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G4LEKaonZeroSInelastic.hh
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26// $Id$
27//
28// G4 Gheisha High Energy model class -- header file
29// H. Fesefeldt, RWTH Aachen 23-October-1996
30// A prototype of the Gheisha High Energy collision model.
31
32#ifndef G4LEKaonZeroSInelastic_h
33#define G4LEKaonZeroSInelastic_h 1
34
36
39#include "Randomize.hh"
40
42{
43 public:
44 G4LEKaonZeroSInelastic() : G4InelasticInteraction("G4LEKaonZeroSInelastic")
45 {
46 SetMinEnergy(0.0);
47 SetMaxEnergy(25.*CLHEP::GeV);
48 G4cout << "WARNING: model G4LEKaonZeroSInelastic is being deprecated and will\n"
49 << "disappear in Geant4 version 10.0" << G4endl;
50 }
51
53
55 {
56 if(G4UniformRand() < 0.50)
57 {
58 return theKaonZeroInelastic.ApplyYourself(aTrack, targetNucleus);
59 }
60 else
61 {
62 return theAntiKaonZeroInelastic.ApplyYourself(aTrack, targetNucleus);
63 }
64 }
65
66 virtual void ModelDescription(std::ostream& outFile) const
67 {
68 outFile << "G4LEKaonZeroSInelastic is one of the Low Energy\n"
69 << "Parameterized (LEP) models used to implement K0S\n"
70 << "scattering from nuclei. Upon interaction with a nucleus\n"
71 << "the K0S is treated as a K0 50% of the time and an antiK0\n"
72 << "50% of the time. Then the K0 or antiK0 interacts with the\n"
73 << "nucleus using the re-engineered GHEISHA code of\n"
74 << "H. Fesefeldt, which divides the initial collision products\n"
75 << "into backward- and forward-going clusters which are then\n"
76 << "decayed into final state hadrons. The model does not\n"
77 << "conserve energy or charge on an event-by-event basis. It\n"
78 << "may be applied to K0S with initial energies between 0 and\n"
79 << "25 GeV.\n";
80 }
81
82 private:
83 G4LEKaonZeroInelastic theKaonZeroInelastic;
84 G4LEAntiKaonZeroInelastic theAntiKaonZeroInelastic;
85
86};
87#endif
88
89
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout
#define G4UniformRand()
Definition: Randomize.hh:53
void SetMinEnergy(G4double anEnergy)
void SetMaxEnergy(const G4double anEnergy)
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
virtual void ModelDescription(std::ostream &outFile) const