source: trunk/source/processes/electromagnetic/xrays/src/G4GammaXTRadiator.cc@ 1315

Last change on this file since 1315 was 1228, checked in by garnier, 16 years ago

update geant4.9.3 tag

File size: 4.3 KB
RevLine 
[819]1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26//
27// $Id: G4GammaXTRadiator.cc,v 1.5 2006/06/29 19:56:07 gunter Exp $
[1228]28// GEANT4 tag $Name: geant4-09-03 $
[819]29//
30
31#include <complex>
32
33#include "G4GammaXTRadiator.hh"
34#include "Randomize.hh"
35
36#include "G4Gamma.hh"
37
38using namespace std;
39
40////////////////////////////////////////////////////////////////////////////
41//
42// Constructor, destructor
43
44G4GammaXTRadiator::G4GammaXTRadiator(G4LogicalVolume* anEnvelope,
45 G4double alphaPlate,
46 G4double alphaGas,
47 G4Material* foilMat,G4Material* gasMat,
48 G4double a, G4double b, G4int n,
49 const G4String& processName) :
50 G4VXTRenergyLoss(anEnvelope,foilMat,gasMat,a,b,n,processName)
51{
52 G4cout<<"Gammma distributed X-ray TR radiator model is called"<<G4endl ;
53
54 // Build energy and angular integral spectra of X-ray TR photons from
55 // a radiator
56
57 fAlphaPlate = alphaPlate ;
58 fAlphaGas = alphaGas ;
59 G4cout<<"fAlphaPlate = "<<fAlphaPlate<<" ; fAlphaGas = "<<fAlphaGas<<G4endl ;
60
61 // BuildTable() ;
62}
63
64///////////////////////////////////////////////////////////////////////////
65
66G4GammaXTRadiator::~G4GammaXTRadiator()
67{
68 ;
69}
70
71
72
73///////////////////////////////////////////////////////////////////////////
74//
75// Rough approximation for radiator interference factor for the case of
76// fully GamDistr radiator. The plate and gas gap thicknesses are distributed
77// according to exponent. The mean values of the plate and gas gap thicknesses
78// are supposed to be about XTR formation zones but much less than
79// mean absorption length of XTR photons in coresponding material.
80
81G4double
82G4GammaXTRadiator::GetStackFactor( G4double energy,
83 G4double gamma, G4double varAngle )
84{
85 G4double result, Za, Zb, Ma, Mb ;
86
87 Za = GetPlateFormationZone(energy,gamma,varAngle) ;
88 Zb = GetGasFormationZone(energy,gamma,varAngle) ;
89
90 Ma = GetPlateLinearPhotoAbs(energy) ;
91 Mb = GetGasLinearPhotoAbs(energy) ;
92
93
94 G4complex Ca(1.0+0.5*fPlateThick*Ma/fAlphaPlate,fPlateThick/Za/fAlphaPlate) ;
95 G4complex Cb(1.0+0.5*fGasThick*Mb/fAlphaGas,fGasThick/Zb/fAlphaGas) ;
96
97 G4complex Ha = pow(Ca,-fAlphaPlate) ;
98 G4complex Hb = pow(Cb,-fAlphaGas) ;
99 G4complex H = Ha*Hb ;
100
101 G4complex F1 = (1.0 - Ha)*(1.0 - Hb )/(1.0 - H)
102 * G4double(fPlateNumber) ;
103
104 G4complex F2 = (1.0-Ha)*(1.0-Ha)*Hb/(1.0-H)/(1.0-H)
105 * (1.0 - pow(H,fPlateNumber)) ;
106
107 G4complex R = (F1 + F2)*OneInterfaceXTRdEdx(energy,gamma,varAngle) ;
108
109 result = 2.0*real(R) ;
110
111 return result ;
112}
113
114
115//
116//
117////////////////////////////////////////////////////////////////////////////
118
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