source: trunk/source/processes/electromagnetic/xrays/test/testRandomCherenkov.cc@ 1337

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1//
2// ********************************************************************
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4// * *
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18// * This code implementation is the result of the scientific and *
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24// ********************************************************************
25//
26//
27// Unit test for Cherenkov models in media with random fluctuations
28//
29// 18.05.07 V. Grichine
30//
31//
32
33#include "G4ios.hh"
34#include <fstream>
35#include <cmath>
36#include "globals.hh"
37#include "Randomize.hh"
38#include "G4UnitsTable.hh"
39#include <iomanip>
40#include <complex>
41
42
43#include "G4Element.hh"
44#include "G4NistManager.hh"
45
46
47G4double epsilon = 1.2; // 1.05;
48
49G4double cof = (fine_structure_const/hbarc)*1.*eV; // *50.*0.9*0.3;
50
51// cof *= 50.*0.9*0.3; // T=0.9, Q=0.3, 1 eV of energy range
52
53using namespace std;
54
55
56///////////////////////////////////////////////////////////
57//
58// CR spectrum in transparent medium with fluctuations
59
60G4double RandomSpectrum(G4double ratio, G4double x)
61{
62 G4double result;
63 G4double beta2 = x/(1+x);
64 G4complex a = G4complex(epsilon*std::sqrt(1.-ratio*ratio)*beta2, ratio*epsilon*beta2);
65 G4complex b = 1. - 1./a;
66 G4complex ln = std::log(1./(1.-a));
67 G4complex bln = b*ln;
68
69 result = imag(bln);
70 result *= cof/pi;
71
72 return result;
73}
74
75/////////////////////////////////////////////////////////////////////////
76//
77// Tamm-Frank spectrum of transparent uniform medium
78
79G4double TammFrank(G4double x)
80{
81 G4double result;
82 G4double beta2 = x/(1+x);
83 G4double a = epsilon*beta2;
84
85 if( a < 1.) result = DBL_MIN;
86 else result = cof*(1.-1./a);
87
88 return result;
89}
90
91
92
93
94
95int main()
96{
97
98 G4int i, iMax;
99
100 std::ofstream writef("crspectrum.dat", std::ios::out ) ;
101 writef.setf( std::ios::scientific, std::ios::floatfield );
102
103 G4double betagamma, bg2, r, momentum; // , picr, kcr;
104 G4double tf, cr1, cr2, cr3, cr4;
105 iMax = 100; // 150;
106
107 writef<<iMax<<G4endl;
108
109 for( i = 0; i < iMax; i++ )
110 {
111
112 momentum = std::exp(i*0.1)*0.1*MeV;
113
114 betagamma = momentum; // /139.57018*MeV;
115 bg2 = betagamma*betagamma;
116
117 r = 0.7;
118 cr1 = RandomSpectrum(r,bg2);
119
120 r = 0.1;
121 cr2 = RandomSpectrum(r,bg2);
122
123 // picr = RandomSpectrum(r,bg2);
124
125 //betagamma = momentum/493.677*MeV;
126 // bg2 = betagamma*betagamma;
127 // kcr = RandomSpectrum(r,bg2);
128
129
130 // r = 0.01;
131 // cr3 = RandomSpectrum(r,bg2);
132
133 r = 0.001;
134 cr4 = RandomSpectrum(r,bg2);
135
136 tf = TammFrank(bg2);
137
138 // G4cout<<momentum<<"\t"<<picr<<"\t"<<kcr<<G4endl;
139 // writef<<momentum<<"\t"<<picr<<"\t"<<kcr<<G4endl;
140
141 G4cout<<momentum<<"\t"<<tf<<"\t"<<cr4<<"\t"<<cr2<<"\t"<<cr1<<G4endl;
142 writef<<momentum<<"\t"<<tf<<"\t"<<cr4<<"\t"<<cr2<<"\t"<<cr1<<G4endl;
143
144
145 }
146
147 return 1;
148} // end of main
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