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Geant4/examples/extended/medical/GammaTherapy/src/DetectorConstruction.cc

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Differences between /examples/extended/medical/GammaTherapy/src/DetectorConstruction.cc (Version 11.3.0) and /examples/extended/medical/GammaTherapy/src/DetectorConstruction.cc (Version 10.3.p2)


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                                                   >>  26 // $Id: DetectorConstruction.cc 101905 2016-12-07 11:34:39Z gunter $
 26 //                                                 27 //
 27 /// \file medical/GammaTherapy/src/DetectorCon     28 /// \file medical/GammaTherapy/src/DetectorConstruction.cc
 28 /// \brief Implementation of the DetectorConst     29 /// \brief Implementation of the DetectorConstruction class
 29 //                                                 30 //
 30 //                                                 31 //
 31 // -------------------------------------------     32 // -------------------------------------------------------------
 32 //      GEANT4 ibrem test                          33 //      GEANT4 ibrem test
 33 //                                                 34 //
 34 // Authors: V.Grichine, V.Ivanchenko               35 // Authors: V.Grichine, V.Ivanchenko
 35 //                                                 36 //
 36 // Modified:                                       37 // Modified:
 37 //                                                 38 //
 38 // 18-02-03 V.Ivanchenko create                    39 // 18-02-03 V.Ivanchenko create
 39 //                                                 40 //
 40 // -------------------------------------------     41 // -------------------------------------------------------------
 41                                                    42 
 42 //....oooOO0OOooo........oooOO0OOooo........oo     43 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 43 //....oooOO0OOooo........oooOO0OOooo........oo     44 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 44                                                    45 
 45 #include "DetectorConstruction.hh"                 46 #include "DetectorConstruction.hh"
 46                                                << 
 47 #include "CheckVolumeSD.hh"                    << 
 48 #include "DetectorMessenger.hh"                    47 #include "DetectorMessenger.hh"
 49 #include "PhantomSD.hh"                            48 #include "PhantomSD.hh"
 50 #include "TargetSD.hh"                             49 #include "TargetSD.hh"
                                                   >>  50 #include "CheckVolumeSD.hh"
                                                   >>  51 #include "Histo.hh"
 51                                                    52 
 52 #include "G4Box.hh"                                53 #include "G4Box.hh"
 53 #include "G4Colour.hh"                         <<  54 #include "G4Tubs.hh"
 54 #include "G4GeometryManager.hh"                << 
 55 #include "G4LogicalVolume.hh"                      55 #include "G4LogicalVolume.hh"
 56 #include "G4LogicalVolumeStore.hh"             <<  56 #include "G4VPhysicalVolume.hh"
                                                   >>  57 #include "G4PVPlacement.hh"
 57 #include "G4Material.hh"                           58 #include "G4Material.hh"
                                                   >>  59 #include "G4SDManager.hh"
                                                   >>  60 #include "PhantomSD.hh"
 58 #include "G4NistManager.hh"                        61 #include "G4NistManager.hh"
 59 #include "G4PVPlacement.hh"                    <<  62 
 60 #include "G4PhysicalConstants.hh"              << 
 61 #include "G4PhysicalVolumeStore.hh"                63 #include "G4PhysicalVolumeStore.hh"
 62 #include "G4RunManager.hh"                     <<  64 #include "G4LogicalVolumeStore.hh"
 63 #include "G4SDManager.hh"                      << 
 64 #include "G4SolidStore.hh"                         65 #include "G4SolidStore.hh"
 65 #include "G4SystemOfUnits.hh"                  <<  66 #include "G4RunManager.hh"
 66 #include "G4Tubs.hh"                           <<  67 
 67 #include "G4VPhysicalVolume.hh"                << 
 68 #include "G4VisAttributes.hh"                      68 #include "G4VisAttributes.hh"
 69 #include "G4ios.hh"                            <<  69 #include "G4Colour.hh"
                                                   >>  70 
 70 #include "globals.hh"                              71 #include "globals.hh"
                                                   >>  72 #include "G4PhysicalConstants.hh"
                                                   >>  73 #include "G4SystemOfUnits.hh"
                                                   >>  74 #include "G4ios.hh"
 71                                                    75 
 72 //....oooOO0OOooo........oooOO0OOooo........oo     76 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 73                                                    77 
 74 DetectorConstruction::DetectorConstruction()       78 DetectorConstruction::DetectorConstruction()
 75 {                                                  79 {
 76   fLogicTarget1 = 0;                               80   fLogicTarget1 = 0;
 77   fLogicTarget2 = 0;                               81   fLogicTarget2 = 0;
 78                                                    82 
 79   fMessenger = new DetectorMessenger(this);        83   fMessenger = new DetectorMessenger(this);
 80   fVerbose = false;                            << 
 81                                                    84 
 82   fNumZ = 60;                                  <<  85   fCheckSD = new CheckVolumeSD("checkSD");
 83   fNumR = 80;                                  <<  86   (G4SDManager::GetSDMpointer())->AddNewDetector( fCheckSD );
 84                                                <<  87   fPhantomSD = new PhantomSD("phantomSD");
 85   fNumE = 200;                                 <<  88   (G4SDManager::GetSDMpointer())->AddNewDetector( fPhantomSD );
 86   fMaxEnergy = 50.0 * MeV;                     <<  89   fTargetSD = new TargetSD("targetSD");
 87                                                <<  90   (G4SDManager::GetSDMpointer())->AddNewDetector( fTargetSD );
 88   fDistanceVacuumTarget = 30. * mm,            <<  91 
 89                                                <<  92   fDistanceVacuumTarget = 30.*mm,
 90   fDelta = 0.001 * mm;                         <<  93 
 91                                                <<  94   fDelta                = 0.001*mm;
 92   fTargetRadius = 100. * mm;                   <<  95 
 93   fTarget1Z = 9. * mm;                         <<  96   fTargetRadius         = 100.*mm;
 94   fTarget2Z = 6. * mm;                         <<  97   fTarget1Z             = 9.*mm;
 95                                                <<  98   fTarget2Z             = 6.*mm;
 96   fGasVolumeRadius = 210. * mm;                <<  99 
 97   fGasVolumeZ = 690. * mm;                     << 100   fGasVolumeRadius      = 210.*mm;
 98   fMylarVolumeZ = 0.02 * mm;                   << 101   fGasVolumeZ           = 690.*mm;
 99                                                << 102   fMylarVolumeZ         = 0.02*mm;
100   fCheckVolumeZ = 0.1 * mm;                    << 103 
101   fCheckShiftZ = 200. * mm;                    << 104   fCheckVolumeZ         = 0.1*mm;
102                                                << 105   fCheckShiftZ          = 200.*mm;
103   fAbsorberRadius = 200. * mm;                 << 106 
104   fPhantomRadius = 300. * mm;                  << 107   fAbsorberRadius       = 200.*mm;
105   fPhantomZ = 300. * mm;                       << 108   fPhantomRadius        = 300.*mm;
106                                                << 109   fPhantomZ             = 300.*mm;
107   fAirZ = 210. * mm;                           << 110 
108   fAbsorberShiftZ = 70. * mm;                  << 111   fAirZ                 = 210.*mm;
109   fWindowZ = 0.05 * mm;                        << 112   fAbsorberShiftZ       = 70.*mm;
                                                   >> 113   fWindowZ              = 0.05*mm;
110                                                   114 
111   G4NistManager* man = G4NistManager::Instance    115   G4NistManager* man = G4NistManager::Instance();
112   // man->SetVerbose(1);                       << 116   //man->SetVerbose(1);
113                                                   117 
114   fTarget1Material = man->FindOrBuildMaterial(    118   fTarget1Material = man->FindOrBuildMaterial("G4_Be");
115   fWindowMaterial = fTarget1Material;          << 119   fWindowMaterial  = fTarget1Material;
116   fTarget2Material = man->FindOrBuildMaterial(    120   fTarget2Material = man->FindOrBuildMaterial("G4_W");
117   fLightMaterial = man->FindOrBuildMaterial("G << 121   fLightMaterial   = man->FindOrBuildMaterial("G4_He");
118   fAbsorberMaterial = man->FindOrBuildMaterial << 122   fAbsorberMaterial= man->FindOrBuildMaterial("G4_WATER");
119   fWorldMaterial = man->FindOrBuildMaterial("G << 123   fWorldMaterial   = man->FindOrBuildMaterial("G4_AIR");
120   fMylar = man->FindOrBuildMaterial("G4_MYLAR" << 124   fMylar           = man->FindOrBuildMaterial("G4_MYLAR");
121                                                   125 
122   G4cout << *(G4Material::GetMaterialTable())     126   G4cout << *(G4Material::GetMaterialTable()) << G4endl;
123 }                                                 127 }
124                                                   128 
125 //....oooOO0OOooo........oooOO0OOooo........oo    129 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
126                                                   130 
127 DetectorConstruction::~DetectorConstruction()     131 DetectorConstruction::~DetectorConstruction()
128 {                                              << 132 {}
129   delete fMessenger;                           << 
130 }                                              << 
131                                                   133 
132 //....oooOO0OOooo........oooOO0OOooo........oo    134 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
133                                                   135 
134 void DetectorConstruction::InitialiseGeometryP    136 void DetectorConstruction::InitialiseGeometryParameters()
135 {                                                 137 {
136   // Volumee sizes                                138   // Volumee sizes
137                                                   139 
138   G4double factor = 1.2;                          140   G4double factor = 1.2;
139                                                   141 
140   fWorldXY = factor * std::max(fPhantomRadius, << 142   fWorldXY       = factor*std::max(fPhantomRadius,fGasVolumeRadius);
141   fAbsorberZ = fPhantomZ / fNumZ;              << 143   G4double nz    = (G4int)((Histo::GetPointer())->GetNumberDivZ());
142   fGasVolumeZ = 1000. * mm - fAbsorberShiftZ - << 144   fAbsorberZ     = fPhantomZ/nz;
                                                   >> 145   fGasVolumeZ    = 1000.*mm - fAbsorberShiftZ - fAirZ - fTarget1Z - fTarget2Z;
143                                                   146 
144   G4double ztot = fGasVolumeZ + fAirZ + fPhant << 147   G4double ztot  = fGasVolumeZ + fAirZ + fPhantomZ + fDistanceVacuumTarget;
145   fTargetVolumeZ = fDistanceVacuumTarget + fTa    148   fTargetVolumeZ = fDistanceVacuumTarget + fTarget2Z + fTarget1Z + fDelta;
146   fWorldZ = factor * ztot * 0.5;               << 149   fWorldZ  = factor*ztot*0.5;
147                                                   150 
148   if (fCheckShiftZ < fDelta) {                 << 151   if(fCheckShiftZ < fDelta) { fCheckShiftZ = fDelta; }
149     fCheckShiftZ = fDelta;                     << 152   if(fCheckShiftZ > fAirZ - fCheckVolumeZ -fDelta) {
150   }                                            << 153     fCheckShiftZ = fAirZ - fCheckVolumeZ -fDelta;
151   if (fCheckShiftZ > fAirZ - fCheckVolumeZ - f << 
152     fCheckShiftZ = fAirZ - fCheckVolumeZ - fDe << 
153   }                                               154   }
154                                                   155 
155   // Z position of volumes from upstream to do    156   // Z position of volumes from upstream to downstream
156                                                   157 
157   fWindowPosZ = -(ztot + fWindowZ) * 0.5;      << 158   fWindowPosZ      =  -(ztot + fWindowZ)*0.5;
158   fGeneratorPosZ = fWindowPosZ - 0.5 * fWindow << 159   fGeneratorPosZ   =  fWindowPosZ - 0.5*fWindowZ - fDelta;
159                                                << 
160   fTargetVolumePosZ = -0.5 * (ztot - fTargetVo << 
161   fTarget1PosZ = -0.5 * (fTargetVolumeZ - fTar << 
162   fTarget2PosZ = fTarget1PosZ + 0.5 * (fTarget << 
163                                                << 
164   fGasVolumePosZ = fTargetVolumePosZ + 0.5 * ( << 
165   fCheckVolumePosZ = fGasVolumePosZ + 0.5 * (f << 
166   fMylarPosZ = fGasVolumePosZ + 0.5 * (fGasVol << 
167                                                << 
168   fPhantomPosZ = fGasVolumePosZ + 0.5 * (fGasV << 
169   fAbsorberPosZ = fAbsorberShiftZ - 0.5 * (fPh << 
170                                                   160 
171   fShiftZPh = fPhantomPosZ - 0.5 * fPhantomZ;  << 161   fTargetVolumePosZ=  -0.5*(ztot - fTargetVolumeZ);
                                                   >> 162   fTarget1PosZ     =  -0.5*(fTargetVolumeZ - fTarget1Z) + fDistanceVacuumTarget;
                                                   >> 163   fTarget2PosZ     =  fTarget1PosZ + 0.5*(fTarget2Z + fTarget1Z);
                                                   >> 164 
                                                   >> 165   fGasVolumePosZ   =  fTargetVolumePosZ + 0.5*(fTargetVolumeZ + fGasVolumeZ);
                                                   >> 166   fCheckVolumePosZ =  fGasVolumePosZ + 0.5*(fGasVolumeZ + fCheckVolumeZ)
                                                   >> 167                                 +  fCheckShiftZ;
                                                   >> 168   fMylarPosZ =  fGasVolumePosZ + 0.5*(fGasVolumeZ + fMylarVolumeZ) + fDelta;
                                                   >> 169 
                                                   >> 170   fPhantomPosZ     =  fGasVolumePosZ + 0.5*(fGasVolumeZ + fPhantomZ) + fAirZ;
                                                   >> 171   fAbsorberPosZ    =  fAbsorberShiftZ - 0.5*(fPhantomZ - fAbsorberZ);
                                                   >> 172   (Histo::GetPointer())->SetAbsorberZ(fPhantomZ);
                                                   >> 173   (Histo::GetPointer())->SetAbsorberR(fAbsorberRadius);
                                                   >> 174   (Histo::GetPointer())->SetScoreZ(fAbsorberShiftZ);
                                                   >> 175   G4double shiftZPh = fPhantomPosZ-0.5*fPhantomZ;
                                                   >> 176   fPhantomSD->SetShiftZ(shiftZPh);
172                                                   177 
173   DumpGeometryParameters();                    << 178   G4cout << "===================================================" << G4endl;
                                                   >> 179   G4cout << "#           GammaTherapy Geometry                 #" << G4endl;
                                                   >> 180   G4cout << "===================================================" << G4endl;
                                                   >> 181   G4cout << "  World   width= " << fWorldZ/mm << " mm " << G4endl;
                                                   >> 182   G4cout << "  Window  width= " << fWindowZ/mm << " mm    position = "
                                                   >> 183                                 << fWindowPosZ/mm << " mm:" << G4endl;
                                                   >> 184   G4cout << "  TargetV width= " << fTargetVolumeZ/mm << " mm  position = "
                                                   >> 185                                 << fTargetVolumePosZ/mm << " mm:" << G4endl;
                                                   >> 186   G4cout << "  Target1 width= " << fTarget1Z/mm << " mm       position = "
                                                   >> 187                                 << fTarget1PosZ/mm << " mm:" << G4endl;
                                                   >> 188   G4cout << "  Target2 width= " << fTarget2Z/mm << " mm       position = "
                                                   >> 189                                 << fTarget2PosZ/mm << " mm:" << G4endl;
                                                   >> 190   G4cout << "  Gas     width= " << fGasVolumeZ/mm << " mm     position = "
                                                   >> 191                                 << fGasVolumePosZ/mm << " mm:" << G4endl;
                                                   >> 192   G4cout << "  Mylar   width= " << fMylarVolumeZ/mm << " mm    position = "
                                                   >> 193                                 << fMylarPosZ/mm << " mm:" << G4endl;
                                                   >> 194   G4cout << "  Check   width= " << fCheckVolumeZ/mm << " mm     position = "
                                                   >> 195                                 << fCheckVolumePosZ/mm << " mm:" << G4endl;
                                                   >> 196   G4cout << "  Air     width= " << fAirZ/mm << " mm " << G4endl;
                                                   >> 197   G4cout << "  Phantom width= " << fPhantomZ/mm << " mm     position = "
                                                   >> 198                                 << fPhantomPosZ/mm << " mm:" << G4endl;
                                                   >> 199   G4cout << "  Absorb  width= " << fAbsorberZ/mm << " mm       position = "
                                                   >> 200                                 << fAbsorberPosZ/mm << " mm:" << G4endl;
                                                   >> 201   G4cout << "  Absorb  shift= " << shiftZPh/mm << " mm " << G4endl;
                                                   >> 202   G4cout << "  Target1        " << fTarget1Material->GetName() << G4endl;
                                                   >> 203   G4cout << "  Target2        " << fTarget2Material->GetName() << G4endl;
                                                   >> 204   G4cout << "  Phantom        " << fAbsorberMaterial->GetName() << G4endl;
                                                   >> 205   G4cout << "===================================================" << G4endl;
174 }                                                 206 }
175                                                   207 
176 //....oooOO0OOooo........oooOO0OOooo........oo    208 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
177                                                   209 
178 G4VPhysicalVolume* DetectorConstruction::Const    210 G4VPhysicalVolume* DetectorConstruction::Construct()
179 {                                                 211 {
180   InitialiseGeometryParameters();                 212   InitialiseGeometryParameters();
181                                                   213 
182   G4GeometryManager::GetInstance()->OpenGeomet << 
183   G4PhysicalVolumeStore::GetInstance()->Clean( << 
184   G4LogicalVolumeStore::GetInstance()->Clean() << 
185   G4SolidStore::GetInstance()->Clean();        << 
186   //                                              214   //
187   // World                                        215   // World
188   //                                              216   //
                                                   >> 217   G4VPhysicalVolume* pv;
189                                                   218 
190   G4Box* solidWorld = new G4Box("World", fWorl << 219   G4Box* solidWorld = new G4Box("World",fWorldXY,fWorldXY,fWorldZ);
191   G4LogicalVolume* logicWorld = new G4LogicalV << 220   G4LogicalVolume* logicWorld = new G4LogicalVolume(solidWorld,
192   G4VPhysicalVolume* physWorld =               << 221                                                     fWorldMaterial,"World");
193     new G4PVPlacement(0, G4ThreeVector(), "Wor << 222   G4VPhysicalVolume* physWorld = new G4PVPlacement(0,G4ThreeVector(),"World",
                                                   >> 223                                                    logicWorld,0,false,0);
194                                                   224 
195   // Be Vacuum window                             225   // Be Vacuum window
196   G4Tubs* solidWin = new G4Tubs("Window", 0.,  << 226   G4Tubs* solidWin = new G4Tubs("Window",0.,fTargetRadius*0.25,0.5*fWindowZ,
197   G4LogicalVolume* logicWin = new G4LogicalVol << 227                                 0.,twopi);
198   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 228   G4LogicalVolume* logicWin = new G4LogicalVolume(solidWin,
                                                   >> 229                                                   fWindowMaterial,"Window");
                                                   >> 230   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fWindowPosZ),"Window",logicWin,
                                                   >> 231                          physWorld,false,0);
199                                                   232 
200   // Target Volume                                233   // Target Volume
201   G4Tubs* solidTGVolume =                      << 234   G4Tubs* solidTGVolume = new G4Tubs("TargetVolume",0.,fTargetRadius,
202     new G4Tubs("TargetVolume", 0., fTargetRadi << 235                                      0.5*fTargetVolumeZ,0.,twopi);
203   G4LogicalVolume* logicTGVolume =             << 236   G4LogicalVolume* logicTGVolume = new G4LogicalVolume(solidTGVolume,
204     new G4LogicalVolume(solidTGVolume, fLightM << 237                                                        fLightMaterial,
205   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 238                                                        "TargetVolume");
206                     logicWorld, false, 0);     << 239   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fTargetVolumePosZ),
                                                   >> 240                          logicTGVolume,"TargetVolume",
                                                   >> 241                          logicWorld,false,0);
207                                                   242 
208   // Target 1                                     243   // Target 1
209   G4Tubs* solidTarget1 = new G4Tubs("Target1", << 244   G4Tubs* solidTarget1 = new G4Tubs("Target1",0.,fTargetRadius*0.5,
210   fLogicTarget1 = new G4LogicalVolume(solidTar << 245                                     0.5*fTarget1Z,0.,twopi);
211   fTarget1 = new G4PVPlacement(0, G4ThreeVecto << 246   fLogicTarget1 = new G4LogicalVolume(solidTarget1,fTarget1Material,"Target1");
212                                logicTGVolume,  << 247   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fTarget1PosZ),
213   //  fLogicTarget1->SetSensitiveDetector(fTar << 248                          fLogicTarget1,"Target1",
                                                   >> 249                          logicTGVolume,false,0);
                                                   >> 250   (Histo::GetPointer())->SetTarget1(pv);
                                                   >> 251   fLogicTarget1->SetSensitiveDetector(fTargetSD);
214                                                   252 
215   // Target 2 (for combined targets)              253   // Target 2 (for combined targets)
216   G4Tubs* solidTarget2 = new G4Tubs("Target2", << 254   G4Tubs* solidTarget2 = new G4Tubs("Target2",0.,fTargetRadius*0.5,
217   fLogicTarget2 = new G4LogicalVolume(solidTar << 255                                     0.5*fTarget2Z,0.,twopi);
218   fTarget2 = new G4PVPlacement(0, G4ThreeVecto << 256   fLogicTarget2 = new G4LogicalVolume(solidTarget2,fTarget2Material,"Target2");
219                                logicTGVolume,  << 257   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fTarget2PosZ),
                                                   >> 258                          fLogicTarget2,"Target2",
                                                   >> 259                          logicTGVolume,false,0);
220                                                   260 
221   //  fLogicTarget2->SetSensitiveDetector(fTar << 261   (Histo::GetPointer())->SetTarget2(pv);
                                                   >> 262   fLogicTarget2->SetSensitiveDetector(fTargetSD);
222                                                   263 
223   // Gas Volume                                   264   // Gas Volume
224   G4Tubs* solidGasVolume =                     << 265   G4Tubs* solidGasVolume = new G4Tubs("GasVolume",0.,fGasVolumeRadius,
225     new G4Tubs("GasVolume", 0., fGasVolumeRadi << 266                                       0.5*fGasVolumeZ,0.,twopi);
226   G4LogicalVolume* logicGasVolume =            << 267   G4LogicalVolume* logicGasVolume = new G4LogicalVolume(solidGasVolume,
227     new G4LogicalVolume(solidGasVolume, fLight << 268                                                         fLightMaterial,
228   fGasVolume = new G4PVPlacement(0, G4ThreeVec << 269                                                         "GasVolume");
229                                  logicGasVolum << 270   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fGasVolumePosZ),
                                                   >> 271                          "GasVolume",logicGasVolume,
                                                   >> 272                          physWorld,false,0);
                                                   >> 273   (Histo::GetPointer())->SetGasVolume(pv);
230                                                   274 
231   // Mylar window                                 275   // Mylar window
232   G4Tubs* sMylarVolume = new G4Tubs("Mylar", 0 << 276   G4Tubs* sMylarVolume = new G4Tubs("Mylar",0.,fGasVolumeRadius,
233   G4LogicalVolume* lMylarVolume = new G4Logica << 277                                     0.5*fMylarVolumeZ,0.,twopi);
234   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 278   G4LogicalVolume* lMylarVolume = new G4LogicalVolume(sMylarVolume,
235                     0);                        << 279                                                       fMylar,"Mylar");
                                                   >> 280   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fMylarPosZ),"Mylar",lMylarVolume,
                                                   >> 281                          physWorld,false,0);
236                                                   282 
237   // Check Volume                                 283   // Check Volume
238   G4Tubs* solidCheckVolume =                   << 284   G4Tubs* solidCheckVolume = new G4Tubs("CheckVolume",0.,fGasVolumeRadius,
239     new G4Tubs("CheckVolume", 0., fGasVolumeRa << 285                                         0.5*fCheckVolumeZ,0.,twopi);
240   fLogicCheckVolume = new G4LogicalVolume(soli << 286   G4LogicalVolume* logicCheckVolume = new G4LogicalVolume(solidCheckVolume,
241   fCheckVolume = new G4PVPlacement(0, G4ThreeV << 287                                                           fWorldMaterial,
242                                    fLogicCheck << 288                                                           "CheckVolume");
243   //  logicCheckVolume->SetSensitiveDetector(f << 289   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fCheckVolumePosZ),
                                                   >> 290                          "CheckVolume",logicCheckVolume,
                                                   >> 291                          physWorld,false,0);
                                                   >> 292   (Histo::GetPointer())->SetCheckVolume(pv);
                                                   >> 293   logicCheckVolume->SetSensitiveDetector(fCheckSD);
244                                                   294 
245   // Phantom                                      295   // Phantom
246   G4Box* solidPhantom = new G4Box("Phantom", f << 296   G4Box* solidPhantom = new G4Box("Phantom",fPhantomRadius,fPhantomRadius,
247   G4LogicalVolume* logicPhantom = new G4Logica << 297                                   0.5*fPhantomZ);
248   G4VPhysicalVolume* physPhantom = new G4PVPla << 298   G4LogicalVolume* logicPhantom = new G4LogicalVolume(solidPhantom,
249                                                << 299                                                       fAbsorberMaterial,
250                                                << 300                                                       "Phantom");
251   G4Tubs* solidPh = new G4Tubs("PhantomSD", 0. << 301   G4VPhysicalVolume* physPhantom = 
252   fLogicPh = new G4LogicalVolume(solidPh, fAbs << 302     new G4PVPlacement(0, G4ThreeVector(0.,0.,fPhantomPosZ),
253   fPhantom =                                   << 303                       "Phantom",logicPhantom,
254     new G4PVPlacement(0, G4ThreeVector(0., 0., << 304                       physWorld,false,0);
255   G4cout << "Phantom R= " << fAbsorberRadius < << 305 
256                                                << 306   G4Tubs* solidPh = new G4Tubs("PhantomSD",0.,fAbsorberRadius,
257   // Sensitive Absorber                        << 307                                0.5*fPhantomZ,0.,twopi);
258   G4double absWidth = 0.5 * fAbsorberZ;        << 308   G4LogicalVolume* logicPh = new G4LogicalVolume(solidPh,
259   G4Tubs* solidAbsorber = new G4Tubs("Absorber << 309                                                  fAbsorberMaterial,"PhantomSD");
260   fLogicAbsorber = new G4LogicalVolume(solidAb << 310   G4VPhysicalVolume* physPh = new G4PVPlacement(0,G4ThreeVector(0.,0.,0.),
261   G4cout << "Absorber R= " << fAbsorberRadius  << 311                                                 "Phantom",logicPh,
                                                   >> 312                                                 physPhantom,false,0);
                                                   >> 313   G4cout << "Phantom R= " << fAbsorberRadius << " dz= " << 0.5*fPhantomZ 
262          << G4endl;                               314          << G4endl;
263                                                   315 
264   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 316   // Sensitive Absorber
265                     false, 0);                 << 317   G4double absWidth = 0.5*fAbsorberZ;
266                                                << 318   G4Tubs* solidAbsorber = new G4Tubs("Absorber",0.,fAbsorberRadius,absWidth,
267   G4double stepR = fAbsorberRadius / (G4double << 319                                      0.,twopi);
                                                   >> 320   G4LogicalVolume* logicAbsorber = new G4LogicalVolume(solidAbsorber,
                                                   >> 321                                                        fAbsorberMaterial,
                                                   >> 322                                                        "Absorber");
                                                   >> 323   G4cout << "Absorber R= " << fAbsorberRadius << " dz= " << absWidth 
                                                   >> 324          << " posZ= " << fAbsorberPosZ<< G4endl;
                                                   >> 325 
                                                   >> 326   pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,fAbsorberPosZ),"Absorber",
                                                   >> 327                          logicAbsorber,physPh,false,0);
                                                   >> 328   (Histo::GetPointer())->SetPhantom(physPh);
                                                   >> 329   G4int numR = (Histo::GetPointer())->GetNumberDivR();
                                                   >> 330   G4double stepR = fAbsorberRadius/(G4double)numR;
268                                                   331 
269   G4double r1 = 0.0;                              332   G4double r1 = 0.0;
270   G4double r2 = 0.0;                              333   G4double r2 = 0.0;
271   G4Tubs* solidRing;                              334   G4Tubs* solidRing;
                                                   >> 335   G4LogicalVolume* logicRing;
272                                                   336 
273   G4VisAttributes* VisAtt_ring = new G4VisAttr << 337   for(G4int k=0; k<numR; k++) {
274   for (G4int k = 0; k < fNumR; k++) {          << 
275     r2 = r1 + stepR;                              338     r2 = r1 + stepR;
276     if (k == fNumR - 1) r2 = fAbsorberRadius;  << 339     if(k == numR-1) r2 = fAbsorberRadius;
277     //    G4cout << "New ring r1= " << r1 << " << 340     //    G4cout << "New ring r1= " << r1 << " r2= " << r2 
278     //  << " dz= " << absWidth << G4endl;         341     //  << " dz= " << absWidth << G4endl;
279     solidRing = new G4Tubs("Ring", r1, r2, abs << 342     solidRing = new G4Tubs("Ring",r1,r2,absWidth,0.,twopi);
280     G4LogicalVolume* logicRing = new G4Logical << 343     logicRing = new G4LogicalVolume(solidRing,fAbsorberMaterial,"Ring");
281     //    logicRing->SetSensitiveDetector(fPha << 344     logicRing->SetSensitiveDetector(fPhantomSD);
282     logicRing->SetVisAttributes(VisAtt_ring);  << 345     logicRing->SetVisAttributes(G4VisAttributes::GetInvisible());
283     fLogicRing.push_back(logicRing);           << 346     pv = new G4PVPlacement(0,G4ThreeVector(0.,0.,0.),logicRing,"Ring",
284     new G4PVPlacement(0, G4ThreeVector(0., 0., << 347                            logicAbsorber,false,k);
285     r1 = r2;                                      348     r1 = r2;
286   }                                               349   }
287                                                << 350   //
                                                   >> 351   // Sensitive Detectors: Absorber
                                                   >> 352   //
                                                   >> 353   logicPh->SetSensitiveDetector(fPhantomSD);
                                                   >> 354   logicAbsorber->SetSensitiveDetector(fPhantomSD);
288   //                                              355   //
289   // Visualization attributes                     356   // Visualization attributes
290   //                                              357   //
291   G4VisAttributes* VisAtt = 0;                    358   G4VisAttributes* VisAtt = 0;
292   VisAtt = new G4VisAttributes(G4Colour(1.0, 1 << 359   VisAtt = new G4VisAttributes(G4Colour(1.0,1.0,1.0));
293   VisAtt->SetVisibility(true);                    360   VisAtt->SetVisibility(true);
294   fLogicAbsorber->SetVisAttributes(VisAtt);    << 361   logicAbsorber->SetVisAttributes(VisAtt);
295                                                   362 
296   VisAtt = new G4VisAttributes(G4Colour(1.0, 1 << 363   VisAtt= new G4VisAttributes(G4Colour(1.0,1.0,2.0));
297   VisAtt->SetVisibility(true);                    364   VisAtt->SetVisibility(true);
298   logicPhantom->SetVisAttributes(VisAtt);         365   logicPhantom->SetVisAttributes(VisAtt);
299                                                   366 
300   VisAtt = new G4VisAttributes(G4Colour(1.0, 0 << 367   VisAtt= new G4VisAttributes(G4Colour(1.0,0.0,2.0));
301   VisAtt->SetVisibility(true);                    368   VisAtt->SetVisibility(true);
302   fLogicPh->SetVisAttributes(VisAtt);          << 369   logicPh->SetVisAttributes(VisAtt);
303                                                   370 
304   VisAtt = new G4VisAttributes(G4Colour(1.0, 1 << 371   VisAtt= new G4VisAttributes(G4Colour(1.0,1.0,0.0));
305   VisAtt->SetVisibility(true);                    372   VisAtt->SetVisibility(true);
306   fLogicAbsorber->SetVisAttributes(VisAtt);    << 373   logicAbsorber->SetVisAttributes(VisAtt);
307                                                   374 
308   VisAtt = new G4VisAttributes(G4Colour(0.1, 1 << 375   VisAtt= new G4VisAttributes(G4Colour(0.1,1.0,2.0));
309   VisAtt->SetVisibility(true);                    376   VisAtt->SetVisibility(true);
310   logicWorld->SetVisAttributes(VisAtt);           377   logicWorld->SetVisAttributes(VisAtt);
311                                                   378 
312   VisAtt = new G4VisAttributes(G4Colour(1.0, 1 << 379   VisAtt= new G4VisAttributes(G4Colour(1.0,1.0,0.0));
313   VisAtt->SetVisibility(true);                    380   VisAtt->SetVisibility(true);
314   logicGasVolume->SetVisAttributes(VisAtt);       381   logicGasVolume->SetVisAttributes(VisAtt);
315                                                   382 
316   VisAtt = new G4VisAttributes(G4Colour(0.0, 0 << 383   VisAtt= new G4VisAttributes(G4Colour(0.0,0.5,1.0));
317   VisAtt->SetVisibility(true);                    384   VisAtt->SetVisibility(true);
318   fLogicTarget1->SetVisAttributes(VisAtt);        385   fLogicTarget1->SetVisAttributes(VisAtt);
319   fLogicTarget2->SetVisAttributes(VisAtt);        386   fLogicTarget2->SetVisAttributes(VisAtt);
320   logicTGVolume->SetVisAttributes(VisAtt);        387   logicTGVolume->SetVisAttributes(VisAtt);
321                                                   388 
322   return physWorld;                               389   return physWorld;
323 }                                                 390 }
324                                                   391 
325 void DetectorConstruction::ConstructSDandField << 
326 {                                              << 
327   static G4ThreadLocal G4bool initialized = fa << 
328   if (!initialized) {                          << 
329     // Prepare sensitive detectors             << 
330     CheckVolumeSD* fCheckSD = new CheckVolumeS << 
331     (G4SDManager::GetSDMpointer())->AddNewDete << 
332     fLogicCheckVolume->SetSensitiveDetector(fC << 
333                                                << 
334     TargetSD* fTargetSD = new TargetSD("target << 
335     (G4SDManager::GetSDMpointer())->AddNewDete << 
336     fLogicTarget1->SetSensitiveDetector(fTarge << 
337     fLogicTarget2->SetSensitiveDetector(fTarge << 
338                                                << 
339     PhantomSD* fPhantomSD = new PhantomSD("pha << 
340     (G4SDManager::GetSDMpointer())->AddNewDete << 
341     fPhantomSD->SetShiftZ(fShiftZPh);          << 
342     for (auto& v : fLogicRing)                 << 
343       v->SetSensitiveDetector(fPhantomSD);     << 
344     fLogicPh->SetSensitiveDetector(fPhantomSD) << 
345     fLogicAbsorber->SetSensitiveDetector(fPhan << 
346     initialized = true;                        << 
347   }                                            << 
348 }                                              << 
349                                                << 
350 //....oooOO0OOooo........oooOO0OOooo........oo    392 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
351                                                   393 
352 void DetectorConstruction::SetTarget1Material(    394 void DetectorConstruction::SetTarget1Material(const G4String& mat)
353 {                                                 395 {
354   // search the material by its name              396   // search the material by its name
355   G4Material* pttoMaterial = G4NistManager::In << 397   G4Material* pttoMaterial = 
356   if (!pttoMaterial) {                         << 398     G4NistManager::Instance()->FindOrBuildMaterial(mat);
                                                   >> 399   if(!pttoMaterial) {
357     G4cout << "Material " << mat << " is not f    400     G4cout << "Material " << mat << " is not found out!" << G4endl;
358   }                                            << 401   } else if (pttoMaterial != fTarget1Material) {
359   else if (pttoMaterial != fTarget1Material) { << 
360     G4cout << "New target1 material " << mat <    402     G4cout << "New target1 material " << mat << G4endl;
361     if (fLogicTarget1) {                       << 403     if(fLogicTarget1) { fLogicTarget1->SetMaterial(fTarget1Material); }
362       fLogicTarget1->SetMaterial(fTarget1Mater << 
363     }                                          << 
364     G4RunManager::GetRunManager()->PhysicsHasB    404     G4RunManager::GetRunManager()->PhysicsHasBeenModified();
365   }                                               405   }
366 }                                                 406 }
367                                                   407 
368 //....oooOO0OOooo........oooOO0OOooo........oo    408 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
369                                                   409 
370 void DetectorConstruction::SetTarget2Material(    410 void DetectorConstruction::SetTarget2Material(const G4String& mat)
371 {                                                 411 {
372   // search the material by its name              412   // search the material by its name
373   G4Material* pttoMaterial = G4NistManager::In << 413   G4Material* pttoMaterial = 
                                                   >> 414     G4NistManager::Instance()->FindOrBuildMaterial(mat);
374                                                   415 
375   if (!pttoMaterial) {                         << 416   if(!pttoMaterial) {
376     G4cout << "Material " << mat << " is not f    417     G4cout << "Material " << mat << " is not found out!" << G4endl;
377   }                                            << 418   } else if (pttoMaterial != fTarget2Material) {
378   else if (pttoMaterial != fTarget2Material) { << 
379     fTarget2Material = pttoMaterial;              419     fTarget2Material = pttoMaterial;
380     G4cout << "New target2 material " << mat <    420     G4cout << "New target2 material " << mat << G4endl;
381     if (fLogicTarget2) {                       << 421     if(fLogicTarget2) { fLogicTarget2->SetMaterial(fTarget2Material); }
382       fLogicTarget2->SetMaterial(fTarget2Mater << 
383     }                                          << 
384     G4RunManager::GetRunManager()->PhysicsHasB    422     G4RunManager::GetRunManager()->PhysicsHasBeenModified();
385   }                                            << 423   } 
386 }                                                 424 }
387                                                   425 
388 //....oooOO0OOooo........oooOO0OOooo........oo    426 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
389                                                << 
390 void DetectorConstruction::DumpGeometryParamet << 
391 {                                              << 
392   G4cout << "================================= << 
393   G4cout << "#           GammaTherapy Geometry << 
394   G4cout << "================================= << 
395   G4cout << "  World   width= " << fWorldZ / m << 
396   G4cout << "  Window  width= " << fWindowZ /  << 
397          << " mm:" << G4endl;                  << 
398   G4cout << "  TargetV width= " << fTargetVolu << 
399          << " mm  position = " << fTargetVolum << 
400   G4cout << "  Target1 width= " << fTarget1Z / << 
401          << " mm:" << G4endl;                  << 
402   G4cout << "  Target2 width= " << fTarget2Z / << 
403          << " mm:" << G4endl;                  << 
404   G4cout << "  Gas     width= " << fGasVolumeZ << 
405          << " mm:" << G4endl;                  << 
406   G4cout << "  Mylar   width= " << fMylarVolum << 
407          << " mm:" << G4endl;                  << 
408   G4cout << "  Check   width= " << fCheckVolum << 
409          << " mm     position = " << fCheckVol << 
410   G4cout << "  Air     width= " << fAirZ / mm  << 
411   G4cout << "  Phantom width= " << fPhantomZ / << 
412          << " mm:" << G4endl;                  << 
413   G4cout << "  Absorb  width= " << fAbsorberZ  << 
414          << " mm:" << G4endl;                  << 
415   G4cout << "  Absorb  shift= " << fShiftZPh / << 
416   G4cout << "  Target1        " << fTarget1Mat << 
417   G4cout << "  Target2        " << fTarget2Mat << 
418   G4cout << "  Phantom        " << fAbsorberMa << 
419   G4cout << "================================= << 
420 }                                              << 
421                                                   427