source: trunk/examples/novice/N04/src/ExN04DetectorConstruction.cc @ 1143

Last change on this file since 1143 was 807, checked in by garnier, 16 years ago

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26
27#include "ExN04DetectorConstruction.hh"
28#include "ExN04TrackerSD.hh"
29#include "ExN04CalorimeterSD.hh"
30#include "ExN04CalorimeterROGeometry.hh"
31#include "ExN04MuonSD.hh"
32#include "ExN04TrackerParametrisation.hh"
33#include "ExN04CalorimeterParametrisation.hh"
34#include "ExN04Field.hh"
35
36#include "G4Material.hh"
37#include "G4MaterialTable.hh"
38#include "G4Element.hh"
39#include "G4ElementTable.hh"
40#include "G4Box.hh"
41#include "G4Tubs.hh"
42#include "G4LogicalVolume.hh"
43#include "G4ThreeVector.hh"
44#include "G4PVPlacement.hh"
45#include "G4PVParameterised.hh"
46#include "G4Transform3D.hh"
47#include "G4RotationMatrix.hh"
48#include "G4FieldManager.hh"
49#include "G4TransportationManager.hh"
50#include "G4SDManager.hh"
51#include "G4VisAttributes.hh"
52#include "G4Colour.hh"
53
54ExN04DetectorConstruction::ExN04DetectorConstruction()
55{
56
57#include "ExN04DetectorParameterDef.icc"
58  DefineMaterials();
59
60}
61
62ExN04DetectorConstruction::~ExN04DetectorConstruction()
63{
64  delete Scinti;
65  delete Silicon;
66  delete Ar;
67  delete Lead;
68  delete Air;
69
70  delete O;
71  delete N;
72  delete C;
73  delete H;
74}
75
76void ExN04DetectorConstruction::DefineMaterials()
77{
78  //-------------------------------------------------------------------------
79  // Materials
80  //-------------------------------------------------------------------------
81
82  G4double a, z, density;
83  G4int nel;
84
85  H = new G4Element("Hydrogen", "H", z=1., a=  1.01*g/mole);
86  C = new G4Element("Carbon",   "C", z=6., a= 12.01*g/mole);
87  N = new G4Element("Nitrogen", "N", z=7., a= 14.01*g/mole);
88  O = new G4Element("Oxygen",   "O", z=8., a= 16.00*g/mole);
89
90  Air = new G4Material("Air", density= 1.29*mg/cm3, nel=2);
91  Air->AddElement(N, 70.*perCent);
92  Air->AddElement(O, 30.*perCent);
93
94  Lead = 
95  new G4Material("Lead", z=82., a= 207.19*g/mole, density= 11.35*g/cm3);
96
97  Ar = 
98  new G4Material("ArgonGas",z=18., a= 39.95*g/mole, density=1.782*mg/cm3);
99
100  Silicon = 
101  new G4Material("Silicon", z=14., a= 28.09*g/mole, density= 2.33*g/cm3);
102
103  Scinti = new G4Material("Scintillator", density= 1.032*g/cm3, nel=2);
104  Scinti->AddElement(C, 9);
105  Scinti->AddElement(H, 10);
106}
107
108G4VPhysicalVolume* ExN04DetectorConstruction::Construct()
109{
110  //-------------------------------------------------------------------------
111  // Magnetic field
112  //-------------------------------------------------------------------------
113
114  static G4bool fieldIsInitialized = false;
115  if(!fieldIsInitialized)
116  {
117    ExN04Field* myField = new ExN04Field;
118    G4FieldManager* fieldMgr
119      = G4TransportationManager::GetTransportationManager()
120        ->GetFieldManager();
121    fieldMgr->SetDetectorField(myField);
122    fieldMgr->CreateChordFinder(myField);
123    fieldIsInitialized = true;
124  }
125
126
127  //-------------------------------------------------------------------------
128  // Detector geometry
129  //-------------------------------------------------------------------------
130
131  //------------------------------ experimental hall
132  G4Box * experimentalHall_box
133    = new G4Box("expHall_b",expHall_x,expHall_y,expHall_z);
134  G4LogicalVolume * experimentalHall_log
135    = new G4LogicalVolume(experimentalHall_box,Air,"expHall_L",0,0,0);
136  G4VPhysicalVolume * experimentalHall_phys
137    = new G4PVPlacement(0,G4ThreeVector(),experimentalHall_log,"expHall_P",
138                        0,false,0);
139  experimentalHall_log->SetVisAttributes(G4VisAttributes::GetInvisible());
140
141  //------------------------------ tracker
142  G4VSolid * tracker_tubs
143    = new G4Tubs("trkTubs_tubs",trkTubs_rmin,trkTubs_rmax,trkTubs_dz,
144                 trkTubs_sphi,trkTubs_dphi);
145  G4LogicalVolume * tracker_log
146    = new G4LogicalVolume(tracker_tubs,Ar,"trackerT_L",0,0,0);
147  // G4VPhysicalVolume * tracker_phys =
148      new G4PVPlacement(0,G4ThreeVector(),tracker_log,"tracker_phys",
149                        experimentalHall_log,false,0);
150  G4VisAttributes* tracker_logVisAtt
151    = new G4VisAttributes(G4Colour(1.0,0.0,1.0));
152  tracker_log->SetVisAttributes(tracker_logVisAtt);
153
154  //------------------------------ tracker layers
155  // As an example for Parameterised volume
156  // dummy values for G4Tubs -- modified by parameterised volume
157  G4VSolid * trackerLayer_tubs
158    = new G4Tubs("trackerLayer_tubs",trkTubs_rmin,trkTubs_rmax,trkTubs_dz,
159                 trkTubs_sphi,trkTubs_dphi);
160  G4LogicalVolume * trackerLayer_log
161    = new G4LogicalVolume(trackerLayer_tubs,Silicon,"trackerB_L",0,0,0);
162  G4VPVParameterisation * trackerParam
163    = new ExN04TrackerParametrisation;
164  // dummy value : kXAxis -- modified by parameterised volume
165  // G4VPhysicalVolume *trackerLayer_phys =
166      new G4PVParameterised("trackerLayer_phys",trackerLayer_log,tracker_log,
167                           kXAxis, notrkLayers, trackerParam);
168  G4VisAttributes* trackerLayer_logVisAtt
169    = new G4VisAttributes(G4Colour(0.5,0.0,1.0));
170  trackerLayer_logVisAtt->SetForceWireframe(true);
171  trackerLayer_log->SetVisAttributes(trackerLayer_logVisAtt);
172
173  //------------------------------ calorimeter
174  G4VSolid * calorimeter_tubs
175    = new G4Tubs("calorimeter_tubs",caloTubs_rmin,caloTubs_rmax,
176                  caloTubs_dz,caloTubs_sphi,caloTubs_dphi);
177  G4LogicalVolume * calorimeter_log
178    = new G4LogicalVolume(calorimeter_tubs,Scinti,"caloT_L",0,0,0);
179  // G4VPhysicalVolume * calorimeter_phys =
180      new G4PVPlacement(0,G4ThreeVector(),calorimeter_log,"caloM_P",
181                        experimentalHall_log,false,0);
182  G4VisAttributes* calorimeter_logVisATT
183    = new G4VisAttributes(G4Colour(1.0,1.0,0.0));
184  calorimeter_logVisATT->SetForceWireframe(true);
185  calorimeter_log->SetVisAttributes(calorimeter_logVisATT);
186
187  //------------------------------- Lead layers
188  // As an example for Parameterised volume
189  // dummy values for G4Tubs -- modified by parameterised volume
190  G4VSolid * caloLayer_tubs
191    = new G4Tubs("caloLayer_tubs",caloRing_rmin,caloRing_rmax,
192                  caloRing_dz,caloRing_sphi,caloRing_dphi);
193  G4LogicalVolume * caloLayer_log
194    = new G4LogicalVolume(caloLayer_tubs,Lead,"caloR_L",0,0,0);
195  G4VPVParameterisation * calorimeterParam
196    = new ExN04CalorimeterParametrisation;
197  // dummy value : kXAxis -- modified by parameterised volume
198  // G4VPhysicalVolume * caloLayer_phys =
199      new G4PVParameterised("caloLayer_phys",caloLayer_log,calorimeter_log,
200                           kXAxis, nocaloLayers, calorimeterParam);
201  G4VisAttributes* caloLayer_logVisAtt
202    = new G4VisAttributes(G4Colour(0.7,1.0,0.0));
203  caloLayer_log->SetVisAttributes(caloLayer_logVisAtt);
204
205  //------------------------------ muon counters
206  // As an example of CSG volumes with rotation
207  G4VSolid * muoncounter_box
208    = new G4Box("muoncounter_box",muBox_width,muBox_thick,
209                muBox_length);
210  G4LogicalVolume * muoncounter_log
211    = new G4LogicalVolume(muoncounter_box,Scinti,"mucounter_L",0,0,0);
212  G4VPhysicalVolume * muoncounter_phys;
213  for(int i=0; i<nomucounter ; i++)
214  {
215    G4double phi, x, y, z;
216    phi = 360.*deg/nomucounter*i;
217    x = muBox_radius*std::sin(phi);
218    y = muBox_radius*std::cos(phi);
219    z = 0.*cm;
220    G4RotationMatrix rm;
221    rm.rotateZ(phi);
222    muoncounter_phys
223      = new G4PVPlacement(G4Transform3D(rm,G4ThreeVector(x,y,z)),
224                          muoncounter_log, "muoncounter_P",
225                          experimentalHall_log,false,i);
226  }
227  G4VisAttributes* muoncounter_logVisAtt
228    = new G4VisAttributes(G4Colour(0.0,1.0,1.0));
229  muoncounter_logVisAtt->SetForceWireframe(true);
230  muoncounter_log->SetVisAttributes(muoncounter_logVisAtt);
231
232  //------------------------------------------------------------------
233  // Sensitive Detector
234  //------------------------------------------------------------------
235
236  G4SDManager* SDman = G4SDManager::GetSDMpointer();
237
238  G4String trackerSDname = "/mydet/tracker";
239  ExN04TrackerSD * trackerSD = new ExN04TrackerSD(trackerSDname);
240  SDman->AddNewDetector(trackerSD);
241  trackerLayer_log->SetSensitiveDetector(trackerSD);
242
243  G4String calorimeterSDname = "/mydet/calorimeter";
244  ExN04CalorimeterSD * calorimeterSD = new ExN04CalorimeterSD(calorimeterSDname);
245  G4String ROgeometryName = "CalorimeterROGeom";
246  G4VReadOutGeometry* calRO = new ExN04CalorimeterROGeometry(ROgeometryName);
247  calRO->BuildROGeometry();
248  calRO->SetName(ROgeometryName);
249  calorimeterSD->SetROgeometry(calRO);
250  SDman->AddNewDetector(calorimeterSD);
251  calorimeter_log->SetSensitiveDetector(calorimeterSD);
252
253  G4String muonSDname = "/mydet/muon";
254  ExN04MuonSD * muonSD = new ExN04MuonSD(muonSDname);
255  SDman->AddNewDetector(muonSD);
256  muoncounter_log->SetSensitiveDetector(muonSD);
257
258  //------------------------------------------------------------------
259  // Digitizer modules
260  //------------------------------------------------------------------
261
262  return experimentalHall_phys;
263}
264
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