Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4HETCNeutron.cc
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1//
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25//
26//
27// by V. Lara
28//
29// Modified:
30// 23.08.2010 V.Ivanchenko general cleanup, move constructor and destructor
31// the source, use G4Pow
32
33#include "G4HETCNeutron.hh"
35#include "G4SystemOfUnits.hh"
36#include "G4Neutron.hh"
37#include "G4NuclearLevelData.hh"
38
42
44{
45 return 0.76+2.2/theResA13;
46}
47
49{
50 return (2.12/(theResA13*theResA13)-0.05)/GetAlpha(); // in MeV
51}
52
54{
55 // (2s+1)
56 return 2.0;
57}
58
59G4double G4HETCNeutron::K(const G4Fragment& aFragment) const
60{
61 // Number of protons in emitted fragment
62 G4int Pa = theZ;
63 // Number of neutrons in emitted fragment
64 G4int Na = theA - Pa;
65
67
68 G4int P = aFragment.GetNumberOfParticles();
69 G4int H = aFragment.GetNumberOfHoles();
70
71 G4double result = (P > 0) ? (H + Na/(1.0 - r))/P : 0.0;
72 return result;
73}
74
76{
77 G4int H = frag.GetNumberOfHoles();
78 G4int Pb = frag.GetNumberOfParticles();
79 G4int Nb = Pb + H;
81 G4double g0 =
82 (6.0/CLHEP::pi2)*fNucData->GetLevelDensity(theFragZ,theFragA,U);
83
84 G4double Ab = std::max(0.0, (G4double)(Pb*Pb+H*H+Pb-3*H)/(4.0*g0));
85 G4double Emax = theMaxKinEnergy - Ab;
86
87 G4double cut = GetBeta() / (GetBeta()+Emax/G4double(Nb+1));
88 G4double x = (G4UniformRand() <= cut) ? BetaRand(Nb,1) : BetaRand(Nb,2);
89
90 return Emax * (1.0 - x);
91}
double G4double
Definition G4Types.hh:83
int G4int
Definition G4Types.hh:85
#define G4UniformRand()
Definition Randomize.hh:52
G4int GetNumberOfParticles() const
G4int GetNumberOfHoles() const
G4double GetExcitationEnergy() const
G4double BetaRand(G4int N, G4int L) const
G4double GetBeta() const override
G4double GetSpinFactor() const override
G4double SampleKineticEnergy(const G4Fragment &) override
G4double K(const G4Fragment &aFragment) const override
G4double GetAlpha() const override
G4double GetLevelDensity(G4int Z, G4int A, G4double U)