source: trunk/examples/extended/persistency/P02/src/ExP02DetectorConstruction.cc@ 807

Last change on this file since 807 was 807, checked in by garnier, 17 years ago

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1//
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5// * The Geant4 software is copyright of the Copyright Holders of *
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25//
26//
27#include "ExP02DetectorConstruction.hh"
28
29#include "G4Material.hh"
30#include "G4Box.hh"
31#include "G4Tubs.hh"
32#include "G4LogicalVolume.hh"
33#include "G4ThreeVector.hh"
34#include "G4PVPlacement.hh"
35#include "globals.hh"
36
37//ROOT
38#include "TROOT.h"
39#include "TFile.h"
40#include "TSystem.h"
41#include "Cintex/Cintex.h"
42
43#include "ExP02GeoTree.hh"
44
45ExP02DetectorConstruction::ExP02DetectorConstruction()
46 : experimentalHall_log(0), tracker_log(0),
47 calorimeterBlock_log(0), calorimeterLayer_log(0),
48 experimentalHall_phys(0), calorimeterLayer_phys(0),
49 calorimeterBlock_phys(0), tracker_phys(0)
50{;}
51
52ExP02DetectorConstruction::~ExP02DetectorConstruction()
53{
54}
55
56G4VPhysicalVolume* ExP02DetectorConstruction::Construct()
57{
58
59 //------------------------------------------------------ materials
60
61 G4double a; // atomic mass
62 G4double z; // atomic number
63 G4double density;
64
65 G4Material* Ar =
66 new G4Material("ArgonGas", z= 18., a= 39.95*g/mole, density= 1.782*mg/cm3);
67
68 G4Material* Al =
69 new G4Material("Aluminum", z= 13., a= 26.98*g/mole, density= 2.7*g/cm3);
70
71 G4Material* Pb =
72 new G4Material("Lead", z= 82., a= 207.19*g/mole, density= 11.35*g/cm3);
73
74 //------------------------------------------------------ volumes
75
76 //------------------------------ experimental hall (world volume)
77 //------------------------------ beam line along x axis
78
79 G4double expHall_x = 3.0*m;
80 G4double expHall_y = 1.0*m;
81 G4double expHall_z = 1.0*m;
82 G4Box* experimentalHall_box
83 = new G4Box("expHall_box",expHall_x,expHall_y,expHall_z);
84 experimentalHall_log = new G4LogicalVolume(experimentalHall_box,
85 Ar,"expHall_log",0,0,0);
86 experimentalHall_phys = new G4PVPlacement(0,G4ThreeVector(),
87 experimentalHall_log,"expHall",0,false,0);
88
89 //------------------------------ a tracker tube
90
91 G4double innerRadiusOfTheTube = 0.*cm;
92 G4double outerRadiusOfTheTube = 60.*cm;
93 G4double hightOfTheTube = 50.*cm;
94 G4double startAngleOfTheTube = 0.*deg;
95 G4double spanningAngleOfTheTube = 360.*deg;
96 G4Tubs* tracker_tube = new G4Tubs("tracker_tube",innerRadiusOfTheTube,
97 outerRadiusOfTheTube,hightOfTheTube,
98 startAngleOfTheTube,spanningAngleOfTheTube);
99 tracker_log = new G4LogicalVolume(tracker_tube,Al,"tracker_log",0,0,0);
100 G4double trackerPos_x = -1.0*m;
101 G4double trackerPos_y = 0.*m;
102 G4double trackerPos_z = 0.*m;
103 tracker_phys = new G4PVPlacement(0,
104 G4ThreeVector(trackerPos_x,trackerPos_y,trackerPos_z),
105 tracker_log,"tracker",experimentalHall_log,false,0);
106
107 //------------------------------ a calorimeter block
108
109 G4double block_x = 1.0*m;
110 G4double block_y = 50.0*cm;
111 G4double block_z = 50.0*cm;
112 G4Box* calorimeterBlock_box = new G4Box("calBlock_box",block_x,
113 block_y,block_z);
114 calorimeterBlock_log = new G4LogicalVolume(calorimeterBlock_box,
115 Pb,"caloBlock_log",0,0,0);
116 G4double blockPos_x = 1.0*m;
117 G4double blockPos_y = 0.0*m;
118 G4double blockPos_z = 0.0*m;
119 calorimeterBlock_phys = new G4PVPlacement(0,
120 G4ThreeVector(blockPos_x,blockPos_y,blockPos_z),
121 calorimeterBlock_log,"caloBlock",experimentalHall_log,false,0);
122
123 //------------------------------ calorimeter layers
124
125 G4double calo_x = 1.*cm;
126 G4double calo_y = 40.*cm;
127 G4double calo_z = 40.*cm;
128 G4Box* calorimeterLayer_box = new G4Box("caloLayer_box",
129 calo_x,calo_y,calo_z);
130 calorimeterLayer_log = new G4LogicalVolume(calorimeterLayer_box,
131 Al,"caloLayer_log",0,0,0);
132 for(G4int i=0;i<19;i++) // loop for 19 layers
133 {
134 G4double caloPos_x = (i-9)*10.*cm;
135 G4double caloPos_y = 0.0*m;
136 G4double caloPos_z = 0.0*m;
137 calorimeterLayer_phys = new G4PVPlacement(0,
138 G4ThreeVector(caloPos_x,caloPos_y,caloPos_z),
139 calorimeterLayer_log,"caloLayer",calorimeterBlock_log,false,i);
140 }
141
142 //------------------------------------------------------------------
143
144 // writing the geometry to a ROOT file
145
146 // initialize ROOT
147 TSystem ts;
148
149 gSystem->Load("libClassesDict");
150
151 // ROOT::Cintex::Cintex::SetDebug(2);
152 ROOT::Cintex::Cintex::Enable();
153 // gDebug = 1;
154
155 const G4ElementTable* eltab = G4Element::GetElementTable();
156 const G4MaterialTable* mattab = G4Material::GetMaterialTable();
157
158 ExP02GeoTree* geotree = new ExP02GeoTree(experimentalHall_phys, eltab, mattab);
159
160 TFile fo("geo.root","RECREATE");
161
162 fo.WriteObject(geotree, "my_geo");
163
164 return experimentalHall_phys;
165}
166
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