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G4SmpNuDistDataU232_234_236_238_MC.cc
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56 // $Id: G4SmpNuDistDataU232_234_236_238_MC.cc 68799 2013-04-05 13:29:46Z gcosmo $
57 //
58 
59 #include <cmath>
60 #include "G4fissionEvent.hh"
61 
63 
64 /*
65  Description
66  Sample Number of Neutrons from fission in U-232, U-234, U-236,
67  and U-238 using Zucker and Holden's tabulated data for U-238
68  The 11 P(nu) distributions are given as a function of nubar,
69  the average number of neutrons from induced fission for the
70  11 different energies (0 to 10 MeV), based on the U-238 data
71  from Zucker and Holden.
72 */
73 
74 /*
75  Input
76  nubar - average number of neutrons per fission
77  Output
78  G4SmpNuDistDataU232_234_236_238_MC - sampled multiplicity
79 
80 */
81 
82  static G4double U238nu [11] [9] = {
83  {.0396484, .2529541, .2939544, .2644470, .1111758, .0312261, .0059347, .0005436, .0001158},
84  {.0299076, .2043215, .2995886, .2914889, .1301480, .0363119, .0073638, .0006947, .0001751},
85  {.0226651, .1624020, .2957263, .3119098, .1528786, .0434233, .0097473, .0009318, .0003159},
86  {.0170253, .1272992, .2840540, .3260192, .1779579, .0526575, .0130997, .0013467, .0005405},
87  {.0124932, .0984797, .2661875, .3344938, .2040116, .0640468, .0173837, .0020308, .0008730},
88  {.0088167, .0751744, .2436570, .3379711, .2297901, .0775971, .0225619, .0030689, .0013626},
89  {.0058736, .0565985, .2179252, .3368863, .2541575, .0933127, .0286200, .0045431, .0031316},
90  {.0035997, .0420460, .1904095, .3314575, .2760413, .1112075, .0355683, .0065387, .0031316},
91  {.0019495, .0309087, .1625055, .3217392, .2943792, .1313074, .0434347, .0091474, .0046284},
92  {.0008767, .0226587, .1356058, .3076919, .3080816, .1536446, .0522549, .0124682, .0067176},
93  {.0003271, .0168184, .1111114, .2892434, .3160166, .1782484, .0620617, .0166066, .0095665}
94  };
95  static G4double U238nubar [11] = {
96  2.2753781,
97  2.4305631,
98  2.5857481,
99  2.7409331,
100  2.8961181,
101  3.0513031,
102  3.2064881,
103  3.3616731,
104  3.5168581,
105  3.6720432,
106  3.8272281
107  };
108  G4double fraction, r, cum;
109  G4int engind, nu;
110 
111 /*
112  Check if nubar is within the range of experimental values
113 */
114  if(nubar >= U238nubar[0] && nubar <= U238nubar[10]) {
115 /*
116  Use Zucker and Holden Data
117 */
118  engind = 1;
119  while (nubar > U238nubar[engind]){ engind++;}
120  // Loop checking, 11.03.2015, T. Koi
121  fraction = (nubar-U238nubar[engind-1])/(U238nubar[engind]-U238nubar[engind-1]);
122  if(fisslibrng() > fraction) engind--;
123 
124  r = fisslibrng();
125  nu = 0;
126  cum = U238nu[engind][0];
127  while (r > cum && nu < 8){
128  // Loop checking, 11.03.2015, T. Koi
129  nu++;
130  cum += U238nu[engind][nu];
131  }
132  return nu;
133  } else {
134 /*
135  Use Terrell's formula
136 */
137  return (G4int) G4SmpTerrell(nubar);
138  }
139 }
double G4double
Definition: G4Types.hh:76
int G4int
Definition: G4Types.hh:78
G4int G4SmpNuDistDataU232_234_236_238_MC(G4double nubar)
G4double G4SmpTerrell(G4double nubar)
Definition: G4SmpTerrell.cc:69
static G4double fisslibrng(void)
Definition: G4rngc.cc:65