source: trunk/source/processes/electromagnetic/lowenergy/src/G4CrossSectionChargeDecreasePartial.cc@ 1199

Last change on this file since 1199 was 1196, checked in by garnier, 16 years ago

update CVS release candidate geant4.9.3.01

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[819]1//
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25//
[1192]26// $Id: G4CrossSectionChargeDecreasePartial.cc,v 1.3 2009/06/10 13:32:36 mantero Exp $
[1196]27// GEANT4 tag $Name: geant4-09-03-cand-01 $
[819]28
29#include "G4CrossSectionChargeDecreasePartial.hh"
30
[961]31//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
[819]32
33G4CrossSectionChargeDecreasePartial::G4CrossSectionChargeDecreasePartial()
34{
35
36 //PROTON
37 f0[0][0]=1.;
38 a0[0][0]=-0.180;
39 a1[0][0]=-3.600;
40 b0[0][0]=-18.22;
41 b1[0][0]=-1.997;
42 c0[0][0]=0.215;
43 d0[0][0]=3.550;
44 x0[0][0]=3.450;
45 x1[0][0]=5.251;
46
47 numberOfPartialCrossSections[0] = 1;
48
49 //ALPHA++
50 f0[0][1]=1.; a0[0][1]=0.95;
51 a1[0][1]=-2.75;
52 b0[0][1]=-23.00;
53 c0[0][1]=0.215;
54 d0[0][1]=2.95;
55 x0[0][1]=3.50;
56
57 f0[1][1]=1.;
58 a0[1][1]=0.95;
59 a1[1][1]=-2.75;
60 b0[1][1]=-23.73;
61 c0[1][1]=0.250;
62 d0[1][1]=3.55;
63 x0[1][1]=3.72;
64
65 x1[0][1]=-1.;
66 b1[0][1]=-1.;
67
68 x1[1][1]=-1.;
69 b1[1][1]=-1.;
70
71 numberOfPartialCrossSections[1] = 2;
72
73 // ALPHA+
74 f0[0][2]=1.;
75 a0[0][2]=0.65;
76 a1[0][2]=-2.75;
77 b0[0][2]=-21.81;
78 c0[0][2]=0.232;
79 d0[0][2]=2.95;
80 x0[0][2]=3.53;
81
82 x1[0][2]=-1.;
83 b1[0][2]=-1.;
84
85 numberOfPartialCrossSections[2] = 1;
86
87}
88
[961]89//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
90
[819]91G4CrossSectionChargeDecreasePartial::~G4CrossSectionChargeDecreasePartial()
[961]92{}
[819]93
[961]94//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
95
[819]96G4double G4CrossSectionChargeDecreasePartial::CrossSection(G4double k, G4int index,
97 const G4ParticleDefinition* particleDefinition)
98{
99 G4int particleTypeIndex = 0;
100 G4DNAGenericIonsManager* instance;
101 instance = G4DNAGenericIonsManager::Instance();
102
103 if (particleDefinition == G4Proton::ProtonDefinition()) particleTypeIndex=0;
104 if (particleDefinition == instance->GetIon("alpha++")) particleTypeIndex=1;
105 if (particleDefinition == instance->GetIon("alpha+")) particleTypeIndex=2;
106
107 //
108 // sigma(T) = f0 10 ^ y(log10(T/eV))
109 //
110 // / a0 x + b0 x < x0
111 // |
112 // y(x) = < a0 x + b0 - c0 (x - x0)^d0 x0 <= x < x1
113 // |
114 // \ a1 x + b1 x >= x1
115 //
116 //
117 // f0, a0, a1, b0, b1, c0, d0, x0, x1 are parameters that change for protons and helium (0, +, ++)
118 //
119 // f0 has been added to the code in order to manage partial (shell-dependent) cross sections (if no shell dependence is present. f0=1. Sum of f0 over the considered shells should give 1)
120 //
121 // From Rad. Phys. and Chem. 59 (2000) 255-275, M. Dingfelder et al.
122 // Inelastic-collision cross sections of liquid water for interactions of energetic proton
123 //
124
125 if (x1[index][particleTypeIndex]<x0[index][particleTypeIndex])
[961]126 {
[819]127 //
128 // if x1 < x0 means that x1 and b1 will be calculated with the following formula (this piece of code is run on all alphas and not on protons)
129 //
130 // x1 = x0 + ((a0 - a1)/(c0 * d0)) ^ (1 / (d0 - 1))
131 //
132 // b1 = (a0 - a1) * x1 + b0 - c0 * (x1 - x0) ^ d0
133 //
134
135 x1[index][particleTypeIndex]=x0[index][particleTypeIndex] + std::pow((a0[index][particleTypeIndex] - a1[index][particleTypeIndex])
136 / (c0[index][particleTypeIndex] * d0[index][particleTypeIndex]), 1. / (d0[index][particleTypeIndex] - 1.));
137 b1[index][particleTypeIndex]=(a0[index][particleTypeIndex] - a1[index][particleTypeIndex]) * x1[index][particleTypeIndex]
138 + b0[index][particleTypeIndex] - c0[index][particleTypeIndex] * std::pow(x1[index][particleTypeIndex]
139 - x0[index][particleTypeIndex], d0[index][particleTypeIndex]);
[961]140 }
[819]141
142 G4double x(std::log10(k/eV));
143 G4double y;
144
145 if (x<x0[index][particleTypeIndex])
146 y=a0[index][particleTypeIndex] * x + b0[index][particleTypeIndex];
147 else if (x<x1[index][particleTypeIndex])
148 y=a0[index][particleTypeIndex] * x + b0[index][particleTypeIndex] - c0[index][particleTypeIndex]
149 * std::pow(x - x0[index][particleTypeIndex], d0[index][particleTypeIndex]);
150 else
151 y=a1[index][particleTypeIndex] * x + b1[index][particleTypeIndex];
152
153 return f0[index][particleTypeIndex] * std::pow(10., y)*m*m;
154
155}
156
157G4int G4CrossSectionChargeDecreasePartial::RandomSelect(G4double k,
158 const G4ParticleDefinition* particleDefinition)
159{
160 G4int particleTypeIndex = 0;
161 G4DNAGenericIonsManager *instance;
162 instance = G4DNAGenericIonsManager::Instance();
163
164 if (particleDefinition == G4Proton::ProtonDefinition()) particleTypeIndex = 0;
165 if (particleDefinition == instance->GetIon("alpha++")) particleTypeIndex = 1;
166 if (particleDefinition == instance->GetIon("alpha+")) particleTypeIndex = 2;
167
168 const G4int n = numberOfPartialCrossSections[particleTypeIndex];
169 G4double* values(new G4double[n]);
170 G4double value(0);
171 G4int i = n;
172
173 while (i>0)
[961]174 {
[819]175 i--;
176 values[i]=CrossSection(k, i, particleDefinition);
177 value+=values[i];
[961]178 }
[819]179
180 value*=G4UniformRand();
181
182 i=n;
183 while (i>0)
[961]184 {
[819]185 i--;
186
187 if (values[i]>value)
188 break;
189
190 value-=values[i];
[961]191 }
[819]192
193 delete[] values;
194
195 return i;
196}
197
[961]198//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
199
[819]200G4double G4CrossSectionChargeDecreasePartial::Sum(G4double k, const G4ParticleDefinition* particleDefinition)
201{
202 G4int particleTypeIndex = 0;
203 G4DNAGenericIonsManager* instance;
204 instance = G4DNAGenericIonsManager::Instance();
205
206 if (particleDefinition == G4Proton::ProtonDefinition()) particleTypeIndex=0;
207 if (particleDefinition == instance->GetIon("alpha++")) particleTypeIndex=1;
208 if (particleDefinition == instance->GetIon("alpha+")) particleTypeIndex=2;
209
210 G4double totalCrossSection = 0.;
211
212 for (G4int i=0; i<numberOfPartialCrossSections[particleTypeIndex]; i++)
[961]213 {
214 totalCrossSection += CrossSection(k,i,particleDefinition);
215 }
[819]216 return totalCrossSection;
217}
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