source: trunk/source/processes/hadronic/models/lll_fission/include/G4fissionEvent.hh@ 1036

Last change on this file since 1036 was 819, checked in by garnier, 17 years ago

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29// Redistribution and use in source and binary forms, with or without
30// modification, are permitted provided that the following conditions are met:
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32// 1. Redistributions of source code must retain the above copyright notice,
33// this list of conditions and the following disclaimer.
34// 2. Redistributions in binary form must reproduce the above copyright notice,
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42// MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
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51// Copyright (c) 2006 The Regents of the University of California.
52// All rights reserved.
53// UCRL-CODE-224807
54//
55// $Id: G4fissionEvent.hh,v 1.1 2007/05/30 00:41:48 dennis Exp $
56//
57
58#include "globals.hh"
59#include <string>
60
61class G4fissionEvent {
62 private:
63 G4int neutronNu; // number of neutrons in this fission event
64 G4double* neutronEnergies;
65 G4double* neutronVelocities;
66 G4double* neutronDircosu;
67 G4double* neutronDircosv;
68 G4double* neutronDircosw;
69 G4double* neutronAges;
70
71 G4int photonNu; // number of photons in this fission event
72 G4double* photonEnergies;
73 G4double* photonVelocities;
74 G4double* photonDircosu;
75 G4double* photonDircosv;
76 G4double* photonDircosw;
77 G4double* photonAges;
78
79 // options
80 static G4int delayoption;
81 static G4int correlationoption;
82 static G4int nudistoption;
83 static G4int Cf252ndistoption;
84 static G4int Cf252nengoption;
85 static G4double (*rngdptr)(void);
86 static float (*rngfptr)(void);
87
88 public:
89 // These are all the methods of this class accessible to the caller of the object
90 G4fissionEvent(G4int isotope, G4double time, G4double nubar, G4double eng);
91 ~G4fissionEvent();
92 G4int getNeutronNu() {
93 return neutronNu;
94 }
95 G4int getPhotonNu() {
96 return photonNu;
97 }
98 G4double getNeutronEnergy(G4int index) {
99 if (index >= 0 && index < neutronNu) return neutronEnergies[index];
100 else return -1;
101 }
102 G4double getNeutronVelocity(G4int index) {
103 if (index >= 0 && index < neutronNu) return neutronVelocities[index];
104 else return -1;
105 }
106 G4double getNeutronDircosu(G4int index) {
107 if (index >= 0 && index < neutronNu) return neutronDircosu[index];
108 else return -1;
109 }
110 G4double getNeutronDircosv(G4int index) {
111 if (index >= 0 && index < neutronNu) return neutronDircosv[index];
112 else return -1;
113 }
114 G4double getNeutronDircosw(G4int index) {
115 if (index >= 0 && index < neutronNu) return neutronDircosw[index];
116 else return -1;
117 }
118 G4double getPhotonEnergy(G4int index) {
119 if (index >= 0 && index < photonNu) return photonEnergies[index];
120 else return -1;
121 }
122 G4double getPhotonVelocity(G4int index) {
123 if (index >= 0 && index < photonNu) return photonVelocities[index];
124 else return -1;
125 }
126 G4double getPhotonDircosu(G4int index) {
127 if (index >= 0 && index < photonNu) return photonDircosu[index];
128 else return -1;
129 }
130 G4double getPhotonDircosv(G4int index) {
131 if (index >= 0 && index < photonNu) return photonDircosv[index];
132 else return -1;
133 }
134 G4double getPhotonDircosw(G4int index) {
135 if (index >= 0 && index < photonNu) return photonDircosw[index];
136 else return -1;
137 }
138 G4double getNeutronAge(G4int index) {
139 if (index >= 0 && index < neutronNu) return neutronAges[index];
140 else return -1;
141 }
142 G4double getPhotonAge(G4int index) {
143 if (index >= 0 && index < photonNu) return photonAges[index];
144 else return -1;
145 }
146 static void setDelayOption(G4int delay) {
147 delayoption = delay;
148 };
149 static void setCorrelationOption(G4int correlation) {
150 correlationoption = correlation;
151 };
152 static void setNudistOption(G4int nudist) {
153 nudistoption = nudist;
154 };
155 static void setCf252Option(G4int ndist, G4int neng) {
156 Cf252ndistoption = ndist;
157 Cf252nengoption = neng;
158 };
159 static void setRNGf(float (*funcptr) (void)) {
160 rngfptr = funcptr;
161 rngdptr = rngf2d;
162 }
163 static void setRNGd(G4double (*funcptr) (void)) {
164 rngdptr = funcptr;
165 }
166
167
168 private:
169 G4int G4SmpNuDistDataU232_234_236_238(G4double nubar);
170 G4int G4SmpNuDistDataU232_234_236_238_MC(G4double nubar);
171 G4int G4SmpNuDistDataU233_235(G4double nubar);
172 G4int G4SmpNuDistDataU233_235_MC(G4double nubar);
173 G4int G4SmpNuDistDataU235(G4double erg, G4int option);
174 G4int G4SmpNuDistDataPu239(G4double erg);
175 G4double G4SmpNVel(G4double eng, G4double* cosdiru, G4double* cosdirv, G4double* cosdirw);
176 G4double G4SmpNEngCf252(G4int option);
177 void G4SmpIsoDir(G4double* cosdiru, G4double* cosdirv, G4double* cosdirw);
178 G4double G4SmpGEng();
179 G4int G4SmpNuDistDataPu239_241(G4double nubar);
180 G4int G4SmpNuDistDataPu239_241_MC(G4double nubar);
181 G4int G4SmpNuDistDataU238(G4double erg);
182 G4int G4SmpNugDist(G4int isotope, G4double nubar);
183 G4double G4SmpPVel(G4double eng, G4double* cosdiru, G4double* cosdirv, G4double* cosdirw);
184 G4int G4SmpSpNuDistData(G4int isotope, G4int Cf252option);
185 G4double G4SmpSpNubarData(G4int isotope);
186 G4int G4SmpSpNugDistData(G4int isotope);
187 G4double G4SmpTerrell(G4double nubar);
188 G4double G4SmpWatt(G4double ePart, G4int iso);
189 void G4fissionerr(G4int iSever, std::string chSubNam, std::string chMsg);
190 static G4double fisslibrng(void);
191 static G4double rngf2d(void);
192};
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