Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4FissionBarrier.cc
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27// $Id$
28//
29// Hadronic Process: Nuclear De-excitations
30// by V. Lara (Oct 1998)
31//
32// 17.11.2010 V.Ivanchenko cleanup and add usage of G4Pow
33
34#include "G4FissionBarrier.hh"
35#include "G4SystemOfUnits.hh"
36#include "G4Pow.hh"
37
39{}
40
42{}
43
46 // Compute fission barrier according with Barashenkov's
47 // prescription for A >= 65
48{
49 if (A >= 65) {
50 return BarashenkovFissionBarrier(A,Z)/(1.0 + std::sqrt(U/(2.0*A)));
51 } else { return 100.0*GeV; }
52}
53
55G4FissionBarrier::BarashenkovFissionBarrier(G4int A, G4int Z)
56 // Calculates Fission Barrier heights
57{
58 // Liquid drop model parameters for
59 // surface energy of a spherical nucleus
60 const G4double aSurf = 17.9439*MeV;
61 // and coulomb energy
62 const G4double aCoul = 0.7053*MeV;
63 const G4double k = 1.7826;
64 G4int N = A - Z;
65
66 // fissibility parameter
67 G4double x = (aCoul/(2.0*aSurf))*(Z*Z)/static_cast<G4double>(A);
68 x /= (1.0 - k*(N-Z)*(N-Z)/static_cast<G4double>(A*A));
69
70 // Liquid drop model part of Fission Barrier
71 G4double BF0 = aSurf*G4Pow::GetInstance()->Z23(A);
72 if (x <= 2./3.) { BF0 *= 0.38*(3./4.-x); }
73 else { BF0 *= 0.83*(1. - x)*(1. - x)*(1. - x); }
74
75 //
76 G4double D = 1.248*MeV;
77 D *= (N - 2*(N/2) + Z - 2*(Z/2));
78
79 return BF0 + D - SellPlusPairingCorrection(Z,N);
80}
81
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
G4double FissionBarrier(G4int A, G4int Z, G4double U)
static G4Pow * GetInstance()
Definition: G4Pow.cc:50
G4double Z23(G4int Z)
Definition: G4Pow.hh:134