source: trunk/source/processes/hadronic/models/neutron_hp/src/G4NeutronHPCaptureData.cc@ 1350

Last change on this file since 1350 was 962, checked in by garnier, 17 years ago

update processes

File size: 7.7 KB
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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// 070523 add neglecting doppler broadening on the fly. T. Koi
31// 070613 fix memory leaking by T. Koi
32// 071002 enable cross section dump by T. Koi
33// 080428 change checking point of "neglecting doppler broadening" flag
34// from GetCrossSection to BuildPhysicsTable by T. Koi
35// 081024 G4NucleiPropertiesTable:: to G4NucleiProperties::
36//
37#include "G4NeutronHPCaptureData.hh"
38#include "G4Neutron.hh"
39#include "G4ElementTable.hh"
40#include "G4NeutronHPData.hh"
41
42G4bool G4NeutronHPCaptureData::IsApplicable(const G4DynamicParticle*aP, const G4Element*)
43{
44 G4bool result = true;
45 G4double eKin = aP->GetKineticEnergy();
46 if(eKin>20*MeV||aP->GetDefinition()!=G4Neutron::Neutron()) result = false;
47 return result;
48}
49
50G4NeutronHPCaptureData::G4NeutronHPCaptureData()
51{
52// TKDB
53 theCrossSections = 0;
54 onFlightDB = true;
55 BuildPhysicsTable(*G4Neutron::Neutron());
56}
57
58G4NeutronHPCaptureData::~G4NeutronHPCaptureData()
59{
60// TKDB
61 if ( theCrossSections != 0 )
62 theCrossSections->clearAndDestroy();
63
64 delete theCrossSections;
65}
66
67void G4NeutronHPCaptureData::BuildPhysicsTable(const G4ParticleDefinition& aP)
68{
69 if(&aP!=G4Neutron::Neutron())
70 throw G4HadronicException(__FILE__, __LINE__, "Attempt to use NeutronHP data for particles other than neutrons!!!");
71
72//080428
73 if ( getenv( "G4NEUTRONHP_NEGLECT_DOPPLER" ) ) onFlightDB = false;
74
75 size_t numberOfElements = G4Element::GetNumberOfElements();
76 // G4cout << "CALLED G4NeutronHPCaptureData::BuildPhysicsTable "<<numberOfElements<<G4endl;
77 // TKDB
78 if ( theCrossSections == 0 ) theCrossSections = new G4PhysicsTable( numberOfElements );
79
80 // make a PhysicsVector for each element
81
82 static const G4ElementTable *theElementTable = G4Element::GetElementTable();
83 for( size_t i=0; i<numberOfElements; ++i )
84 {
85 if(getenv("CaptureDataIndexDebug"))
86 {
87 G4int index_debug = ((*theElementTable)[i])->GetIndex();
88 G4cout << "IndexDebug "<< i <<" "<<index_debug<<G4endl;
89 }
90 G4PhysicsVector* physVec = G4NeutronHPData::
91 Instance()->MakePhysicsVector((*theElementTable)[i], this);
92 theCrossSections->push_back(physVec);
93 }
94}
95
96void G4NeutronHPCaptureData::DumpPhysicsTable(const G4ParticleDefinition& aP)
97{
98 if(&aP!=G4Neutron::Neutron())
99 throw G4HadronicException(__FILE__, __LINE__, "Attempt to use NeutronHP data for particles other than neutrons!!!");
100
101//
102// Dump element based cross section
103// range 10e-5 eV to 20 MeV
104// 10 point per decade
105// in barn
106//
107
108 G4cout << G4endl;
109 G4cout << G4endl;
110 G4cout << "Capture Cross Section of Neutron HP"<< G4endl;
111 G4cout << "(Pointwise cross-section at 0 Kelvin.)" << G4endl;
112 G4cout << G4endl;
113 G4cout << "Name of Element" << G4endl;
114 G4cout << "Energy[eV] XS[barn]" << G4endl;
115 G4cout << G4endl;
116
117 size_t numberOfElements = G4Element::GetNumberOfElements();
118 static const G4ElementTable *theElementTable = G4Element::GetElementTable();
119
120 for ( size_t i = 0 ; i < numberOfElements ; ++i )
121 {
122
123 G4cout << (*theElementTable)[i]->GetName() << G4endl;
124
125 G4int ie = 0;
126
127 for ( ie = 0 ; ie < 130 ; ie++ )
128 {
129 G4double eKinetic = 1.0e-5 * std::pow ( 10.0 , ie/10.0 ) *eV;
130 G4bool outOfRange = false;
131
132 if ( eKinetic < 20*MeV )
133 {
134 G4cout << eKinetic/eV << " " << (*((*theCrossSections)(i))).GetValue(eKinetic, outOfRange)/barn << G4endl;
135 }
136
137 }
138
139 G4cout << G4endl;
140 }
141
142
143// G4cout << "G4NeutronHPCaptureData::DumpPhysicsTable still to be implemented"<<G4endl;
144}
145
146#include "G4NucleiProperties.hh"
147
148G4double G4NeutronHPCaptureData::
149GetCrossSection(const G4DynamicParticle* aP, const G4Element*anE, G4double aT)
150{
151 G4double result = 0;
152 G4bool outOfRange;
153 G4int index = anE->GetIndex();
154
155 // prepare neutron
156 G4double eKinetic = aP->GetKineticEnergy();
157
158//if ( getenv( "G4NEUTRONHP_NEGLECT_DOPPLER" ) )
159//080428
160 if ( !onFlightDB )
161 {
162 G4double factor = 1.0;
163 if ( eKinetic < aT * k_Boltzmann )
164 {
165 // below 0.1 eV neutrons
166 // Have to do some, but now just igonre.
167 // Will take care after performance check.
168 // factor = factor * targetV;
169 }
170 return ( (*((*theCrossSections)(index))).GetValue(eKinetic, outOfRange) )* factor;
171 }
172
173 G4ReactionProduct theNeutron( aP->GetDefinition() );
174 theNeutron.SetMomentum( aP->GetMomentum() );
175 theNeutron.SetKineticEnergy( eKinetic );
176
177 // prepare thermal nucleus
178 G4Nucleus aNuc;
179 G4double eps = 0.0001;
180 G4double theA = anE->GetN();
181 G4double theZ = anE->GetZ();
182 G4double eleMass;
183 eleMass = G4NucleiProperties::GetNuclearMass( static_cast<G4int>(theA+eps) , static_cast<G4int>(theZ+eps) ) / G4Neutron::Neutron()->GetPDGMass();
184
185 G4ReactionProduct boosted;
186 G4double aXsection;
187
188 // MC integration loop
189 G4int counter = 0;
190 G4double buffer = 0;
191 G4int size = G4int(std::max(10., aT/60*kelvin));
192 G4ThreeVector neutronVelocity = 1./G4Neutron::Neutron()->GetPDGMass()*theNeutron.GetMomentum();
193 G4double neutronVMag = neutronVelocity.mag();
194
195 while(counter == 0 || std::abs(buffer-result/std::max(1,counter)) > 0.03*buffer)
196 {
197 if(counter) buffer = result/counter;
198 while (counter<size)
199 {
200 counter ++;
201 G4ReactionProduct aThermalNuc = aNuc.GetThermalNucleus(eleMass, aT);
202 boosted.Lorentz(theNeutron, aThermalNuc);
203 G4double theEkin = boosted.GetKineticEnergy();
204 aXsection = (*((*theCrossSections)(index))).GetValue(theEkin, outOfRange);
205 // velocity correction, or luminosity factor...
206 G4ThreeVector targetVelocity = 1./aThermalNuc.GetMass()*aThermalNuc.GetMomentum();
207 aXsection *= (targetVelocity-neutronVelocity).mag()/neutronVMag;
208 result += aXsection;
209 }
210 size += size;
211 }
212 result /= counter;
213/*
214 // Checking impact of G4NEUTRONHP_NEGLECT_DOPPLER
215 G4cout << " result " << result << " "
216 << (*((*theCrossSections)(index))).GetValue(eKinetic, outOfRange) << " "
217 << (*((*theCrossSections)(index))).GetValue(eKinetic, outOfRange) /result << G4endl;
218*/
219 return result;
220}
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