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G4KaonMinusAbsorption.hh
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25 //
26 // G4KaonMinusAbsorption physics process
27 // Larry Felawka (TRIUMF), April 1998
28 //---------------------------------------------------------------------
29 
30 #ifndef G4KaonMinusAbsorption_h
31 #define G4KaonMinusAbsorption_h 1
32 
33 #include "globals.hh"
34 #include "Randomize.hh"
35 #include "G4VRestProcess.hh"
36 #include "G4VParticleChange.hh"
37 #include "G4ParticleDefinition.hh"
38 #include "G4GHEKinematicsVector.hh"
39 #include "G4HadronicProcessType.hh"
40 
41 // Class Description:
42 //
43 // Alternative process for absorption of K- at rest.
44 // To be used in your physics list in case you need this physics.
45 
46 
48 
49 {
50  private:
51  // hide assignment operator as private
54 
55  public:
56 
57  G4KaonMinusAbsorption(const G4String& processName ="KaonMinusAbsorption",
58  G4ProcessType aType = fHadronic );
59 
61 
63 
65 
67 
70 
71  // zero mean lifetime
73  G4ForceCondition* ) {return 0.0;}
74 
75  G4VParticleChange* AtRestDoIt(const G4Track&, const G4Step&);
76 
77  // return number of secondaries produced
79 
80  // pointer to array containg kinematics of secondaries
82 
83  private:
84 
85  void GenerateSecondaries();
86  void Poisso( G4float, G4int* );
87  void Normal( G4float* );
88  void KaonMinusAbsorption( G4int* );
89  G4int NFac( G4int );
90 
91  private:
92 
93 // global time-of-flight of stopped AntiProton
94  G4float globalTime;
95 
96 // atomic mass of target nucleus
97  G4float targetAtomicMass;
98 
99 // charge of target nucleus
100  G4float targetCharge;
101 
104  G4GHEKinematicsVector* gkin;
105 
106  G4float evapEnergy1;
107  G4float evapEnergy3;
108 
109  G4int ngkine;
110 
111  G4int ntot;
112  G4GHEKinematicsVector result;
113 
114  G4float massKaonMinus;
115  G4float massGamma;
116  G4float massPionZero;
117  G4float massProton;
118  G4float massLambda;
119 
120  G4ParticleDefinition* pdefKaonMinus;
121  G4ParticleDefinition* pdefGamma;
122  G4ParticleDefinition* pdefPionZero;
123  G4ParticleDefinition* pdefProton;
124  G4ParticleDefinition* pdefNeutron;
125  G4ParticleDefinition* pdefLambda;
126  G4ParticleDefinition* pdefDeuteron;
127  G4ParticleDefinition* pdefTriton;
128  G4ParticleDefinition* pdefAlpha;
129 
130 };
131 
132 #endif
133