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Toolkit for the simulation of the passage of particles through matter
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G4ParticleHPEnAngCorrelation.hh
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26//
27// P. Arce, June-2014 Conversion neutron_hp to particle_hp
28//
29#ifndef G4ParticleHPEnAngCorrelation_h
30#define G4ParticleHPEnAngCorrelation_h 1
31
32#include <fstream>
33
34#include "globals.hh"
35#include "G4ParticleHPVector.hh"
36#include "Randomize.hh"
37#include "G4ios.hh"
38#include "globals.hh"
40#include "G4ReactionProduct.hh"
41#include "G4Cache.hh"
43
45
47{
48 struct toBeCached
49 {
50 G4ReactionProduct* theProjectileRP;
51 G4ReactionProduct* theTarget;
52 G4double theTotalMeanEnergy;
53 toBeCached()
54 : theProjectileRP(0), theTarget(0), theTotalMeanEnergy(-1.0) {}
55 };
56
57public:
58
59 G4ParticleHPEnAngCorrelation() // for G4ParticleHPCaptureFS::theMF6FinalState
60 {
61 theProjectile = G4Neutron::Neutron();
62 theProducts = 0;
63 inCharge = false;
64 toBeCached val;
65 fCache.Put( val );
66 //theTotalMeanEnergy = -1.;
67 fCache.Get().theTotalMeanEnergy = -1.;
68 targetMass = 0.0;
69 frameFlag = 0;
70 nProducts = 0;
71 }
72
74 : theProjectile(proj)
75 {
76 theProducts = 0;
77 inCharge = false;
78 toBeCached val;
79 fCache.Put( val );
80 //theTotalMeanEnergy = -1.;
81 fCache.Get().theTotalMeanEnergy = -1.;
82 targetMass = 0.0;
83 frameFlag = 0;
84 nProducts = 0;
85 }
86
88 {
89 if(theProducts!=0) delete [] theProducts;
90 }
91
92 inline void Init(std::istream & aDataFile)
93 {
94 inCharge = true;
95 aDataFile>>targetMass>>frameFlag>>nProducts;
96 theProducts = new G4ParticleHPProduct[nProducts];
97 for(G4int i=0; i<nProducts; i++)
98 {
99 theProducts[i].Init(aDataFile,theProjectile);
100 }
101 }
102
104
106
107 inline void SetTarget(G4ReactionProduct & aTarget)
108 {
109 fCache.Get().theTarget = &aTarget;
110 for (G4int i=0;i<nProducts;i++)
111 theProducts[i].SetTarget(fCache.Get().theTarget);
112 }
113
114 inline void SetProjectileRP(G4ReactionProduct & aIncidentPart)
115 {
116 fCache.Get().theProjectileRP = &aIncidentPart;
117 for (G4int i=0;i<nProducts;i++)
118 theProducts[i].SetProjectileRP(fCache.Get().theProjectileRP);
119 }
120
122 {
123 return inCharge;
124 }
125
127 {
128 return targetMass;
129 }
130
132 {
133 return fCache.Get().theTotalMeanEnergy; // cached in 'sample' call
134 }
135
136private:
137
138 // data members
139
140 G4double targetMass;
141 G4int frameFlag; // =1: Target rest frame; =2: CMS system; incident in lab
142 G4int nProducts;
143 G4ParticleHPProduct * theProducts;
144 G4bool inCharge;
145
146 // cached values
147 //
148 G4Cache<toBeCached> fCache;
149
150 G4ParticleDefinition* theProjectile;
151
152};
153
154#endif
std::vector< G4ReactionProduct * > G4ReactionProductVector
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
value_type & Get() const
Definition: G4Cache.hh:315
void Put(const value_type &val) const
Definition: G4Cache.hh:321
static G4Neutron * Neutron()
Definition: G4Neutron.cc:103
G4ReactionProduct * SampleOne(G4double anEnergy)
void Init(std::istream &aDataFile)
void SetProjectileRP(G4ReactionProduct &aIncidentPart)
void SetTarget(G4ReactionProduct &aTarget)
G4ReactionProductVector * Sample(G4double anEnergy)
G4ParticleHPEnAngCorrelation(G4ParticleDefinition *proj)
void Init(std::istream &aDataFile, G4ParticleDefinition *projectile)