Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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Shielding.cc
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1//
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25//
26//
27//---------------------------------------------------------------------------
28//
29// ClassName:
30//
31// Author: 2010 Tatsumi Koi, Gunter Folger
32//
33// created from FTFP_BERT
34//
35// Modified:
36// 05.08.2014 K.L.Genser: added provision for Hadronic Physics Variant M
37// 16.08.2010 H.Kurashige: Remove inclusion of G4ParticleWithCuts
38// 26.04.2011 T.Koi: Add G4RadioactiveDecayPhysics
39// 16.10.2012 A.Ribon: Use new default stopping
40// 07.11.2013 T.Koi: Add IonElasticPhysics, Set proton cut to 0 to generate
41// low energy recoils and activate production of fission
42// fragments
43// 06.08.2019 A.Ribon: Replacing explicit values for the energy transition
44// region with values from G4HadronicParameters
45//
46//----------------------------------------------------------------------------
47//
48
49#include "Shielding.hh"
50#include "globals.hh"
51
52#include "G4DecayPhysics.hh"
54#include "G4EmParameters.hh"
57#include "G4EmExtraPhysics.hh"
58#include "G4IonQMDPhysics.hh"
60#include "G4StoppingPhysics.hh"
64
69
70Shielding::Shielding(G4int verbose, const G4String& n_model,
71 const G4String& HadrPhysVariant )
72{
73 G4String LEN_model = n_model;
74 size_t find = LEN_model.find("LEND__");
75 G4String evaluation;
76 if ( find != G4String::npos )
77 {
78 evaluation=LEN_model;
79 evaluation.erase(0,find+6);
80 LEN_model="LEND";
81 }
82
83 G4cout << "<<< Geant4 Physics List simulation engine: Shielding"
84 << HadrPhysVariant << G4endl;
85 if ( LEN_model=="LEND" ) G4cout <<
86 "<<< LEND will be used for low energy neutron and gamma projectiles"
87 << G4endl;
88
89 defaultCutValue = 0.7*CLHEP::mm;
90 SetCutValue(0, "proton");
91 SetVerboseLevel(verbose);
92
93 // EM Physics
95
96 // Synchroton Radiation & GN Physics
97 G4EmExtraPhysics* emExtraPhysics = new G4EmExtraPhysics(verbose);
98 if ( LEN_model == "LEND" ) {
99 // Use LEND model for Gamma Nuclear
100 emExtraPhysics->LENDGammaNuclear(true);
101 }
102 RegisterPhysics( emExtraPhysics );
103
104 // Decays
105 RegisterPhysics( new G4DecayPhysics(verbose) );
107
108 // Hadron Elastic scattering
109 if ( LEN_model == "HP" )
110 {
112 }
113 else if ( LEN_model == "LEND" )
114 {
115 RegisterPhysics( new G4HadronElasticPhysicsLEND(verbose,evaluation));
116 }
117 else
118 {
119 G4cout << "Shielding Physics List: Warning!" <<G4endl;
120 G4cout << "\"" << LEN_model
121 << "\" is not valid for the low energy neutron model." <<G4endl;
122 G4cout << "Neutron HP package will be used." <<G4endl;
124 }
125
127 // Hadron Physics HP or LEND
128 if (HadrPhysVariant == "M") {
129 // The variant "M" has a special, dedicated energy transition region
130 // between the string model and cascade model, therefore the recommended
131 // values from G4HadronicParameters are intentionally not used.
132 hpc = new G4HadronPhysicsShielding("hInelastic Shielding", verbose,
133 9.5*CLHEP::GeV, 9.9*CLHEP::GeV);
134 } else {
135 hpc = new G4HadronPhysicsShielding("hInelastic Shielding", verbose,
136 G4HadronicParameters::Instance()->GetMinEnergyTransitionFTF_Cascade(),
137 G4HadronicParameters::Instance()->GetMaxEnergyTransitionFTF_Cascade());
138 }
139
140 if ( LEN_model == "LEND" ) {
141 delete hpc;
142 if (HadrPhysVariant == "M") {
143 // The variant "M" has a special, dedicated energy transition region
144 // between the string model and cascade model, therefore the recommended
145 // values from G4HadronicParameters are intentionally not used.
146 hpc = new G4HadronPhysicsShieldingLEND("hInelastic ShieldingLEND", verbose,
147 9.5*CLHEP::GeV, 9.9*CLHEP::GeV);
148 } else {
149 hpc = new G4HadronPhysicsShieldingLEND("hInelastic ShieldingLEND", verbose,
150 G4HadronicParameters::Instance()->GetMinEnergyTransitionFTF_Cascade(),
151 G4HadronicParameters::Instance()->GetMaxEnergyTransitionFTF_Cascade());
152 }
153 } else {
154 //G4cout << "Shielding Physics List: Warning." <<G4endl;
155 //G4cout << "Name of Low Energy Neutron model " << LEN_model
156 // << " is invalid." <<G4endl;
157 //G4cout << "Will use neutron HP package." <<G4endl;
158 }
159 RegisterPhysics( hpc );
160
161 if ( LEN_model == "HP" ) {
162 //Activate prodcuton of fission fragments in neutronHP
164 }
165
166 // Stopping Physics
167 RegisterPhysics( new G4StoppingPhysics(verbose) );
168
169 // Ion Physics
170 RegisterPhysics( new G4IonElasticPhysics(verbose) );
171 RegisterPhysics( new G4IonQMDPhysics(verbose) );
172}
int G4int
Definition: G4Types.hh:85
#define G4endl
Definition: G4ios.hh:57
G4GLOB_DLL std::ostream G4cout
void LENDGammaNuclear(G4bool val)
static G4HadronicParameters * Instance()
void SetProduceFissionFragments(G4bool val)
static G4ParticleHPManager * GetInstance()
void SetVerboseLevel(G4int value)
void RegisterPhysics(G4VPhysicsConstructor *)
void SetCutValue(G4double aCut, const G4String &pname)
Shielding(G4int verb=1, const G4String &n_model="HP", const G4String &HadrPhysVariant="")
Definition: Shielding.cc:70