source: trunk/source/processes/hadronic/models/neutron_hp/src/G4NeutronHPKallbachMannSyst.cc@ 900

Last change on this file since 900 was 819, checked in by garnier, 18 years ago

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25//
26// neutron_hp -- source file
27// J.P. Wellisch, Nov-1996
28// A prototype of the low energy neutron transport model.
29//
30#include "G4NeutronHPKallbachMannSyst.hh"
31#include "Randomize.hh"
32#include "G4HadronicException.hh"
33
34G4double G4NeutronHPKallbachMannSyst::Sample(G4double anEnergy)
35{
36 G4double result;
37
38 G4double zero = GetKallbachZero(anEnergy);
39 if(zero>1) zero=1.;
40 if(zero<-1)zero=-1.;
41 G4double max = Kallbach(zero, anEnergy);
42 double upper = Kallbach(1., anEnergy);
43 double lower = Kallbach(-1., anEnergy);
44 if(upper>max) max=upper;
45 if(lower>max) max=lower;
46 G4double value, random;
47 do
48 {
49 result = 2.*G4UniformRand()-1;
50 value = Kallbach(result, anEnergy)/max;
51 random = G4UniformRand();
52 }
53 while(random>value);
54
55 return result;
56}
57
58G4double G4NeutronHPKallbachMannSyst::Kallbach(G4double cosTh, G4double anEnergy)
59{
60 // Kallbach-Mann systematics without normalization.
61 G4double result;
62 G4double theX = A(anEnergy)*cosTh;
63 result = 0.5*(std::exp( theX)*(1+theCompoundFraction)
64 +std::exp(-theX)*(1-theCompoundFraction));
65 return result;
66}
67
68G4double G4NeutronHPKallbachMannSyst::GetKallbachZero(G4double anEnergy)
69{
70 G4double result;
71 result = 0.5 * (1./A(anEnergy)) * std::log((1-theCompoundFraction)/(1+theCompoundFraction));
72 return result;
73}
74
75G4double G4NeutronHPKallbachMannSyst::A(G4double anEnergy)
76{
77 G4double result;
78 G4double C1 = 0.04/MeV;
79 G4double C2 = 1.8E-6/(MeV*MeV*MeV);
80 G4double C3 = 6.7E-7/(MeV*MeV*MeV*MeV);
81
82 G4double epsa = anEnergy*theTargetMass/(theTargetMass+theIncidentMass);
83 G4int Ac = theTargetA+1;
84 G4int Nc = Ac - theTargetZ;
85 G4int AA = theTargetA;
86 G4int ZA = theTargetZ;
87 G4double ea = epsa+SeparationEnergy(Ac, Nc, AA, ZA);
88 G4double Et1 = 130*MeV;
89 G4double R1 = std::min(ea, Et1);
90 // theProductEnergy is still in CMS!!!
91 G4double epsb = theProductEnergy*(theProductMass+theResidualMass)/theResidualMass;
92 G4int AB = theResidualA;
93 G4int ZB = theResidualZ;
94 G4double eb = epsb+SeparationEnergy(Ac, Nc, AB, ZB );
95 G4double X1 = R1*eb/ea;
96 G4double Et3 = 41*MeV;
97 G4double R3 = std::min(ea, Et3);
98 G4double X3 = R3*eb/ea;
99 G4double Ma = 1;
100 G4double mb(0);
101 G4int productA = theTargetA+1-theResidualA;
102 G4int productZ = theTargetZ-theResidualZ;
103 if(productZ==0)
104 {
105 mb = 0.5;
106 }
107 else if(productZ==1)
108 {
109 mb = 1;
110 }
111 else if(productZ==2)
112 {
113 mb = 2;
114 if(productA==3) mb=1;
115 }
116 else
117 {
118 throw G4HadronicException(__FILE__, __LINE__, "Severe error in the sampling of Kallbach-Mann Systematics");
119 }
120
121 result = C1*X1 + C2*std::pow(X1, 3.) + C3*Ma*mb*std::pow(X3, 4.);
122 return result;
123}
124
125G4double G4NeutronHPKallbachMannSyst::SeparationEnergy(G4int Ac, G4int Nc, G4int AA, G4int ZA)
126{
127 G4double result;
128 G4int NA = AA-ZA;
129 G4int Zc = Ac-Nc;
130 result = 15.68*(Ac-AA);
131 result += -28.07*((Nc-Zc)*(Nc-Zc)/Ac - (NA-ZA)*(NA-ZA)/AA);
132 result += -18.56*(std::pow(G4double(Ac), 2./3.) - std::pow(G4double(AA), 2./3.));
133 result += 33.22*((Nc-Zc)*(Nc-Zc)/std::pow(G4double(Ac), 4./3.) - (NA-ZA)*(NA-ZA)/std::pow(G4double(AA), 4./3.));
134 result += -0.717*(Zc*Zc/std::pow(G4double(Ac),1./3.)-ZA*ZA/std::pow(G4double(AA),1./3.));
135 result += 1.211*(Zc*Zc/Ac-ZA*ZA/AA);
136 G4double totalBinding(0);
137 G4int productA = theTargetA+1-theResidualA;
138 G4int productZ = theTargetZ-theResidualZ;
139 if(productZ==0&&productA==1) totalBinding=0;
140 if(productZ==1&&productA==1) totalBinding=0;
141 if(productZ==1&&productA==2) totalBinding=2.22;
142 if(productZ==1&&productA==3) totalBinding=8.48;
143 if(productZ==2&&productA==3) totalBinding=7.72;
144 if(productZ==2&&productA==4) totalBinding=28.3;
145 result += -totalBinding;
146 result *= MeV;
147 return result;
148}
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