source: trunk/source/processes/hadronic/models/im_r_matrix/src/G4AngularDistributionPP.cc @ 1201

Last change on this file since 1201 was 819, checked in by garnier, 16 years ago

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26#include "G4AngularDistributionPP.hh"
27#include "Randomize.hh"
28#include "G4ios.hh"
29
30// Initialization of static data arrays:
31#include "G4AngularDistributionPPData.hh"
32#include "Randomize.hh"
33
34
35G4double G4AngularDistributionPP::CosTheta(G4double s, G4double m1, G4double m2) const
36{
37    G4int verboseLevel=1;
38
39    G4double ek= ((s - sqr(m1) -sqr(m2) )/(2*m1) - m1 )/GeV   ;    // kinetic energy in GeV
40
41    // Find energy bin
42
43    G4int je1 = 0;
44    G4int je2 = NENERGY - 1;
45    do {
46      G4int midBin = (je1 + je2)/2;
47      if (ek < elab[midBin])
48        je2 = midBin;
49      else
50        je1 = midBin;
51    } while (je2 - je1 > 1);
52    //    G4int j;
53    //std::abs(ek-elab[je1]) < std::abs(ek-elab[je2]) ? j = je1 : j = je2;
54    G4double delab = elab[je2] - elab[je1];
55
56    // Sample the angle
57
58    G4float sample = G4UniformRand();
59    G4int ke1 = 0;
60    G4int ke2 = NANGLE - 1;
61    G4double dsig = sig[je2][0] - sig[je1][0];
62    G4double rc = dsig/delab;
63    G4double b = sig[je1][0] - rc*elab[je1];
64    G4double sigint1 = rc*ek + b;
65    G4double sigint2 = 0.;
66
67    if (verboseLevel > 1) G4cout << "sample=" << sample << G4endl
68                                 << ek << " " << ke1 << " " << ke2 << " "
69                                 << sigint1 << " " << sigint2 << G4endl;
70
71    do {
72      G4int midBin = (ke1 + ke2)/2;
73      dsig = sig[je2][midBin] - sig[je1][midBin];
74      rc = dsig/delab;
75      b = sig[je1][midBin] - rc*elab[je1];
76      G4double sigint = rc*ek + b;
77      if (sample < sigint) {
78        ke2 = midBin;
79        sigint2 = sigint;
80      }
81      else {
82        ke1 = midBin;
83        sigint1 = sigint;
84      }
85      if (verboseLevel > 1)G4cout << ke1 << " " << ke2 << " "
86                                  << sigint1 << " " << sigint2 << G4endl;
87    } while (ke2 - ke1 > 1);
88
89    // sigint1 and sigint2 should be recoverable from above loop
90
91    //    G4double dsig = sig[je2][ke1] - sig[je1][ke1];
92    //    G4double rc = dsig/delab;
93    //    G4double b = sig[je1][ke1] - rc*elab[je1];
94    //    G4double sigint1 = rc*ek + b;
95
96    //    G4double dsig = sig[je2][ke2] - sig[je1][ke2];
97    //    G4double rc = dsig/delab;
98    //    G4double b = sig[je1][ke2] - rc*elab[je1];
99    //    G4double sigint2 = rc*ek + b;
100
101    dsig = sigint2 - sigint1;
102    rc = 1./dsig;
103    b = ke1 - rc*sigint1;
104    G4double kint = rc*sample + b;
105    G4double theta = (0.5 + kint)*pi/180.;
106
107    //    G4int k;
108    //std::abs(sample-sig[j][ke1]) < std::abs(sample-sig[j][ke2]) ? k = ke1 : k = ke2;
109    //    G4double theta = (0.5 + k)*pi/180.;
110
111    if (verboseLevel > 1) {
112      G4cout << "   energy bin " << je1 << " energy=" << elab[je1] << G4endl;
113      G4cout << "   angle bin " << kint << " angle=" << theta/degree << G4endl;
114    }
115    G4double costh= std::cos(theta);
116//    G4cout << "scattering angle hpw "<<costh<<" "<<s<<" "<<m1<<" "<<m2<<G4endl;
117    return costh;
118}
119
120G4double G4AngularDistributionPP::Phi() const
121{
122    return twopi * G4UniformRand();
123}
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