source: trunk/source/processes/hadronic/models/management/include/G4HadronicInteraction.hh @ 1315

Last change on this file since 1315 was 1315, checked in by garnier, 14 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

File size: 7.5 KB
Line 
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26//
27// $Id: G4HadronicInteraction.hh,v 1.14 2010/04/03 00:40:45 dennis Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
29//
30// Hadronic Interaction  abstract base class
31// This class is the base class for the model classes.
32// It sorts out the energy-range for the models and provides
33// class utilities.
34// original by H.P. Wellisch
35// Modified by J.L.Chuma, TRIUMF, 21-Mar-1997
36// Last modified: 3-Apr-1997
37// Added units to energy initialization: J.L. Chuma  04-Apr-97
38// Modified by J.L.Chuma, 05-May-97  to Initialize theBlockedCounter
39// Modified by J.L.Chuma, 08-Jul-97 to implement the Nucleus changes
40// Adding a registry for memory management of hadronic models, HPW 22-Mar-99
41// 23-Jan-2009 V.Ivanchenko move constructor and destructor to the body
42//                          and reorder methods in the header
43// 29-Jun-2009 V.Ivanchenko add SampleInvariantT method
44// 29-Aug-2009 V.Ivanchenko moved G4ReactionDynamics to G4InelasticInteraction,
45//                          add const pointers, and added recoilEnergyThreshold
46//                          member and accesors
47
48// Class Description
49// This is the base class for all hadronic interaction models in geant4.
50// If you want to implement a new way of producing a final state, please,
51//  inherit from here.
52// Class Description - End
53 
54#ifndef G4HadronicInteraction_h
55#define G4HadronicInteraction_h 1
56 
57#include "G4HadFinalState.hh"
58#include "G4Material.hh"
59#include "G4Nucleus.hh"
60#include "G4Track.hh"
61#include "G4HadProjectile.hh"
62#include "G4ReactionDynamics.hh"
63
64class G4HadronicInteraction
65{
66public: // With description
67   
68  G4HadronicInteraction(const G4String& modelName = "HadronicModel");
69   
70  virtual ~G4HadronicInteraction();
71   
72  virtual G4HadFinalState *ApplyYourself(const G4HadProjectile &aTrack, 
73                                         G4Nucleus & targetNucleus ) = 0;
74  // The interface to implement for final state production code.
75
76  virtual G4double SampleInvariantT(const G4ParticleDefinition* p, 
77                                    G4double plab,
78                                    G4int Z, G4int A);
79  // The interface to implement sampling of scattering or change exchange
80   
81  virtual G4bool IsApplicable(const G4HadProjectile &/*aTrack*/, 
82                              G4Nucleus & /*targetNucleus*/)
83  { return true;}
84 
85  inline G4double GetMinEnergy() const
86  { return theMinEnergy; }
87   
88  G4double GetMinEnergy( const G4Material *aMaterial,
89                         const G4Element *anElement ) const;
90   
91  inline void SetMinEnergy( G4double anEnergy )
92  { theMinEnergy = anEnergy; }
93   
94  void SetMinEnergy( G4double anEnergy, const G4Element *anElement );
95   
96  void SetMinEnergy( G4double anEnergy, const G4Material *aMaterial );
97   
98  inline G4double GetMaxEnergy() const
99  { return theMaxEnergy; }
100   
101  G4double GetMaxEnergy( const G4Material *aMaterial,
102                         const G4Element *anElement ) const;
103   
104  inline void SetMaxEnergy( const G4double anEnergy )
105  { theMaxEnergy = anEnergy; }
106   
107  void SetMaxEnergy( G4double anEnergy, const G4Element *anElement );
108   
109  void SetMaxEnergy( G4double anEnergy, const G4Material *aMaterial );
110 
111  inline const G4HadronicInteraction *GetMyPointer() const
112  { return this; }
113
114  inline G4int GetVerboseLevel() const
115  { return verboseLevel; }
116
117  inline void SetVerboseLevel( G4int value )
118  { verboseLevel = value; }
119
120  inline const G4String& GetModelName() const
121  { return theModelName; }
122   
123  void DeActivateFor( const G4Material *aMaterial );
124   
125  inline void ActivateFor( const G4Material *aMaterial ) 
126  { 
127    Block(); 
128    SetMaxEnergy(GetMaxEnergy(), aMaterial);
129    SetMinEnergy(GetMinEnergy(), aMaterial);
130  }
131
132  void DeActivateFor( const G4Element *anElement ); 
133  inline void ActivateFor( const G4Element *anElement )
134  { 
135    Block(); 
136    SetMaxEnergy(GetMaxEnergy(), anElement);
137    SetMinEnergy(GetMinEnergy(), anElement);
138  }
139
140  G4bool IsBlocked( const G4Material *aMaterial ) const;
141  G4bool IsBlocked( const G4Element *anElement) const;
142
143  inline void SetRecoilEnergyThreshold(G4double val) 
144  { recoilEnergyThreshold = val; }
145
146  G4double GetRecoilEnergyThreshold() const 
147  { return recoilEnergyThreshold;}
148
149  inline G4bool operator==(const G4HadronicInteraction &right ) const
150  { return ( this == (G4HadronicInteraction *) &right ); }
151   
152  inline G4bool operator!=(const G4HadronicInteraction &right ) const
153  { return ( this != (G4HadronicInteraction *) &right ); }
154
155
156  inline std::pair<G4double, G4double> GetEnergyMomentumCheckLevels() const
157  { return epCheckLevels; }
158   
159  inline void SetEnergyMomentumCheckLevels(G4double relativeLevel, G4double absoluteLevel)
160  { epCheckLevels.first = relativeLevel;
161    epCheckLevels.second = absoluteLevel; }
162   
163private:
164   
165  G4HadronicInteraction(const G4HadronicInteraction &right );
166  const G4HadronicInteraction& operator=(const G4HadronicInteraction &right);
167
168protected:
169
170  inline void SetModelName(const G4String& nam) 
171  { theModelName = nam; }
172
173  inline G4bool IsBlocked() const { return isBlocked;}
174  inline void Block() { isBlocked = true; }
175   
176  G4HadFinalState theParticleChange;
177  // the G4HadFinalState object which is modified and returned
178  // by address by the ApplyYourself method,
179  // (instead of aParticleChange as found in G4VProcess)
180   
181  G4int verboseLevel;
182  // control flag for output messages
183  // 0: silent
184  // 1: warning messages
185  // 2: more
186  // (instead of verboseLevel as found in G4VProcess)
187
188  // these two have global validity energy range   
189  G4double theMinEnergy;
190  G4double theMaxEnergy;
191
192  G4bool isBlocked;
193
194private:       
195   
196  G4double recoilEnergyThreshold;
197
198  G4String theModelName;
199
200  std::pair<G4double, G4double> epCheckLevels;
201
202  std::vector<std::pair<G4double, const G4Material *> > theMinEnergyList;
203  std::vector<std::pair<G4double, const G4Material *> > theMaxEnergyList;
204  std::vector<std::pair<G4double, const G4Element *> > theMinEnergyListElements;
205  std::vector<std::pair<G4double, const G4Element *> > theMaxEnergyListElements;
206  std::vector<const G4Material *> theBlockedList;
207  std::vector<const G4Element *> theBlockedListElements;
208};
209 
210#endif
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