Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4SmpSpNubarData.cc
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51// Copyright (c) 2006 The Regents of the University of California.
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53// UCRL-CODE-224807
54//
55//
56// $Id$
57//
58
59#include "G4fissionEvent.hh"
60
61#define nSPfissNubarIso 18
62
63G4double G4fissionEvent::G4SmpSpNubarData(G4int isotope) {
64
65/*
66 Description
67 Determine average number of neutrons from spontaneous fission for
68 Th-232,
69 U-232, U-233, U-234, U-235, U-236, U-238
70 Np-237,
71 Pu-239, Pu-240, Pu-241, Pu-242
72 Am-241,
73 Cm-242, Cm-244,
74 Bk-249,
75 Cf-252
76 Based on Ensslin's data.
77 N. Ensslin, et.al., "Application Guide to Neutron Multiplicity Counting,"
78 LA-13422-M (November 1998)
79*/
80
81/*
82 Input
83 iso - isotope
84 Output
85 G4SmpSpNubarData - average number of neutrons
86 -1. is the isotope has
87 no nubar data
88*/
89
90 G4int i;
91
92 static G4int spzaid [nSPfissNubarIso] = {
93 90232, 92232, 92233, 92234, 92235,
94 92236, 92238, 93237, 94238, 94239,
95 94240, 94241, 94242, 95241, 96242,
96 96244, 97249, 98252 };
97 static G4double spnubar [nSPfissNubarIso] = {
98 2.14, 1.71, 1.76, 1.81, 1.86,
99 1.91, 2.01, 2.05, 2.21, 2.16,
100 2.156, 2.25, 2.145, 3.22, 2.54,
101 2.72, 3.40, 3.757
102 };
103
104// Find nubar
105 for (i=0; i<nSPfissNubarIso; i++) {
106 if (isotope == spzaid[i]) {
107 return spnubar[i];
108 }
109 }
110// no nubar available for that isotope
111 return -1.;
112}
#define nSPfissNubarIso
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66