Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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GFlashSamplingShowerParameterisation.hh
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29//---------------------------------------------------------------
30// GEANT 4 class header file
31//
32// GFlashSamplingShowerParameterisation
33//
34// Class description:
35//
36// GFlash concrete sampling shower parameterisation
37
38// Author: Joanna Weng - 02.2004
39//---------------------------------------------------------------
40#ifndef GFlashSamplingShowerParameterisation_h
41#define GFlashSamplingShowerParameterisation_h 1
42
43#include "globals.hh"
46
47class G4Material;
48
51{
52 public:
53
55 G4double d1, G4double d2,
56 /// \param aMat1 passive material, \param dd1 - passive layer thickness
57 /// \param aMat2 active material, \param dd2 - acive layer thickness
58
61
64 void ComputeZAX0EFFetc();
65
68 G4double ComputeTau(G4double LongitudinalPosition);
69 void SetMaterial(G4Material *mat1, G4Material *mat2);
72 G4double LongitudinalPosition);
74
75 inline G4double GetAveR99() {return (3.5 * Rmeff);}
76 inline G4double GetAveR90() {return (1.5 * Rmeff);} //ok
77 //
78 inline G4double GetAveTmx() {return (X0eff*std::exp(AveLogTmax));}
79 inline G4double GetAveT99() {return (X0eff*AveLogTmax/(AveLogAlpha-1.00));}
80 inline G4double GetAveT90() {return (2.5* X0eff* std::exp( AveLogTmax));}
81 //
82 inline G4double GetNspot() {return NSpot;}
83 inline G4double GetX0() {return X0eff;}
84 inline G4double GetEc() {return Eceff;}
85 inline G4double GetRm() {return Rmeff;}
86
87 G4double ApplySampling(const G4double DEne, const G4double Energy);
88
89 private:
90
91 // medium related quantities
92 //
93 G4Material *material1, *material2 ;
94 G4double density1, A1, Z1, X01, Ec1, Rm1, d1;
95 G4double density2, A2, Z2, X02, Ec2, Rm2, d2;
96 G4double Aeff, Rhoeff, X0eff, Eceff, Rmeff, Fs, ehat, Zeff;
97
98 // Resolution
99 //
100 G4double ConstantResolution;
101 G4double NoiseResolution;
102 G4double SamplingResolution;
103
104 // parametrization parameters
105 //
107
108 // Cashed parameters:
109 // Longitudinal Coefficients for a homogenious calo
110 //
111 G4double ParAveT1, ParAveT2;
112 G4double ParAveA1,ParAveA2, ParAveA3;
113 G4double ParSigLogT1,ParSigLogT2;
114 G4double ParSigLogA1,ParSigLogA2;
115 G4double ParRho1,ParRho2;
116
117 //Cashed parameters:
118 // Longitudinal Coefficients for a sampling calo
119 //
120 G4double ParsAveT1, ParsAveT2;
121 G4double ParsAveA1,ParsAveA2;
122 G4double ParsSigLogT1,ParsSigLogT2;
123 G4double ParsSigLogA1,ParsSigLogA2;
124 G4double ParsRho1,ParsRho2;
125 void ComputeLongitudinalParameters(G4double y);
126 void GenerateEnergyProfile(G4double y);
127 void GenerateNSpotProfile(G4double y);
128
129 // Radial Coefficients homo
130 //
131 G4double ParRC1,ParRC2,ParRC3,ParRC4;
132 G4double ParWC1,ParWC2,ParWC3;
133 G4double ParWC4,ParWC5,ParWC6;
134 G4double ParRT1,ParRT2,ParRT3,ParRT4;
135 G4double ParRT5,ParRT6;
136
137 // Radial Coefficients sampling
138 //
139 G4double ParsRC1,ParsRC2;
140 G4double ParsWC1,ParsWC2;
141 G4double ParsRT1,ParsRT2;
142
143 // Spot multiplicity Coefficients
144 //
145 G4double ParsSpotT1,ParsSpotT2,ParsSpotA1, ParsSpotA2;
146 G4double ParsSpotN1,ParsSpotN2;
147
148 // PARAMETRISATION variables (Energy & position dependent)
149 // Longitudinal
150 // homogeneous
151 //
152 G4double AveLogAlphah,AveLogTmaxh;
153 G4double SigmaLogAlphah,SigmaLogTmaxh;
154 G4double Rhoh;
155 G4double Alphah,Tmaxh,Betah;
156
157 // PARAMETRISATION variables (Energy & position dependent)
158 // Longitudinal
159 // sampling
160 //
161 G4double AveLogAlpha,AveLogTmax;
162 G4double SigmaLogAlpha,SigmaLogTmax;
163 G4double Rho;
164 G4double Alpha,Tmax,Beta;
165
166 // Multiplicity
167 //
168 G4double NSpot,AlphaNSpot,TNSpot,BetaNSpot;
169
170 //Radial
171 //
172 G4double RadiusCore, WeightCore,RadiusTail;
173};
174
175#endif
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
G4double GenerateRadius(G4int ispot, G4double Energy, G4double LongitudinalPosition)
G4double ApplySampling(const G4double DEne, const G4double Energy)
G4double IntegrateNspLongitudinal(G4double LongitudinalStep)
G4double IntegrateEneLongitudinal(G4double LongitudinalStep)
G4double ComputeTau(G4double LongitudinalPosition)
void SetMaterial(G4Material *mat1, G4Material *mat2)