source: trunk/source/processes/electromagnetic/lowenergy/src/G4PenelopeBremsstrahlungAngular.cc @ 1315

Last change on this file since 1315 was 1315, checked in by garnier, 14 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

File size: 7.9 KB
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26// $Id: G4PenelopeBremsstrahlungAngular.cc,v 1.8 2009/06/10 13:32:36 mantero Exp $
27// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
28//
29// --------------------------------------------------------------
30//
31// File name:     G4PenelopeBremsstrahlungAngular
32//
33// Author:        Luciano Pandola
34//
35// Creation date: February 2003
36//
37// History:
38// -----------
39// 04 Feb 2003  L. Pandola       1st implementation
40// 19 Mar 2003  L. Pandola       Bugs fixed
41// 07 Nov 2003  L. Pandola       Added GetAtomicNumber method for testing
42//                               purposes
43//----------------------------------------------------------------
44
45#include "G4PenelopeBremsstrahlungAngular.hh"
46#include "G4PenelopeInterpolator.hh"
47#include "Randomize.hh"
48#include "globals.hh"
49
50G4PenelopeBremsstrahlungAngular::G4PenelopeBremsstrahlungAngular (G4int Zed)
51  : Zmat(Zed)
52{
53  InterpolationTableForZ();
54  InterpolationForK();
55}
56
57
58G4PenelopeBremsstrahlungAngular::~G4PenelopeBremsstrahlungAngular()
59{
60}
61
62G4int G4PenelopeBremsstrahlungAngular::GetAtomicNumber()
63{
64  return Zmat;
65}
66
67void G4PenelopeBremsstrahlungAngular::InterpolationTableForZ()
68{
69  G4double pZ[NumberofZPoints] = {2.0,8.0,13.0,47.0,79.0,92.0};
70  G4double pX[NumberofZPoints],pY[NumberofZPoints];
71  G4double QQ1[NumberofZPoints][NumberofEPoints][NumberofKPoints];
72  G4double QQ2[NumberofZPoints][NumberofEPoints][NumberofKPoints];
73 
74  //Read information from DataBase file
75  char* path = getenv("G4LEDATA");
76  if (!path)
77    {
78      G4String excep = "G4PenelopeBremsstrahlungAngular - G4LEDATA environment variable not set!";
79      G4Exception(excep);
80    }
81  G4String pathString(path);
82  G4String pathFile = pathString + "/penelope/br-ang-pen.dat";
83  std::ifstream file(pathFile);
84  std::filebuf* lsdp = file.rdbuf();
85 
86  if (!(lsdp->is_open()))
87    {
88      G4String excep = "G4PenelopeBremsstrahlungAngular - data file " + pathFile + " not found!";
89      G4Exception(excep);
90    }
91  G4int i=0,j=0,k=0; // i=index for Z, j=index for E, k=index for K
92  G4double a1,a2;
93  while(i != -1) {
94    file >> i >> j >> k >> a1 >> a2; 
95    if (i > -1){
96      QQ1[i][j][k]=a1;
97      QQ2[i][j][k]=a2;
98    }
99  } 
100  file.close();
101 
102
103  //Interpolation in Z
104  for (i=0;i<NumberofEPoints;i++){
105    for (j=0;j<NumberofKPoints;j++){
106      for (k=0;k<NumberofZPoints;k++){
107        pX[k]=std::log(QQ1[k][i][j]);
108        pY[k]=QQ2[k][i][j];
109      }
110      G4PenelopeInterpolator* interpolator1 = new G4PenelopeInterpolator(pZ,pX,NumberofZPoints);
111      Q1[i][j]=std::exp(interpolator1->CubicSplineInterpolation((G4double) Zmat));
112      delete interpolator1;
113      G4PenelopeInterpolator* interpolator2 = new G4PenelopeInterpolator(pZ,pY,NumberofZPoints);   
114      Q2[i][j]=interpolator2->CubicSplineInterpolation((G4double) Zmat);
115      delete interpolator2;
116    }
117  }
118 
119 
120  //std::ofstream fil("matrice.dat",std::ios::app);
121  //fil << "Numero atomico: " << Zmat << G4endl;
122  //for (i=0;i<NumberofEPoints;i++)
123  //{
124  //  fil << Q1[i][0] << " " << Q1[i][1] << " " << Q1[i][2] << " " << Q1[i][3] << G4endl;
125  //}
126  //fil.close();
127 
128}
129
130void G4PenelopeBremsstrahlungAngular::InterpolationForK()
131{
132  G4double pE[NumberofEPoints] = {1.0e-03,5.0e-03,1.0e-02,5.0e-02,1.0e-01,5.0e-01};
133  G4double pK[NumberofKPoints] = {0.0,0.6,0.8,0.95};
134  G4double ppK[reducedEnergyGrid];
135  G4double pX[NumberofKPoints];
136  G4int i,j;
137
138  for(i=0;i<reducedEnergyGrid;i++){
139    ppK[i]=((G4double) i) * 0.05;
140  }
141
142  for(i=0;i<NumberofEPoints;i++){
143    betas[i]=std::sqrt(pE[i]*(pE[i]+2*electron_mass_c2))/(pE[i]+electron_mass_c2);
144  }
145
146  for (i=0;i<NumberofEPoints;i++){
147    for (j=0;j<NumberofKPoints;j++){
148      Q1[i][j]=Q1[i][j]/((G4double) Zmat);
149    }
150  }
151
152  //Expanded table of distribution parameters
153  for (i=0;i<NumberofEPoints;i++){
154    for (j=0;j<NumberofKPoints;j++){
155      pX[j]=std::log(Q1[i][j]); //logarithmic
156    }
157    G4PenelopeInterpolator* interpolator = new G4PenelopeInterpolator(pK,pX,NumberofKPoints);
158    for (j=0;j<reducedEnergyGrid;j++){
159      Q1E[i][j]=interpolator->CubicSplineInterpolation(ppK[j]);
160    }
161    delete interpolator;
162    for (j=0;j<NumberofKPoints;j++){
163      pX[j]=Q2[i][j];
164    }
165    G4PenelopeInterpolator* interpolator2 = new G4PenelopeInterpolator(pK,pX,NumberofKPoints);
166    for (j=0;j<reducedEnergyGrid;j++){
167      Q2E[i][j]=interpolator2->CubicSplineInterpolation(ppK[j]);
168    }
169    delete interpolator2;
170  }
171}
172
173G4double G4PenelopeBremsstrahlungAngular::ExtractCosTheta(G4double e1,G4double e2)
174{
175  //e1 = kinetic energy of the electron
176  //e2 = energy of the bremsstrahlung photon
177
178  G4double beta = std::sqrt(e1*(e1+2*electron_mass_c2))/(e1+electron_mass_c2);
179 
180
181
182  G4double RK=20.0*e2/e1;
183  G4int ik=std::min((G4int) RK,19);
184 
185  G4double P10=0,P11=0,P1=0;
186  G4double P20=0,P21=0,P2=0;
187  G4double pX[NumberofEPoints];
188  //First coefficient
189  G4int i;
190  G4int j = ik;
191  for (i=0;i<NumberofEPoints;i++){
192    pX[i]=Q1E[i][j];
193  }
194  G4PenelopeInterpolator* interpolator = new G4PenelopeInterpolator(betas,pX,NumberofEPoints);
195  P10=interpolator->CubicSplineInterpolation(beta);
196  delete interpolator;
197  j++; //(j=ik+1)
198  for (i=0;i<NumberofEPoints;i++){
199    pX[i]=Q1E[i][j];
200  }
201  G4PenelopeInterpolator* interpolator2 = new G4PenelopeInterpolator(betas,pX,NumberofEPoints);
202  P11=interpolator2->CubicSplineInterpolation(beta);
203  delete interpolator2;
204  P1=P10+(RK-(G4double) ik)*(P11-P10);
205 
206  //Second coefficient
207  j = ik;
208  for (i=0;i<NumberofEPoints;i++){
209    pX[i]=Q2E[i][j];
210  }
211  G4PenelopeInterpolator* interpolator3 = new G4PenelopeInterpolator(betas,pX,NumberofEPoints);
212  P20=interpolator3->CubicSplineInterpolation(beta);
213  delete interpolator3;
214  j++; //(j=ik+1)
215  for (i=0;i<NumberofEPoints;i++){
216    pX[i]=Q2E[i][j];
217  }
218  G4PenelopeInterpolator* interpolator4 = new G4PenelopeInterpolator(betas,pX,NumberofEPoints);
219  P21=interpolator4->CubicSplineInterpolation(beta);
220  delete interpolator4;
221  P2=P20+(RK-(G4double) ik)*(P21-P20);
222 
223  //Sampling from the Lorenz-trasformed dipole distributions
224  P1=std::min(std::exp(P1)/beta,1.0);
225  G4double betap = std::min(std::max(beta*(1.0+P2/beta),0.0),0.9999);
226 
227  G4double cdt=0,testf=0;
228 
229  if (G4UniformRand() < P1){
230    do{
231      cdt = 2.0*G4UniformRand()-1.0;
232      testf=2.0*G4UniformRand()-(1.0+cdt*cdt);
233    }while(testf>0);
234  }
235  else{
236    do{
237      cdt = 2.0*G4UniformRand()-1.0;
238      testf=G4UniformRand()-(1.0-cdt*cdt);
239    }while(testf>0);
240  }
241  cdt = (cdt+betap)/(1.0+betap*cdt);
242  return cdt;
243}
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