Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4StatMFMacroBiNucleon.cc
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27//
28// Hadronic Process: Nuclear De-excitations
29// by V. Lara
30
32#include "G4StatMFParameters.hh"
34#include "G4SystemOfUnits.hh"
35#include "G4Log.hh"
36#include "G4Exp.hh"
37#include "G4Pow.hh"
38
39// Operators
40
41static const G4double degeneracy = 3.0;
42
43G4StatMFMacroBiNucleon & G4StatMFMacroBiNucleon::
44operator=(const G4StatMFMacroBiNucleon & )
45{
46 throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroBiNucleon::operator= meant to not be accessible");
47 return *this;
48}
49
50G4bool G4StatMFMacroBiNucleon::operator==(const G4StatMFMacroBiNucleon & ) const
51{
52 throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroBiNucleon::operator== meant to not be accessible");
53 return false;
54}
55
56
57G4bool G4StatMFMacroBiNucleon::operator!=(const G4StatMFMacroBiNucleon & ) const
58{
59 throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroBiNucleon::operator!= meant to not be accessible");
60 return true;
61}
62
64 const G4double mu,
65 const G4double nu,
66 const G4double T)
67{
68 G4double ThermalWaveLenght = 16.15*fermi/std::sqrt(T);
69 G4double lambda3 = ThermalWaveLenght*ThermalWaveLenght*ThermalWaveLenght;
70
72 //old value was 2.796*MeV
73 G4double exponent = (BindingE + theA*(mu+nu*theZARatio) -
76
77 // To avoid numerical problems
78 if (exponent < -300.0) exponent = -300.0;
79 else if (exponent > 300.0) exponent = 300.0;
80
81 _MeanMultiplicity = (degeneracy*FreeVol*theA*std::sqrt((G4double)theA)/lambda3)*
82 G4Exp(exponent);
83
84 return _MeanMultiplicity;
85}
86
88{
91 * theA*G4Pow::GetInstance()->Z23(theA) + 1.5*T;
92
93 return _Energy;
94}
95
97{
98 G4double Entropy = 0.0;
99 if (_MeanMultiplicity > 0.0) {
100 G4double ThermalWaveLenght = 16.15*fermi/std::sqrt(T);
101 G4double lambda3 = ThermalWaveLenght*ThermalWaveLenght*ThermalWaveLenght;
102 // Is this formula correct?
103 Entropy = _MeanMultiplicity*(2.5+G4Log(3.0*theA*std::sqrt((G4double)theA)*FreeVol
104 /(lambda3*_MeanMultiplicity)));
105 }
106 return Entropy;
107}
G4double G4Exp(G4double initial_x)
Exponential Function double precision.
Definition: G4Exp.hh:180
G4double G4Log(G4double x)
Definition: G4Log.hh:227
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
static G4double GetBindingEnergy(const G4int A, const G4int Z)
static G4Pow * GetInstance()
Definition: G4Pow.cc:41
G4double Z23(G4int Z) const
Definition: G4Pow.hh:125
G4double CalcEnergy(const G4double T)
G4double CalcMeanMultiplicity(const G4double FreeVol, const G4double mu, const G4double nu, const G4double T)
G4double CalcEntropy(const G4double T, const G4double FreeVol)
static G4double GetCoulomb()