Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4PreCompoundNucleon.cc
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28//
29// GEANT4 Class file
30//
31//
32// File name: G4PreCompoundNucleon
33//
34// Author: V.Lara
35//
36// Modified:
37// 10.02.2009 J. M. Quesada cleanup
38// 20.08.2010 V.Ivanchenko added G4Pow and G4PreCompoundParameters pointers
39// use int Z and A and cleanup
40//
41
44#include "G4NuclearLevelData.hh"
45#include "G4SystemOfUnits.hh"
46
48 const G4ParticleDefinition* part, G4VCoulombBarrier* aCoulombBarrier)
49 : G4PreCompoundFragment(part,aCoulombBarrier)
50{}
51
53{}
54
57 const G4Fragment& aFragment)
58{
59 G4double U = aFragment.GetExcitationEnergy();
60 G4int P = aFragment.GetNumberOfParticles();
61 G4int H = aFragment.GetNumberOfHoles();
62 G4int N = P + H;
63
64 static const G4double sixoverpi2 = 6.0/CLHEP::pi2;
66 G4double g1 = sixoverpi2*fNucData->GetLevelDensity(theResZ, theResA, 0.0);
67
68 G4double A0 = (P*P+H*H+P-3*H)/(4.0*g0);
69 G4double A1 = (A0 - 0.5*P)/g1;
70
71 G4double E0 = U - A0;
72 if (E0 <= 0.0) { return 0.0; }
73
74 G4double E1 = U - eKin - theBindingEnergy - A1;
75 if (E1 <= 0.0) { return 0.0; }
76
77 G4double rj = GetRj(P, aFragment.GetNumberOfCharged());
78 G4double xs = CrossSection(eKin);
79
80 if (rj <0.0 || xs < 0.0) { return 0.0; }
81
82 static const G4double fact = 2*CLHEP::millibarn
83 /(CLHEP::pi2*CLHEP::hbarc*CLHEP::hbarc*CLHEP::hbarc);
84 G4double Probability = fact * theReducedMass * rj * xs * eKin * P * (N-1)
85 * g4calc->powN(g1*E1/(g0*E0),N-2) * g1 / (E0*g0*g0);
86
87 //G4cout << "N= " << N << " g0= " << g0 << " g1= " << g1 << " E0= " << E0 << " E1= " << E1
88 // << " prob= " << Probability << G4endl;
89
90 return Probability;
91}
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double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
G4int GetNumberOfParticles() const
Definition: G4Fragment.hh:366
G4int GetNumberOfHoles() const
Definition: G4Fragment.hh:386
G4double GetExcitationEnergy() const
Definition: G4Fragment.hh:312
G4int GetNumberOfCharged() const
Definition: G4Fragment.hh:371
G4double GetLevelDensity(G4int Z, G4int A, G4double U)
G4double powN(G4double x, G4int n) const
Definition: G4Pow.cc:162
G4double CrossSection(G4double ekin) const
virtual G4double GetRj(G4int NumberParticles, G4int NumberCharged) const =0
G4double ProbabilityDistributionFunction(G4double eKin, const G4Fragment &) override
G4PreCompoundNucleon(const G4ParticleDefinition *, G4VCoulombBarrier *aCoulombBarrier)
G4NuclearLevelData * fNucData
#define N
Definition: crc32.c:56