source: trunk/source/processes/hadronic/cross_sections/src/G4EMDissociationSpectrum.cc@ 1007

Last change on this file since 1007 was 819, checked in by garnier, 17 years ago

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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 *
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
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17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * *
21// * Parts of this code which have been developed by QinetiQ Ltd *
22// * under contract to the European Space Agency (ESA) are the *
23// * intellectual property of ESA. Rights to use, copy, modify and *
24// * redistribute this software for general public use are granted *
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26// * policy adopted by the Geant4 Collaboration. This code has been *
27// * written by QinetiQ Ltd for the European Space Agency, under ESA *
28// * contract 17191/03/NL/LvH (Aurora Programme). *
29// * *
30// * By using, copying, modifying or distributing the software (or *
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33// * acceptance of all terms of the Geant4 Software license. *
34// ********************************************************************
35//
36// %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
37//
38// MODULE: G4EMDissociationSpectrum.cc
39//
40// Version: B.1
41// Date: 15/04/04
42// Author: P R Truscott
43// Organisation: QinetiQ Ltd, UK
44// Customer: ESA/ESTEC, NOORDWIJK
45// Contract: 17191/03/NL/LvH
46//
47// %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
48//
49// CHANGE HISTORY
50// --------------
51//
52// 6 October 2003, P R Truscott, QinetiQ Ltd, UK
53// Created.
54//
55// 15 March 2004, P R Truscott, QinetiQ Ltd, UK
56// Beta release
57//
58// %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
59////////////////////////////////////////////////////////////////////////////////
60//
61#include "G4EMDissociationSpectrum.hh"
62#include "globals.hh"
63////////////////////////////////////////////////////////////////////////////////
64//
65G4EMDissociationSpectrum::G4EMDissociationSpectrum ()
66{
67 bessel = new G4Bessel();
68}
69////////////////////////////////////////////////////////////////////////////////
70//
71G4EMDissociationSpectrum::~G4EMDissociationSpectrum ()
72{
73 delete bessel;
74}
75////////////////////////////////////////////////////////////////////////////////
76//
77G4double G4EMDissociationSpectrum::GetGeneralE1Spectrum
78 (G4double Eg, G4double b, G4double bmin)
79{
80 G4double b2 = b*b;
81 G4double g = 1.0/std::sqrt(1.0-b2);
82 G4double xi = Eg * bmin / g / b / hbarc;
83 G4double K0 = bessel->K0(xi);
84 G4double K1 = bessel->K1(xi);
85 G4double n = 2.0 * fine_structure_const / pi / b2 / Eg *
86 (xi*K0*K1 - xi*xi*b2/2.0*(K1*K1-K0*K0));
87 return n;
88}
89////////////////////////////////////////////////////////////////////////////////
90//
91G4double G4EMDissociationSpectrum::GetGeneralE2Spectrum
92 (G4double Eg, G4double b, G4double bmin)
93{
94 G4double b2 = b * b;
95 G4double b4 = b2 * b2;
96 G4double g = 1.0/std::sqrt(1.0-b2);
97 G4double xi = Eg * bmin / g / b / hbarc;
98 G4double K0 = bessel->K0(xi);
99 G4double K1 = bessel->K1(xi);
100 G4double n = 2.0 * fine_structure_const / pi / b4 / Eg *
101 (2.0*(1.0-b2)*K1*K1 + xi*std::pow((2.0-b2),2.0)*K0*K1 -
102 xi*xi*b4/2.0*(K1*K1-K0*K0));
103 return n;
104}
105////////////////////////////////////////////////////////////////////////////////
106//
107G4double G4EMDissociationSpectrum::GetClosestApproach
108 (const G4double AP, const G4double ZP, G4double AT, G4double ZT, G4double b)
109{
110 G4double bsq = b * b;
111 G4double g = 1.0/std::sqrt(1-bsq);
112 G4double AProot3 = std::pow(AP,1.0/3.0);
113 G4double ATroot3 = std::pow(AT,1.0/3.0);
114 G4double bc = 1.34 * fermi * (AProot3+ATroot3 - 0.75 *(1.0/AProot3+1.0/ATroot3));
115// G4double a0 = ZP * ZT * classic_electr_radius/bsq;
116 G4double a0 = ZP * ZT * elm_coupling / (AT*AP*amu_c2/(AT+AP)) / bsq;
117 G4double bmin = 1.25 * bc + halfpi*a0/g;
118 return bmin;
119}
120////////////////////////////////////////////////////////////////////////////////
121//
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