source: trunk/source/processes/hadronic/models/chiral_inv_phase_space/processes/include/G4QLowEnergy.hh @ 1199

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26// $Id: G4QLowEnergy.hh,v 1.1 2009/11/17 10:36:54 mkossov Exp $
27// GEANT4 tag $Name: geant4-09-03-cand-01 $
28//
29//      ---------------- G4QLowEnergy header ----------------
30//                 by Mikhail Kossov, Aug 2007.
31//  Header of G4QLowEnergy class (A+A) of the CHIPS Simulation Branch in GEANT4
32// -------------------------------------------------------------------------------
33// This is a unique CHIPS class for the Ion-Ion Low Energy Inelastic Interactions
34// -------------------------------------------------------------------------------
35// At present (Aug-07) it is not tested.
36// The normalization is based on the temporary G4QIonIonCrossSection class
37// -------------------------------------------------------------------------------
38// Short description: This is a fast low energy algorithm for the
39// inelastic interactions of nucleons and nuclei (ions) with nuclei.
40// This is a fase-space algorithm, but not quark level. Provides
41// nuclear fragments upto alpha only. Never was tumed (but can be).
42// ---------------------------------------------------------------
43
44#ifndef G4QLowEnergy_hh
45#define G4QLowEnergy_hh
46
47// GEANT4 Headers
48#include "globals.hh"
49#include "G4ios.hh"
50#include "Randomize.hh"
51#include "G4VDiscreteProcess.hh"
52#include "G4Track.hh"
53#include "G4Step.hh"
54#include "G4ParticleTypes.hh"
55#include "G4ParticleTable.hh"
56#include "G4VParticleChange.hh"
57#include "G4ParticleDefinition.hh"
58#include "G4DynamicParticle.hh"
59#include "G4ThreeVector.hh"
60#include "G4LorentzVector.hh"
61
62// CHIPS Headers
63#include "G4QNucleus.hh"
64#include "G4QIonIonCrossSection.hh"
65#include "G4QProtonNuclearCrossSection.hh"
66#include "G4QIsotope.hh"
67#include "G4QCHIPSWorld.hh"
68#include "G4QHadronVector.hh"
69#include <vector>
70
71class G4QLowEnergy : public G4VDiscreteProcess
72{
73public:
74
75  // Constructor
76  G4QLowEnergy(const G4String& processName ="CHIPS_LowEnergyIonIonInelastic");
77
78  // Destructor
79  ~G4QLowEnergy();
80
81  G4bool IsApplicable(const G4ParticleDefinition& particle);
82
83  G4double GetMeanFreePath(const G4Track& aTrack, G4double previousStepSize,
84                           G4ForceCondition* condition);
85  // It returns the MeanFreePath of the process for the current track :
86  // (energy, material)
87  // The previousStepSize and G4ForceCondition* are not used.
88  // This function overloads a virtual function of the base class.       
89  // It is invoked by the ProcessManager of the Particle.
90 
91
92  G4VParticleChange* PostStepDoIt(const G4Track& aTrack, const G4Step& aStep); 
93  // It computes the final state of the process (at end of step),
94  // returned as a ParticleChange object.       
95  // This function overloads a virtual function of the base class.
96  // It is invoked by the ProcessManager of the Particle.
97
98  G4LorentzVector GetEnegryMomentumConservation();
99
100  G4int GetNumberOfNeutronsInTarget();
101
102  void SwitchOnEvaporation() {evaporate=true;}   // Evaporation instead of gammas (default)
103
104  void SwitchOffEvaporation() {evaporate=false;} // Gammas instead of evaporation
105
106private:
107
108  // Hide assignment operator as private
109  G4QLowEnergy& operator=(const G4QLowEnergy &right);
110
111  // Copy constructor
112  G4QLowEnergy(const G4QLowEnergy&);
113
114  // Calculate Cross-Section of the Diffraction Reaction (p is in GeV @@ units)
115  G4double CalculateXS(G4double p, G4int Z, G4int N, G4int pPDG);
116
117  // BODY
118  // Static Parameters --------------------------------------------------------------------
119  static G4int    nPartCWorld; // The#of particles for hadronization (limit of A of fragm.)
120  //--------------------------------- End of static parameters ---------------------------
121  // Working parameters
122  G4bool evaporate;
123  G4VQCrossSection* theCS;
124  G4LorentzVector EnMomConservation;                  // Residual of Energy/Momentum Cons.
125  G4int nOfNeutrons;                                  // #of neutrons in the target nucleus
126
127  // Modifires for the reaction
128  G4double Time;                                      // Time shift of the capture reaction
129  G4double EnergyDeposition;                          // Energy deposited in the reaction
130  static std::vector <G4int> ElementZ;                // Z of the element(i) in theLastCalc
131  static std::vector <G4double> ElProbInMat;          // SumProbabilityElements in Material
132  static std::vector <std::vector<G4int>*> ElIsoN;    // N of isotope(j) of Element(i)
133  static std::vector <std::vector<G4double>*> IsoProbInEl;// SumProbabIsotopes in Element i
134};
135#endif
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