_tau(pole)
22Block MASS # Mass spectrum
23# PDG code mass particle
24 25 125.1 # h0
25 35 10.0E+4 # H0
26 36 10.0E+4 # A0
27 37 10.0E+4 # H+
28 1000001 10.0E+4 # ~d_L
29 2000001 10.0E+4 # ~d_R
30 1000002 10.0E+4 # ~u_L
31 2000002 10.0E+4 # ~u_R
32 1000003 10.0E+4 # ~s_L
33 2000003 10.0E+4 # ~s_R
34 1000004 10.0E+4 # ~c_L
35 2000004 10.0E+4 # ~c_R
36 1000005 10.0E+4 # ~b_1
37 2000005 10.0E+4 # ~b_2
38 1000006 100.0 # ~t_1
39 2000006 10.0E+4 # ~t_2
40 1000011 10.0E+4 # ~e_L-
41 2000011 10.0E+4 # ~e_R-
42 1000012 10.0E+4 # ~nu_eL
43 1000013 10.0E+4 # ~mu_L-
44 2000013 10.0E+4 # ~mu_R-
45 1000014 10.0E+4 # ~nu_muL
46 1000015 10.0E+4 # ~tau_1-
47 2000015 10.0E+4 # ~tau_2-
48 1000016 10.0E+4 # ~nu_tauL
49 1000021 10.0E+4 # ~g
50 1000022 10.0E+4 # ~chi_10
51 1000023 10.0E+4 # ~chi_20
52 1000025 10.0E+4 # ~chi_30
53 1000035 10.0E+4 # ~chi_40
54 1000024 10.0E+4 # ~chi_1+
55 1000037 10.0E+4 # ~chi_2+
56#
57# UNUSED PARAMETERS TO AVOID SPURIOUS PYTHIA WARNINGS
58BLOCK NMIX # Neutralino Mixing Matrix
59 1 1 5.89256479E-05 # N_11
60 1 2 -9.99870165E-01 # N_12
61 1 3 1.57374072E-02 # N_13
62 1 4 -3.46186938E-03 # N_14
63 2 1 7.11109604E-01 # N_21
64 2 2 9.60214244E-03 # N_22
65 2 3 4.98321450E-01 # N_23
66 2 4 -4.95889769E-01 # N_24
67 3 1 2.46902595E-03 # N_31
68 3 2 -8.67983665E-03 # N_32
69 3 3 -7.07030728E-01 # N_33
70 3 4 -7.07125246E-01 # N_34
71 4 1 7.03076833E-01 # N_41
72 4 2 -9.59756694E-03 # N_42
73 4 3 -5.01533264E-01 # N_43
74 4 4 5.04038926E-01 # N_44
75#
76BLOCK UMIX # Chargino Mixing Matrix U
77 1 1 -6.11114489E-02 # U_11
78 1 2 9.98130949E-01 # U_12
79 2 1 9.98130949E-01 # U_21
80 2 2 6.11114489E-02 # U_22
81#
82BLOCK VMIX # Chargino Mixing Matrix V
83 1 1 -1.06093980E-01 # V_11
84 1 2 9.94356107E-01 # V_12
85 2 1 9.94356107E-01 # V_21
86 2 2 1.06093980E-01 # V_22
87#
88BLOCK STOPMIX # Stop Mixing Matrix
89 1 1 7.25615652E-01 # cos(theta_t)
90 1 2 6.88100229E-01 # sin(theta_t)
91 2 1 -6.88100229E-01 # -sin(theta_t)
92 2 2 7.25615652E-01 # cos(theta_t)
93#
94BLOCK SBOTMIX # Sbottom Mixing Matrix
95 1 1 3.00416594E-01 # cos(theta_b)
96 1 2 9.53808089E-01 # sin(theta_b)
97 2 1 -9.53808089E-01 # -sin(theta_b)
98 2 2 3.00416594E-01 # cos(theta_b)
99#
100BLOCK STAUMIX # Stau Mixing Matrix
101 1 1 6.51365969E-01 # cos(theta_tau)
102 1 2 7.58763714E-01 # sin(theta_tau)
103 2 1 -7.58763714E-01 # -sin(theta_tau)
104 2 2 6.51365969E-01 # cos(theta_tau)
105#
106BLOCK ALPHA # Higgs mixing
107 -4.65728972E-01 # Mixing angle in the neutral Higgs boson sector
108#
109BLOCK HMIX Q= 9.11876000E+01 # DRbar Higgs Parameters
110 1 1.10000000E+02 # mu(Q)
111 2 1.99999976E+00 # tanbeta(Q)
112 3 2.50826111E+02 # vev(Q)
113 4 4.01529744E+06 # MA^2(Q)
114#
115BLOCK GAUGE Q= 9.11876000E+01 # The gauge couplings
116 1 3.53213636E-01 # gprime(Q) DRbar
117 2 6.32193579E-01 # g(Q) DRbar
118 3 1.06600999E+00 # g3(Q) DRbar
119#
120BLOCK AU Q= 9.11876000E+01 # The trilinear couplings
121 1 1 0.00000000E+00 # A_u(Q) DRbar
122 2 2 0.00000000E+00 # A_c(Q) DRbar
123 3 3 0.00000000E+00 # A_t(Q) DRbar
124#
125BLOCK AD Q= 9.11876000E+01 # The trilinear couplings
126 1 1 0.00000000E+00 # A_d(Q) DRbar
127 2 2 0.00000000E+00 # A_s(Q) DRbar
128 3 3 0.00000000E+00 # A_b(Q) DRbar
129#
130BLOCK AE Q= 9.11876000E+01 # The trilinear couplings
131 1 1 0.00000000E+00 # A_e(Q) DRbar
132 2 2 0.00000000E+00 # A_mu(Q) DRbar
133 3 3 0.00000000E+00 # A_tau(Q) DRbar
134#
135BLOCK Yu Q= 9.11876000E+01 # The Yukawa couplings
136 1 1 0.00000000E+00 # y_u(Q) DRbar
137 2 2 0.00000000E+00 # y_c(Q) DRbar
138 3 3 9.76180304E-01 # y_t(Q) DRbar
139#
140BLOCK Yd Q= 9.11876000E+01 # The Yukawa couplings
141 1 1 0.00000000E+00 # y_d(Q) DRbar
142 2 2 0.00000000E+00 # y_s(Q) DRbar
143 3 3 3.38555349E-02 # y_b(Q) DRbar
144#
145BLOCK Ye Q= 9.11876000E+01 # The Yukawa couplings
146 1 1 0.00000000E+00 # y_e(Q) DRbar
147 2 2 0.00000000E+00 # y_mu(Q) DRbar
148 3 3 2.24045254E-02 # y_tau(Q) DRbar
149#
150BLOCK MSOFT Q= 9.11876000E+01 # The soft SUSY breaking masses at the scale Q
151 1 1.00000000E+03 # M_1
152 2 1.00000000E+03 # M_2
153 3 5.00000000E+03 # M_3
154 14 0.00000000E+00 # A_u
155 15 0.00000000E+00 # A_d
156 16 0.00000000E+00 # A_e
157 21 3.15670231E+06 # M^2_Hd
158 22 -5.53994874E+06 # M^2_Hu
159 31 5.00000000E+03 # M_eL
160 32 5.00000000E+03 # M_muL
161 33 5.00000000E+03 # M_tauL
162 34 5.00000000E+03 # M_eR
163 35 5.00000000E+03 # M_muR
164 36 5.00000000E+03 # M_tauR
165 41 5.00000000E+03 # M_q1L
166 42 5.00000000E+03 # M_q2L
167 43 5.00000000E+03 # M_q3L
168 44 5.00000000E+03 # M_uR
169 45 5.00000000E+03 # M_cR
170 46 5.00000000E+03 # M_tR
171 47 5.00000000E+03 # M_dR
172 48 5.00000000E+03 # M_sR
173 49 5.00000000E+03 # M_bR
174# =================
175# |The decay table|
176# =================
177# - The SUSY decays of the top quark are included.
178# PDG Width
179DECAY 1000006 0.00000000E+00 # ~t_1 decays
180#
181# DECAY 25 0.0040
182# 1.00000000E+00 2 1000022 1000022 # BR(H -> ~chi_10 ~chi_10)
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