Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4InuclCollider.hh
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1//
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25//
26//
27// 20100413 M. Kelsey -- Pass G4CollisionOutput by ref to ::collide()
28// 20100517 M. Kelsey -- Inherit from common base class, make other colliders
29// simple data members
30// 20100620 M. Kelsey -- Move output buffers here to reduce memory churn
31// 20100714 M. Kelsey -- Switch to new G4CascadeColliderBase class
32// 20100720 M. Kelsey -- Make all the collders pointer members (to reducde
33// external compile dependences).
34// 20100915 M. Kelsey -- Move de-excitation colliders to G4CascadeDeexcitation
35// 20100922 M. Kelsey -- Add functions to select de-excitation method, change
36// "theDeexcitation" to be a base-class pointer for switching
37// 20100926 M. Kelsey -- Use new intermediate base class for de-exciations.
38// 20110224 M. Kelsey -- Add ::rescatter() function which takes a list of
39// pre-existing secondaries as input. Add setVerboseLevel().
40// 20110304 M. Kelsey -- Modify rescatter to use original Propagate() input
41// 20110308 M. Kelsey -- Add ::deexcite() function to handle nuclear fragment
42// 20130620 Address Coverity complaint about missing copy actions
43// 20150128 Add function to check for sensible photonuclear final states
44
45#ifndef G4INUCL_COLLIDER_HH
46#define G4INUCL_COLLIDER_HH
47
49#include "G4CollisionOutput.hh"
50
54class G4InuclParticle;
56class G4V3DNucleus;
58
59
61public:
63 virtual ~G4InuclCollider();
64
65 void collide(G4InuclParticle* bullet, G4InuclParticle* target,
66 G4CollisionOutput& globalOutput);
67
68 // For use with top-level Propagate to preload a set of secondaries
69 void rescatter(G4InuclParticle* bullet, G4KineticTrackVector* theSecondaries,
70 G4V3DNucleus* theNucleus, G4CollisionOutput& globalOutput);
71
72 void setVerboseLevel(G4int verbose=0);
73
74 // Select betweeen different post-cascade de-excitation models
78
79protected:
80 void deexcite(const G4Fragment& fragment, G4CollisionOutput& globalOutput);
81
82 // Looks for non-gamma final state in photonuclear or leptonuclear
83 G4bool photonuclearOkay(G4CollisionOutput& checkOutput) const;
84
85private:
86 G4ElementaryParticleCollider* theElementaryParticleCollider;
87 G4IntraNucleiCascader* theIntraNucleiCascader;
88
89 G4VCascadeDeexcitation* theDeexcitation; // User switchable!
90
91 G4CollisionOutput output; // Secondaries from main cascade
92 G4CollisionOutput DEXoutput; // Secondaries from de-excitation
93
94private:
95 // Copying of modules is forbidden
97 G4InuclCollider& operator=(const G4InuclCollider&);
98};
99
100#endif /* G4INUCL_COLLIDER_HH */
101
102
bool G4bool
Definition G4Types.hh:86
int G4int
Definition G4Types.hh:85
virtual ~G4InuclCollider()
void deexcite(const G4Fragment &fragment, G4CollisionOutput &globalOutput)
void usePreCompoundDeexcitation()
G4bool photonuclearOkay(G4CollisionOutput &checkOutput) const
void collide(G4InuclParticle *bullet, G4InuclParticle *target, G4CollisionOutput &globalOutput)
void rescatter(G4InuclParticle *bullet, G4KineticTrackVector *theSecondaries, G4V3DNucleus *theNucleus, G4CollisionOutput &globalOutput)
void setVerboseLevel(G4int verbose=0)