source: trunk/source/processes/electromagnetic/lowenergy/src/G4hICRU49Nuclear.cc @ 1196

Last change on this file since 1196 was 819, checked in by garnier, 16 years ago

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25//
26//
27// -------------------------------------------------------------------
28//
29// GEANT4 Class file
30//
31//
32// File name:     G4hICRU49Nuclear
33//
34// Author:        V.Ivanchenko (Vladimir.Ivanchenko@cern.ch)
35//
36// Creation date: 20 July 2000
37//
38// Modifications:
39// 20/07/2000  V.Ivanchenko First implementation
40// 10/05/2001  V.Ivanchenko Clean up againist Linux compilation with -Wall
41//
42// Class Description:
43//
44// Nuclear stopping power parametrised according to
45// ICRU Report N49, 1993. Moliere model.
46// G.Moliere "Theorie der Streuung schneller geladener Teilchen I;
47// Einzelstreuungam abbgeschirmten Coulomb-Feld" Z. f. Naturforsch, A2,
48// 133 (1947).
49//
50// Class Description: End
51//
52// -------------------------------------------------------------------
53//
54//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
55
56#include "G4hICRU49Nuclear.hh"
57#include "G4UnitsTable.hh"
58#include "globals.hh"
59#include "Randomize.hh"
60
61//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
62
63G4hICRU49Nuclear::G4hICRU49Nuclear():G4VhNuclearStoppingPower()
64{;}
65
66//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
67
68G4hICRU49Nuclear::~G4hICRU49Nuclear() 
69{;}
70
71//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
72
73G4double G4hICRU49Nuclear::NuclearStoppingPower(G4double kineticEnergy,
74                                G4double z1, G4double z2, 
75                                G4double m1, G4double m2) const
76{ 
77  G4double energy = kineticEnergy/keV ;  // energy in keV
78  G4double ionloss = 0.0;
79 
80  G4double rm = (m1 + m2) * ( std::pow(z1, .23) + std::pow(z2, .23) ) ;
81
82  G4double er = 32.536 * m2 * energy / ( z1 * z2 * rm ) ;  // reduced energy
83
84  static G4double a[104][2] = {
85  { 1.0E+8, 5.831E-8},
86  { 8.0E+7, 7.288E-8},
87  { 6.0E+7, 9.719E-8},
88  { 5.0E+7, 1.166E-7},
89  { 4.0E+7, 1.457E-7},
90  { 3.0E+7, 1.942E-7},
91  { 2.0E+7, 2.916E-7},
92  { 1.5E+7, 3.887E-7},
93
94  { 1.0E+7, 5.833E-7},
95  { 8.0E+6, 7.287E-7},
96  { 6.0E+6, 9.712E-7},
97  { 5.0E+6, 1.166E-6},
98  { 4.0E+6, 1.457E-6},
99  { 3.0E+6, 1.941E-6},
100  { 2.0E+6, 2.911E-6},
101  { 1.5E+6, 3.878E-6},
102
103  { 1.0E+6, 5.810E-6},
104  { 8.0E+5, 7.262E-6},
105  { 6.0E+5, 9.663E-6},
106  { 5.0E+5, 1.157E-5},
107  { 4.0E+5, 1.442E-5},
108  { 3.0E+5, 1.913E-5},
109  { 2.0E+5, 2.845E-5},
110  { 1.5E+5, 3.762E-5},
111
112  { 1.0E+5, 5.554E-5},
113  { 8.0E+4, 6.866E-5},
114  { 6.0E+4, 9.020E-5},
115  { 5.0E+4, 1.070E-4},
116  { 4.0E+4, 1.319E-4},
117  { 3.0E+4, 1.722E-4},
118  { 2.0E+4, 2.499E-4},
119  { 1.5E+4, 3.248E-4},
120
121  { 1.0E+4, 4.688E-4},
122  { 8.0E+3, 5.729E-4},
123  { 6.0E+3, 7.411E-4},
124  { 5.0E+3, 8.718E-4},
125  { 4.0E+3, 1.063E-3},
126  { 3.0E+3, 1.370E-3},
127  { 2.0E+3, 1.955E-3},
128  { 1.5E+3, 2.511E-3},
129
130  { 1.0E+3, 3.563E-3},
131  { 8.0E+2, 4.314E-3},
132  { 6.0E+2, 5.511E-3},
133  { 5.0E+2, 6.430E-3},
134  { 4.0E+2, 7.756E-3},
135  { 3.0E+2, 9.855E-3},
136  { 2.0E+2, 1.375E-2},
137  { 1.5E+2, 1.736E-2},
138
139  { 1.0E+2, 2.395E-2},
140  { 8.0E+1, 2.850E-2},
141  { 6.0E+1, 3.552E-2},
142  { 5.0E+1, 4.073E-2},
143  { 4.0E+1, 4.802E-2},
144  { 3.0E+1, 5.904E-2},
145  { 1.5E+1, 9.426E-2},
146
147  { 1.0E+1, 1.210E-1},
148  { 8.0E+0, 1.377E-1},
149  { 6.0E+0, 1.611E-1},
150  { 5.0E+0, 1.768E-1},
151  { 4.0E+0, 1.968E-1},
152  { 3.0E+0, 2.235E-1},
153  { 2.0E+0, 2.613E-1},
154  { 1.5E+0, 2.871E-1},
155
156  { 1.0E+0, 3.199E-1},
157  { 8.0E-1, 3.354E-1},
158  { 6.0E-1, 3.523E-1},
159  { 5.0E-1, 3.609E-1},
160  { 4.0E-1, 3.693E-1},
161  { 3.0E-1, 3.766E-1},
162  { 2.0E-1, 3.803E-1},
163  { 1.5E-1, 3.788E-1},
164
165  { 1.0E-1, 3.711E-1},
166  { 8.0E-2, 3.644E-1},
167  { 6.0E-2, 3.530E-1},
168  { 5.0E-2, 3.444E-1},
169  { 4.0E-2, 3.323E-1},
170  { 3.0E-2, 3.144E-1},
171  { 2.0E-2, 2.854E-1},
172  { 1.5E-2, 2.629E-1},
173
174  { 1.0E-2, 2.298E-1},
175  { 8.0E-3, 2.115E-1},
176  { 6.0E-3, 1.883E-1},
177  { 5.0E-3, 1.741E-1},
178  { 4.0E-3, 1.574E-1},
179  { 3.0E-3, 1.372E-1},
180  { 2.0E-3, 1.116E-1},
181  { 1.5E-3, 9.559E-2},
182
183  { 1.0E-3, 7.601E-2},
184  { 8.0E-4, 6.668E-2},
185  { 6.0E-4, 5.605E-2},
186  { 5.0E-4, 5.008E-2},
187  { 4.0E-4, 4.352E-2},
188  { 3.0E-4, 3.617E-2},
189  { 2.0E-4, 2.768E-2},
190  { 1.5E-4, 2.279E-2},
191
192  { 1.0E-4, 1.723E-2},
193  { 8.0E-5, 1.473E-2},
194  { 6.0E-5, 1.200E-2},
195  { 5.0E-5, 1.052E-2},
196  { 4.0E-5, 8.950E-3},
197  { 3.0E-5, 7.246E-3},
198  { 2.0E-5, 5.358E-3},
199  { 1.5E-5, 4.313E-3},
200  { 0.0, 3.166E-3}
201  };
202 
203  for (G4int i=1; i<104; i++)
204    {
205      if (er > a[i][0]) {
206        ionloss = 
207         (a[i][1]-a[i-1][1])*(er-a[i-1][0])/(a[i][0]-a[i-1][0])+a[i-1][1];   
208        break;
209      }
210    }
211
212  // Stragling
213  if(lossFlucFlag) {
214    G4double sig = 4.0 * m1 * m2 / ((m1 + m2)*(m1 + m2)*
215                  (4.0 + 0.197*std::pow(er,-1.6991)+6.584*std::pow(er,-1.0494))) ;
216
217    ionloss *= G4RandGauss::shoot(1.0,sig) ;
218  } 
219   
220  ionloss *= 8.462 * z1 * z2 * m1 / rm ; // Return to [ev/(10^15 atoms/cm^2]
221
222  if ( ionloss < 0.0) ionloss = 0.0 ;
223 
224  return ionloss;
225}
226
227
228
229
230
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