source: trunk/source/processes/electromagnetic/lowenergy/test/PIXEtest.cc @ 1250

Last change on this file since 1250 was 1199, checked in by garnier, 15 years ago

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26// --------------------------------------------------------------------
27//
28// GEANT4     Test file
29//
30// File name: PIXEtest
31//
32// Author:    Simona Saliceti (simona.saliceti@ge.infn.it)
33//
34// History:
35// --------
36//
37// 22 Apr 2009 ALF 1st implementation based on work of Simona Saliceti
38// 24 Apr 2009 ALF revision
39// --------------------------------------------------------------------
40//
41// Test Description:
42// ------------------
43// Test of second implementation of the Empiric Model for shell cross sections in proton ionisation
44// --------------------------------------------------------------------
45// $Id: PIXEtest.cc,v 1.2 2009/06/18 16:18:42 mantero Exp $
46// GEANT4 tag $Name: geant4-09-03-cand-01 $
47
48#include "globals.hh"
49#include "G4ios.hh"
50#include <stdio.h>
51#include <vector>
52#include <iostream>
53#include <fstream>
54#include "G4VhShellCrossSection.hh"
55#include "G4hShellCrossSection.hh"
56#include "G4hShellCrossSectionDoubleExp.hh"
57#include "G4teoCrossSection.hh"
58#include "G4empCrossSection.hh"
59#include "G4AtomicTransitionManager.hh"
60#include "G4Proton.hh"
61//#include "AIDA/AIDA.h"
62
63int main()
64{ 
65   G4int Z; 
66   G4double incidentEnergy;
67   G4double mass;
68   G4double deltaEnergy;
69   size_t shellNumber;
70   G4String fileName;
71
72   //    G4VhShellCrossSection* shellExp = new G4hShellCrossSectionDoubleExp();
73   //  here you deciude the implementation: G4teoCrossSection is ECPSSR for K + Orlic for L shells
74   //  G4hShellCrossSectionDoubleExp is previous work with ownmade fitting functions to Pauli for Alpha.
75
76   G4VhShellCrossSection* shellCS = new G4teoCrossSection("ecpssr");
77   //G4VhShellCrossSection* shellCS = new G4empCrossSection();
78
79   //proton mass in Kg
80   //mass = 1.67262158e-27 * kg;   
81   G4Proton* aProtone = G4Proton::Proton();
82   mass = aProtone->GetPDGMass();
83
84   std::vector<G4double> energies;
85   //Energy from 0.005 MeV to 500 MeV
86   for (G4double i=-5.5; i<6.5; i=i+0.125)
87     {
88       energies.push_back(std::exp(i)*MeV);
89     } 
90
91   G4cout << "Enter shell number: " << G4endl;
92   G4cin >> shellNumber;
93
94   G4cout << "Enter filename: " << G4endl;
95   G4cin >> fileName;
96
97   if (fileName == "" ) {fileName = "PIXECrossSection";}           
98
99   G4String fileNameTxt = fileName;
100   char buffer[3];
101   std::ofstream myfile;
102
103   //Z is the atomic number
104   for (Z = 6; Z<=92; Z++)
105     { 
106       G4cout << "Z = " << Z << G4endl;
107       snprintf(buffer, 3, "%d", Z);
108
109       
110       fileNameTxt = fileName + buffer + ".dat";
111       
112       myfile.open (fileNameTxt);
113       
114       
115       //Cross section for each incident energy
116       for (size_t k=0; k<energies.size();k++)
117         {
118           incidentEnergy = energies[k]*MeV;
119           deltaEnergy = 0.0;
120                   
121           std::vector<G4double> CS = shellCS->GetCrossSection(Z,incidentEnergy,mass,deltaEnergy,false);
122           
123           
124           myfile << incidentEnergy << "\t" << CS[shellNumber] << G4endl;  //barn  //error in ecpssr/orlic class: correct units management!
125           
126           
127         }
128       
129       myfile.close();
130       fileNameTxt = fileName;     
131       
132     } 
133   delete shellCS;
134   
135   G4cout<<"END OF THE MAIN PROGRAM"<<G4endl;
136}
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