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