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G4NeutronHPFissionSpectrum.hh
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27 // $Id$
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29 #ifndef G4NeutronHPFissionSpectrum_h
30 #define G4NeutronHPFissionSpectrum_h 1
31 
32 #include <fstream>
34 
35 #include "globals.hh"
36 #include "G4ios.hh"
37 #include "Randomize.hh"
38 #include "G4NeutronHPVector.hh"
39 #include "G4VNeutronHPEDis.hh"
40 
41 // we will need a List of these .... one per term.
42 
44 {
45  public:
47  {
48  expm1 = std::exp(-1.);
49  }
51  {
52  }
53 
54  inline void Init(std::ifstream & aDataFile)
55  {
56  theFractionalProb.Init(aDataFile, CLHEP::eV);
57  theThetaDist.Init(aDataFile, CLHEP::eV);
58  }
59 
61  {
62  return theFractionalProb.GetY(anEnergy);
63  }
64 
65  inline G4double Sample(G4double anEnergy)
66  {
67  G4double theta = theThetaDist.GetY(anEnergy);
68  // here we need to sample Maxwells distribution, if
69  // need be.
70  G4double result, cut;
71  G4double range =50*CLHEP::MeV;
72  G4double max = Maxwell((theta*CLHEP::eV)/2., theta);
74  do
75  {
76  result = range*G4UniformRand();
77  value = Maxwell(result, theta);
78  cut = G4UniformRand();
79  }
80  while(cut > value/max);
81  return result;
82  }
83 
84  private:
85 
86  // this is the function to sample from.
87  inline G4double Maxwell(G4double anEnergy, G4double theta)
88  {
89  G4double result = std::sqrt(anEnergy/CLHEP::eV)*std::exp(-anEnergy/CLHEP::eV/theta);
90  return result;
91  }
92 
93  private:
94 
95  G4double expm1;
96 
97  G4NeutronHPVector theFractionalProb;
98 
99  G4NeutronHPVector theThetaDist;
100 
101 };
102 
103 #endif