Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4QNeutronHPBuilder.cc
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26// $Id$
27//
28//---------------------------------------------------------------------------
29//
30// ClassName: G4QNeutronHPBuilder
31//
32// Author: April 2012 M. Kosov
33//
34// Modified:
35//
36//----------------------------------------------------------------------------
37// Short description: for use in CHIPS_HP physics list (mix Q w/ HP at 20 MeV)
38//----------------------------------------------------------------------------
39//
41#include "G4SystemOfUnits.hh"
42
44 theNeutrons(0)
45 , theNeutronFission(0)
46 , theNeutronCapture(0)
47 , theCHIPSNGamma(0)
48 , theHPNeutron(0)
49 , wasActivated(false)
50{
51 theNeutronInelastic = new G4NeutronInelasticProcess;
52 theCHIPSInelastic = new G4QInelastic;
54 const G4String& INprocessName = "MixedHPQNeutronInelasticProcess";
55 theInProcessMixer= new G4QDiscProcessMixer(INprocessName, proj);
56 const G4String& NGprocessName = "MixedHPQNeutronGammaProcess";
57 theNgProcessMixer= new G4QDiscProcessMixer(NGprocessName, proj);
58 const G4String& FIprocessName = "MixedHPQNeutronFissionProcess";
59 theFiProcessMixer= new G4QDiscProcessMixer(FIprocessName, proj);
60}
61
63{
64 delete theCHIPSInelastic;
65 delete theCHIPSNGamma;
66 delete theNeutronInelastic;
67 delete theHPNeutron;
68 delete theInProcessMixer;
69 delete theNgProcessMixer;
70 delete theFiProcessMixer;
71}
72
74{
75 wasActivated = true;
76 // The model definition for neutrons (needed for HP implementation)
77 theNeutrons = new G4NeutronBuilder;
78 theNeutrons->RegisterMe( theHPNeutron = new G4NeutronHPBuilder );
79 // End of the model definition
80 std::vector<G4VNeutronBuilder *>::iterator i;
81 for(i = theModelCollections.begin(); i != theModelCollections.end(); i++)
82 {
83 (*i)->Build(theNeutronInelastic);
84 (*i)->Build(theNeutronCapture);
85 (*i)->Build(theNeutronFission);
86 }
88
89 theInProcessMixer->AddDiscreteProcess(theCHIPSInelastic, 1.E8*megaelectronvolt);
90 theInProcessMixer->AddDiscreteProcess(theNeutronInelastic, 19.9*megaelectronvolt);
91
92 theNgProcessMixer->AddDiscreteProcess(theCHIPSNGamma, 1.E8*megaelectronvolt);
93 theNgProcessMixer->AddDiscreteProcess(theNeutronCapture, 19.9*megaelectronvolt);
94
95 //theFiProcessMixer->AddDiscreteProcess(theCHIPSFission, 1.E8*megaelectronvolt);
96 //theFiProcessMixer->AddDiscreteProcess(theNeutronFission, 19.9*megaelectronvolt);
97
98 theProcMan->AddDiscreteProcess(theInProcessMixer); // Mix CHIPS+HP for inelastic
99 theProcMan->AddDiscreteProcess(theNgProcessMixer); // Mix CHIPS+HP for (n,gamma)
100 theProcMan->AddDiscreteProcess(theNeutronFission); // Only HP for fission
101 //theProcMan->AddDiscreteProcess(theFiProcessMixer); // Mix CHIPS+HP for fission
102}
103// 2009 by M. Kosov
void RegisterMe(G4VNeutronBuilder *aB)
static G4Neutron * Neutron()
Definition: G4Neutron.cc:104
G4ProcessManager * GetProcessManager() const
G4int AddDiscreteProcess(G4VProcess *aProcess, G4int ord=ordDefault)
void AddDiscreteProcess(G4VDiscreteProcess *DP, G4double MaxE)