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G4SmpNuDistDataPu239_241_MC.cc
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57 
58 #include <cmath>
59 #include "G4fissionEvent.hh"
60 
62 
63 /*
64  Description
65  Sample Number of Neutrons from fission in Pu-239 and Pu-241 using
66  Zucker and Holden's tabulated data for Pu-239
67  The 11 P(nu) distributions are given as a function of nubar,
68  the average number of neutrons from induced fission for the
69  11 different energies (0 to 10 MeV), based on the Pu-239 data
70  from Zucker and Holden.
71 */
72 
73 /*
74  Input
75  nubar - average number of neutrons per fission
76  Output
77  G4SmpNuDistDataPu239_241_MC - sampled multiplicity
78 
79 */
80 
81  static G4double Pu239nu [11] [9] = {
82  {.0108826, .0994916, .2748898, .3269196, .2046061, .0726834, .0097282, .0006301, .0001685},
83  {.0084842, .0790030, .2536175, .3289870, .2328111, .0800161, .0155581, .0011760, .0003469},
84  {.0062555, .0611921, .2265608, .3260637, .2588354, .0956070, .0224705, .0025946, .0005205},
85  {.0045860, .0477879, .1983002, .3184667, .2792811, .1158950, .0301128, .0048471, .0007233},
86  {.0032908, .0374390, .1704196, .3071862, .2948565, .1392594, .0386738, .0078701, .0010046},
87  {.0022750, .0291416, .1437645, .2928006, .3063902, .1641647, .0484343, .0116151, .0014149},
88  {.0014893, .0222369, .1190439, .2756297, .3144908, .1892897, .0597353, .0160828, .0029917},
89  {.0009061, .0163528, .0968110, .2558524, .3194566, .2134888, .0729739, .0213339, .0020017},
90  {.0004647, .0113283, .0775201, .2335926, .3213289, .2356614, .0886183, .0274895, .0039531},
91  {.0002800, .0071460, .0615577, .2089810, .3200121, .2545846, .1072344, .0347255, .0054786},
92  {.0002064, .0038856, .0492548, .1822078, .3154159, .2687282, .1295143, .0432654, .0075217}
93  };
94  static G4double Pu239nubar [11] = {
95  2.8760000,
96  3.0088800,
97  3.1628300,
98  3.3167800,
99  3.4707300,
100  3.6246800,
101  3.7786300,
102  3.9325800,
103  4.0865300,
104  4.2404900,
105  4.3944400
106  };
107  G4double fraction, r, cum;
108  G4int engind, nu;
109 
110 /*
111  Check if nubar is within the range of experimental values
112 */
113  if(nubar >= Pu239nubar[0] && nubar <= Pu239nubar[10]) {
114 /*
115  Use Zucker and Holden Data
116 */
117  engind = 1;
118  while (nubar > Pu239nubar[engind]){ engind++;}
119  // Loop checking, 11.03.2015, T. Koi
120  fraction = (nubar-Pu239nubar[engind-1])/(Pu239nubar[engind]-Pu239nubar[engind-1]);
121  if(fisslibrng() > fraction) engind--;
122 
123  r = fisslibrng();
124  nu = 0;
125  cum = Pu239nu[engind][0];
126  while (r > cum && nu < 8){
127  // Loop checking, 11.03.2015, T. Koi
128  nu++;
129  cum += Pu239nu[engind][nu];
130  }
131  return nu;
132  } else {
133 /*
134  Use Terrell's formula
135 */
136  return (G4int) G4SmpTerrell(nubar);
137  }
138 }