source: trunk/source/processes/electromagnetic/lowenergy/src/G4Generator2BS.cc @ 1347

Last change on this file since 1347 was 1347, checked in by garnier, 13 years ago

geant4 tag 9.4

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25//
26// $Id: G4Generator2BS.cc,v 1.10 2010/10/14 14:01:02 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-04-ref-00 $
28//
29// -------------------------------------------------------------------
30//
31// GEANT4 Class file
32//
33//
34// File name:     G4Generator2BS
35//
36// Author:        Andreia Trindade (andreia@lip.pt)
37//                Pedro Rodrigues  (psilva@lip.pt)
38//                Luis Peralta     (luis@lip.pt)
39//
40// Creation date: 2 June 2003
41//
42// Modifications:
43// 02 Jun 2003               First implementation acording with new design
44// 05 Nov 2003  MGP          Fixed std namespace
45// 17 Nov 2003  MGP          Fixed compilation problem on Windows                 
46// 12 Oct 2010  V.Ivanchenko Moved RejectionFunction inline, use G4Pow to speadup
47//
48// Class Description:
49//
50// Concrete base class for Bremsstrahlung Angular Distribution Generation
51// 2BS Distribution
52//
53// Class Description: End
54//
55// -------------------------------------------------------------------
56//
57
58#include "G4Generator2BS.hh"
59#include "Randomize.hh"   
60#include "G4Pow.hh"   
61
62//
63
64G4Generator2BS::G4Generator2BS(const G4String&)
65  : G4VBremAngularDistribution("AngularGen2BS")
66{
67  g4pow = G4Pow::GetInstance();
68}
69
70//   
71
72G4Generator2BS::~G4Generator2BS() 
73{}
74
75//
76
77G4double G4Generator2BS::PolarAngle(const G4double initial_energy,
78                                    const G4double final_energy,
79                                    const G4int Z)
80{
81
82  // Adapted from "Improved bremsstrahlung photon angular sampling in the EGS4 code system"
83  // by Alex F. Bielajew, Rahde Mohan anc Chen-Shou Chui, PIRS-0203
84  // Ionizing Radiation Standards
85  // Institute for National Measurement Standards
86  // National Research Council of Canada
87  // Departement of Medical Physics, Memorial Sloan-Kettering Cancer Center, New York
88
89  G4double theta = 0;
90
91  G4double initialTotalEnergy = (initial_energy+electron_mass_c2)/electron_mass_c2;
92  G4double finalTotalEnergy = (final_energy+electron_mass_c2)/electron_mass_c2;
93  EnergyRatio = finalTotalEnergy/initialTotalEnergy;
94  G4double gMaxEnergy = (pi*initialTotalEnergy)*(pi*initialTotalEnergy);
95
96  //G4double Zeff = std::sqrt(static_cast<G4double>(Z) * (static_cast<G4double>(Z) + 1.0));
97  //z = (0.00008116224*(std::pow(Zeff,0.3333333)));
98
99  // VI speadup
100  z = 0.00008116224*(g4pow->Z13(Z) + g4pow->Z13(Z+1));
101
102  // Rejection arguments
103  rejection_argument1 = (1.0+EnergyRatio*EnergyRatio); 
104  rejection_argument2 = - 2.0*EnergyRatio + 3.0*rejection_argument1;
105  rejection_argument3 = ((1-EnergyRatio)/(2.0*initialTotalEnergy*EnergyRatio))*
106    ((1-EnergyRatio)/(2.0*initialTotalEnergy*EnergyRatio));
107
108  // Calculate rejection function at 0, 1 and Emax
109  G4double gfunction0 = RejectionFunction(0.0);
110  G4double gfunction1 = RejectionFunction(1.0);
111  G4double gfunctionEmax = RejectionFunction(gMaxEnergy);
112
113  // Calculate Maximum value
114  G4double gMaximum = std::max(gfunction0,gfunction1);
115  gMaximum = std::max(gMaximum,gfunctionEmax);
116
117  G4double rand, gfunctionTest, randTest;
118
119  do{
120    rand = G4UniformRand();
121    rand /= (1 - rand + 1.0/gMaxEnergy);
122    gfunctionTest = RejectionFunction(rand);
123    randTest = G4UniformRand();
124
125  } while(randTest*gMaximum > gfunctionTest);
126
127  theta = std::sqrt(rand)/initialTotalEnergy;
128
129  return theta;
130}
131
132//
133
134void G4Generator2BS::PrintGeneratorInformation() const
135{
136  G4cout << "\n" << G4endl;
137  G4cout << "Bremsstrahlung Angular Generator is 2BS Generator "
138         << "from 2BS Koch & Motz distribution (Rev Mod Phys 31(4), 920 (1959))" << G4endl;
139  G4cout << "Sampling algorithm adapted from PIRS-0203" << G4endl;
140  G4cout << "\n" << G4endl;
141} 
142
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