source: trunk/source/processes/electromagnetic/lowenergy/test/testExp.cc @ 1199

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26// --------------------------------------------------------------------
27//
28// GEANT4     Test file
29//
30// File name: testExp.cc
31//
32// Author:     Simona Saliceti (simona.saliceti@ge.infn.it)
33//
34// History:
35// --------
36// Structor from AtomicDexecitation's test
37// 13/04/2004 Simona Saliceti 1st implementation
38// --------------------------------------------------------------------
39//
40// Test Description:
41// ------------------
42// Test of Empiric Model for shell cross sections in proton ionisation
43// --------------------------------------------------------------------
44// $Id: testExp.cc,v 1.3 2006/06/29 19:44:56 gunter Exp $
45// GEANT4 tag $Name: geant4-09-03-cand-01 $
46
47#include "globals.hh"
48#include "G4ios.hh"
49#include <stdio.h>
50#include <vector>
51#include <iostream>
52#include <fstream>
53#include "G4VhShellCrossSection.hh"
54#include "G4hShellCrossSection.hh"
55#include "G4hShellCrossSectionExp.hh"
56#include "G4AtomicTransitionManager.hh"
57#include "G4Proton.hh"
58#include "AIDA/AIDA.h"
59
60int main()
61{ 
62   G4int Z; 
63   G4double incidentEnergy;
64   G4double mass;
65   G4double deltaEnergy;
66   size_t shellNumber;
67
68    G4VhShellCrossSection* shellExp = new G4hShellCrossSectionExp();
69 
70   //proton mass in Kg
71   //mass = 1.67262158e-27 * kg;   
72   G4Proton* aProtone = G4Proton::Proton();
73   mass = aProtone->GetPDGMass();
74
75   std::vector<G4double> energies;
76   //Energy from 0.005 MeV to 500 MeV
77   for (G4double i=-5.5; i<6.5; i=i+0.25)
78     {
79       energies.push_back(std::exp(i));
80     } 
81
82   G4cout << "Enter shell number: " << G4endl;
83   G4cin >> shellNumber;
84
85   // Creating the analysis factory and  the tree factory
86   AIDA::IAnalysisFactory* analysisFactory = AIDA_createAnalysisFactory();
87   AIDA::ITreeFactory* treeFactory = analysisFactory->createTreeFactory();
88
89   G4String fileName = "crossSectionElement";           
90   char buffer[3];
91
92   //Z is the atomic number
93   for (Z = 6; Z<=92; Z++)
94     { 
95       G4cout << "Z = " << Z << G4endl;
96       snprintf(buffer, 3, "%d", Z);
97       fileName = fileName + buffer + ".xml";
98
99       // Creating a tree in uncompress XML
100       AIDA::ITree* tree = treeFactory->create(fileName,"xml",0,1,"uncompress"); // output file
101       // Creating a data point set  factory, which will be handled by the tree
102       AIDA::IDataPointSetFactory* dataPointSetFactory = analysisFactory->createDataPointSetFactory(*tree);
103       // Creating a 2 D data point set
104       AIDA::IDataPointSet* dataPointSetElement = dataPointSetFactory->create("CS","Cross section", 2); 
105       fileName = "crossSectionElement";
106
107       //Cross section for each incident energy
108       for (size_t k=0; k<energies.size();k++)
109         {
110           incidentEnergy = energies[k]*MeV;
111           deltaEnergy = 0.0;
112
113           // *************************************************************** //
114           // From Empiric Model                                              //
115           // *************************************************************** //
116       
117           std::vector<G4double> CS = shellExp->GetCrossSection(Z,incidentEnergy,mass,deltaEnergy,true);
118
119           // Write in a file.xml
120           // Fill the two dimensional IDataPointSet
121           dataPointSetElement->addPoint();
122           AIDA::IDataPoint & point = *(dataPointSetElement->point(k));
123           AIDA::IMeasurement& xPoint = *(point.coordinate(0));
124           xPoint.setValue(incidentEnergy);
125           AIDA::IMeasurement& yPoint = *(point.coordinate(1));
126           yPoint.setValue(CS[0]/barn);     
127         }
128
129       // Flushing the histograms into the file
130       tree->commit();
131       // Explicitly closing the tree
132       tree->close();
133     } 
134   delete shellExp;
135
136   G4cout<<"END OF THE MAIN PROGRAM"<<G4endl;
137}
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