source: trunk/source/processes/hadronic/models/de_excitation/multifragmentation/src/G4StatMFMacroNucleon.cc @ 1337

Last change on this file since 1337 was 1337, checked in by garnier, 14 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 4.6 KB
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27// $Id: G4StatMFMacroNucleon.cc,v 1.6 2008/07/25 11:20:47 vnivanch Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-01 $
29//
30// Hadronic Process: Nuclear De-excitations
31// by V. Lara
32
33#include "G4StatMFMacroNucleon.hh"
34
35// Operators
36
37G4StatMFMacroNucleon & G4StatMFMacroNucleon::
38operator=(const G4StatMFMacroNucleon & )
39{
40    throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroNucleon::operator= meant to not be accessable");
41    return *this;
42}
43
44
45G4bool G4StatMFMacroNucleon::operator==(const G4StatMFMacroNucleon & ) const
46{
47    throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroNucleon::operator== meant to not be accessable");
48    return false;
49}
50 
51
52G4bool G4StatMFMacroNucleon::operator!=(const G4StatMFMacroNucleon & ) const
53{
54    throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroNucleon::operator!= meant to not be accessable");
55    return true;
56}
57
58G4double G4StatMFMacroNucleon::CalcMeanMultiplicity(const G4double FreeVol, const G4double mu, 
59                                                    const G4double nu, const G4double T)
60{
61    if (T <= 0.0) throw G4HadronicException(__FILE__, __LINE__, "G4StatMFMacroNucleon::CalcMeanMultiplicity: Temperature less or equal 0");
62    const G4double ThermalWaveLenght = 16.15*fermi/std::sqrt(T);
63       
64    const G4double lambda3 = ThermalWaveLenght*ThermalWaveLenght*ThermalWaveLenght;
65       
66    const G4double degeneracy = 2.0;
67       
68    const G4double Coulomb = (3./5.)*(elm_coupling/G4StatMFParameters::Getr0())*
69        (1.0 - 1.0/std::pow(1.0+G4StatMFParameters::GetKappaCoulomb(),1./3.));
70
71    G4double exponent_proton = (mu+nu-Coulomb)/T;
72    G4double exponent_neutron = mu/T;
73
74    if (exponent_neutron > 700.0) exponent_neutron = 700.0;
75    if (exponent_proton > 700.0) exponent_proton = 700.0;
76
77    _NeutronMeanMultiplicity = (degeneracy*FreeVol/lambda3)*std::exp(exponent_neutron);
78       
79    _ProtonMeanMultiplicity = (degeneracy*FreeVol/lambda3)*std::exp(exponent_proton);
80
81       
82
83    return _MeanMultiplicity = _NeutronMeanMultiplicity + _ProtonMeanMultiplicity;
84       
85}
86
87
88G4double G4StatMFMacroNucleon::CalcEnergy(const G4double T)
89{
90    const G4double Coulomb = (3./5.)*(elm_coupling/G4StatMFParameters::Getr0())*
91        (1.0 - 1.0/std::pow(1.0+G4StatMFParameters::GetKappaCoulomb(),1./3.));
92                                                                       
93    return _Energy = Coulomb * theZARatio * theZARatio + (3./2.) * T;
94                                                       
95}
96
97G4double G4StatMFMacroNucleon::CalcEntropy(const G4double T, const G4double FreeVol)
98{
99    const G4double ThermalWaveLenght = 16.15*fermi/std::sqrt(T);
100    const G4double lambda3 = ThermalWaveLenght*ThermalWaveLenght*ThermalWaveLenght;
101
102    G4double NeutronEntropy = 0.0;
103    if (_NeutronMeanMultiplicity > 0.0)
104        NeutronEntropy = _NeutronMeanMultiplicity*(5./2.+
105                                                   std::log(2.0*static_cast<G4double>(theA)*FreeVol/
106                                                       (lambda3*_NeutronMeanMultiplicity)));
107                                                               
108                                                               
109    G4double ProtonEntropy = 0.0;
110    if (_ProtonMeanMultiplicity > 0.0)
111        ProtonEntropy = _ProtonMeanMultiplicity*(5./2.+
112                                                 std::log(2.0*static_cast<G4double>(theA)*FreeVol/
113                                                     (lambda3*_ProtonMeanMultiplicity)));
114                                                               
115                                                               
116    return NeutronEntropy+ProtonEntropy;
117}
118
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