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Geant4/examples/extended/medical/electronScattering2/src/ElectronBenchmarkDetector.cc

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Differences between /examples/extended/medical/electronScattering2/src/ElectronBenchmarkDetector.cc (Version 11.3.0) and /examples/extended/medical/electronScattering2/src/ElectronBenchmarkDetector.cc (Version 9.6.p4)


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 26 //                                             << 
 27 /// \file medical/electronScattering2/src/Elec     26 /// \file medical/electronScattering2/src/ElectronBenchmarkDetector.cc
 28 /// \brief Implementation of the ElectronBench     27 /// \brief Implementation of the ElectronBenchmarkDetector class
                                                   >>  28 //
 29                                                    29 
 30 #include "ElectronBenchmarkDetector.hh"            30 #include "ElectronBenchmarkDetector.hh"
 31                                                    31 
 32 #include "ElectronBenchmarkDetectorMessenger.h     32 #include "ElectronBenchmarkDetectorMessenger.hh"
 33                                                    33 
 34 #include "G4Colour.hh"                         <<  34 #include "G4RunManager.hh"
                                                   >>  35 #include "G4UImanager.hh"
                                                   >>  36 #include "G4NistManager.hh"
 35 #include "G4GeometryManager.hh"                    37 #include "G4GeometryManager.hh"
 36 #include "G4LogicalVolume.hh"                  <<  38 #include "G4PhysicalVolumeStore.hh"
 37 #include "G4LogicalVolumeStore.hh"                 39 #include "G4LogicalVolumeStore.hh"
                                                   >>  40 #include "G4SolidStore.hh"
 38 #include "G4Material.hh"                           41 #include "G4Material.hh"
 39 #include "G4MultiFunctionalDetector.hh"        <<  42 #include "G4Tubs.hh"
 40 #include "G4NistManager.hh"                    <<  43 #include "G4LogicalVolume.hh"
 41 #include "G4PSCellFlux.hh"                     << 
 42 #include "G4PSPopulation.hh"                   << 
 43 #include "G4PVPlacement.hh"                        44 #include "G4PVPlacement.hh"
 44 #include "G4PVReplica.hh"                          45 #include "G4PVReplica.hh"
 45 #include "G4PhysicalVolumeStore.hh"            <<  46 #include "G4VisAttributes.hh"
 46 #include "G4RunManager.hh"                     <<  47 #include "G4Colour.hh"
 47 #include "G4SDManager.hh"                          48 #include "G4SDManager.hh"
 48 #include "G4SDParticleFilter.hh"                   49 #include "G4SDParticleFilter.hh"
 49 #include "G4SolidStore.hh"                     <<  50 #include "G4MultiFunctionalDetector.hh"
 50 #include "G4SystemOfUnits.hh"                  << 
 51 #include "G4Tubs.hh"                           << 
 52 #include "G4UImanager.hh"                      << 
 53 #include "G4VPrimitiveScorer.hh"                   51 #include "G4VPrimitiveScorer.hh"
 54 #include "G4VisAttributes.hh"                  <<  52 #include "G4PSCellFlux.hh"
 55                                                <<  53 #include "G4PSPopulation.hh"
 56 //....oooOO0OOooo........oooOO0OOooo........oo <<  54 #include "G4SystemOfUnits.hh"
 57                                                    55 
 58 ElectronBenchmarkDetector::ElectronBenchmarkDe <<  56 ElectronBenchmarkDetector::ElectronBenchmarkDetector()
 59 {                                              <<  57 :fLogWorld(NULL),
 60   // Exit Window                               <<  58 fWorldVisAtt(0),
 61   fPosWindow0 = 0.000000 * cm;                 <<  59 fWindowVisAtt(0),
 62   fPosWindow1 = 0.004120 * cm;                 <<  60 fPrimFoilVisAtt(0), 
 63                                                <<  61 fMonVisAtt(0),
 64   // Scattering Foil                           <<  62 fBagVisAtt(0),
 65   fPosPrimFoil = 2.650000 * cm;                <<  63 fHeliumVisAtt(0),
 66   fHalfThicknessPrimFoil = 0.0 * cm;           <<  64 fRingVisAtt(0),
 67                                                <<  65 fScorerVisAtt(0)
 68   // Monitor Chamber                           <<  66 {
 69   fPosMon0 = 5.000000 * cm;                    <<  67   // Exit Window
 70   fPosMon1 = 5.011270 * cm;                    <<  68   fPosWindow0   =   0.000000*cm;
 71                                                <<  69   fPosWindow1   =   0.004120*cm;
 72   // Helium Bag                                <<  70   
 73   fPosBag0 = 6.497500 * cm;                    <<  71   // Scattering Foil
 74   fPosHelium0 = 6.500000 * cm;                 <<  72   fPosPrimFoil  =   2.650000*cm;
 75   fPosHelium1 = 116.500000 * cm;               <<  73   
 76   fPosBag1 = 116.502500 * cm;                  <<  74   // Monitor Chamber
 77   fThicknessRing = 1.4 * cm;                   <<  75   fPosMon0    =   5.000000*cm;
 78                                                <<  76   fPosMon1    =   5.011270*cm;
 79   // Scoring Plane                             <<  77   
 80   fPosScorer = 118.200000 * cm;                <<  78   // Helium Bag
 81   fThicknessScorer = 0.001 * cm;               <<  79   fPosBag0    =   6.497500*cm;
 82   fWidthScorerRing = 0.1 * cm;                 <<  80   fPosHelium0   =   6.500000*cm;
 83                                                <<  81   fPosHelium1   = 116.500000*cm;
 84   // Radii                                     <<  82   fPosBag1    = 116.502500*cm;
 85   fRadOverall = 23.3 * cm;                     <<  83   fThicknessRing  =   1.4*cm;
 86   fRadRingInner = 20.0 * cm;                   <<  84   
 87                                                <<  85   // Scoring Plane
 88   // Extra space remaining in world volume aro <<  86   fPosScorer    = 118.200000*cm;  
 89   fPosDelta = 1. * cm;                         <<  87   fThicknessScorer=   0.001*cm;
 90   fRadDelta = 0.1 * cm;                        <<  88   fWidthScorerRing=   0.1*cm;
                                                   >>  89   
                                                   >>  90   // Radii
                                                   >>  91   fRadOverall   =  23.3*cm;
                                                   >>  92   fRadRingInner =  20.0*cm;
                                                   >>  93   
                                                   >>  94   // Extra space remaining in world volume around apparatus
                                                   >>  95   fPosDelta   =   1.*cm;
                                                   >>  96   fRadDelta   =   0.1*cm;
 91                                                    97 
 92   fMessenger = new ElectronBenchmarkDetectorMe <<  98   fMessenger = new ElectronBenchmarkDetectorMessenger(this);    
 93   DefineMaterials();                           << 
 94 }                                                  99 }
 95                                                   100 
 96 //....oooOO0OOooo........oooOO0OOooo........oo << 
 97                                                   101 
 98 ElectronBenchmarkDetector::~ElectronBenchmarkD    102 ElectronBenchmarkDetector::~ElectronBenchmarkDetector()
 99 {                                                 103 {
100   delete fMessenger;                           << 104   delete fMessenger;
101                                                << 105   
102   delete fWorldVisAtt;                         << 106   delete fWorldVisAtt;
103   delete fWindowVisAtt;                        << 107   delete fWindowVisAtt;
104   delete fPrimFoilVisAtt;                      << 108   delete fPrimFoilVisAtt;
105   delete fMonVisAtt;                           << 109   delete fMonVisAtt;
106   delete fBagVisAtt;                           << 110   delete fBagVisAtt;
107   delete fHeliumVisAtt;                        << 111   delete fHeliumVisAtt;
108   delete fRingVisAtt;                          << 112   delete fRingVisAtt;
109   delete fScorerVisAtt;                        << 113   delete fScorerVisAtt;
110 }                                                 114 }
111                                                   115 
112 //....oooOO0OOooo........oooOO0OOooo........oo << 
113                                                   116 
114 G4VPhysicalVolume* ElectronBenchmarkDetector::    117 G4VPhysicalVolume* ElectronBenchmarkDetector::Construct()
115 {                                              << 118 { 
116   return CreateGeometry();                     << 119   DefineMaterials();
117 }                                              << 120   
118                                                << 121   G4VPhysicalVolume* physiworld = CreateGeometry();
119 //....oooOO0OOooo........oooOO0OOooo........oo << 122   return physiworld;
120                                                << 123 }
121 void ElectronBenchmarkDetector::DefineMaterial << 124 
122 {                                              << 125 
123   // Use NIST database for elements and materi << 126 void ElectronBenchmarkDetector::DefineMaterials(){ 
124   G4NistManager* man = G4NistManager::Instance << 127   // Use NIST database for elements and materials whereever possible.
125   man->SetVerbose(1);                          << 128   G4NistManager* man = G4NistManager::Instance();
126                                                << 129   man->SetVerbose(1);
127   // Take all elements and materials from NIST << 130   
128   man->FindOrBuildMaterial("G4_He");           << 131   // Take all elements and materials from NIST 
129   man->FindOrBuildMaterial("G4_Be");           << 132   man->FindOrBuildMaterial("G4_He");
130   man->FindOrBuildMaterial("G4_Al");           << 133   man->FindOrBuildMaterial("G4_Be");
131   man->FindOrBuildMaterial("G4_Ti");           << 134   man->FindOrBuildMaterial("G4_Al");
132   man->FindOrBuildMaterial("G4_Ta");           << 135   man->FindOrBuildMaterial("G4_Ti");
133   man->FindOrBuildMaterial("G4_AIR");          << 136   man->FindOrBuildMaterial("G4_Ta");
134   man->FindOrBuildMaterial("G4_MYLAR");        << 137   man->FindOrBuildMaterial("G4_AIR");
135                                                << 138   man->FindOrBuildMaterial("G4_MYLAR");
136   G4Element* C = man->FindOrBuildElement("C"); << 139   
137   G4Element* Cu = man->FindOrBuildElement("Cu" << 140   G4Element* C  = man->FindOrBuildElement("C");
138   G4Element* Au = man->FindOrBuildElement("Au" << 141   G4Element* Cu = man->FindOrBuildElement("Cu");
139   G4Element* Ti = man->FindOrBuildElement("Ti" << 142   G4Element* Au = man->FindOrBuildElement("Au");
140   G4Element* Al = man->FindOrBuildElement("Al" << 143   G4Element* Ti = man->FindOrBuildElement("Ti");
141   G4Element* V = man->FindOrBuildElement("V"); << 144   G4Element* Al = man->FindOrBuildElement("Al");
142                                                << 145   G4Element* V  = man->FindOrBuildElement("V");
143   // Define materials not in NIST.             << 146   
144   // While the NIST database does contain defa << 147   // Define materials not in NIST
145   // those defaults have different densities t << 148   // While the NIST database does contain default materials for C, Cu and Au, those defaults have different
146   // benchmark specification.                  << 149   // densities than the ones used in the benchmark specification.
147   G4double density;                            << 150   G4double density;
148   G4int ncomponents;                           << 151   G4int ncomponents;
149   G4double fractionmass;                       << 152   G4double fractionmass;
150                                                << 153   
151   G4Material* G4_C = new G4Material("G4_C", de << 154   G4Material* G4_C = new G4Material("G4_C", density= 2.18*g/cm3, ncomponents=1);
152   G4_C->AddElement(C, fractionmass = 1.00);    << 155   G4_C->AddElement(C, fractionmass=1.00);
153                                                << 156 
154   G4Material* G4_Cu = new G4Material("G4_Cu",  << 157   G4Material* G4_Cu = new G4Material("G4_Cu", density= 8.92*g/cm3, ncomponents=1);
155   G4_Cu->AddElement(Cu, fractionmass = 1.00);  << 158   G4_Cu->AddElement(Cu, fractionmass=1.00);
156                                                << 159 
157   G4Material* G4_Au = new G4Material("G4_Au",  << 160   G4Material* G4_Au = new G4Material("G4_Au", density= 19.30*g/cm3, ncomponents=1);
158   G4_Au->AddElement(Au, fractionmass = 1.00);  << 161   G4_Au->AddElement(Au, fractionmass=1.00);
159                                                << 162 
160   G4Material* TiAlloy = new G4Material("TiAllo << 163   G4Material* TiAlloy = new G4Material("TiAlloy", density= 4.42*g/cm3, ncomponents=3);
161   TiAlloy->AddElement(Ti, fractionmass = 0.90) << 164   TiAlloy->AddElement(Ti, fractionmass=0.90);
162   TiAlloy->AddElement(Al, fractionmass = 0.06) << 165   TiAlloy->AddElement(Al, fractionmass=0.06);
163   TiAlloy->AddElement(V, fractionmass = 0.04); << 166   TiAlloy->AddElement(V,  fractionmass=0.04);
164                                                << 167 
165   // Print materials table                     << 168   // Print materials table  
166   G4cout << *(G4Material::GetMaterialTable())  << 169   G4cout << *(G4Material::GetMaterialTable()) << G4endl;
167 }                                              << 170 }
168                                                << 171 
169 //....oooOO0OOooo........oooOO0OOooo........oo << 172 
170                                                << 173 G4VPhysicalVolume* ElectronBenchmarkDetector::CreateGeometry(){ 
171 G4VPhysicalVolume* ElectronBenchmarkDetector:: << 174   // Clean old geometry, if any
172 {                                              << 175   fLogWorld=NULL;
173   if (fPhysiWorld) return fPhysiWorld;         << 176   fScorerRingLog=NULL;
174                                                << 177   G4GeometryManager::GetInstance()->OpenGeometry();
175   // Instantiate the world                     << 178   G4PhysicalVolumeStore::GetInstance()->Clean();
176   fPhysiWorld = CreateWorld();                 << 179   G4LogicalVolumeStore::GetInstance()->Clean();
177   fLogWorld = fPhysiWorld->GetLogicalVolume(); << 180   G4SolidStore::GetInstance()->Clean();
178                                                << 181   
179   // Instantiate the geometry                  << 182   // Instantiate the world
180   CreateExitWindow(fLogWorld);                 << 183   G4VPhysicalVolume* physiworld = CreateWorld();
181   CreatePrimaryFoil(fLogWorld);                << 184   fLogWorld = physiworld->GetLogicalVolume();
182   CreateMonitor(fLogWorld);                    << 185   
183   CreateHeliumBag(fLogWorld);                  << 186   // Instantiate the geometry
184                                                << 187   CreateExitWindow(fLogWorld);
185   // Create the scorers                        << 188   CreatePrimaryFoil(fLogWorld);
186   CreateScorer(fLogWorld);                     << 189   CreateMonitor(fLogWorld);
187                                                << 190   CreateHeliumBag(fLogWorld);
188   return fPhysiWorld;                          << 191   
189 }                                              << 192   // Create and activate the scorers
190                                                << 193   CreateScorer(fLogWorld);
191 //....oooOO0OOooo........oooOO0OOooo........oo << 194   ActivateScorer();
192                                                << 195   
193 G4VPhysicalVolume* ElectronBenchmarkDetector:: << 196   return physiworld;  
194 {                                              << 197 }
195   G4double halfLengthWorld = fPosScorer / 2. + << 198 
196   G4double radWorld = fRadOverall + fRadDelta; << 199 
197   G4VSolid* worldSolid =                       << 200 void ElectronBenchmarkDetector::UpdateGeometry(){
198     new G4Tubs("WorldSolid", 0. * cm, radWorld << 201   G4RunManager::GetRunManager()->DefineWorldVolume(CreateGeometry());
199   G4LogicalVolume* worldLog =                  << 202 }
200     new G4LogicalVolume(worldSolid, G4Material << 203 
201                                                << 204 
202   fWorldVisAtt = new G4VisAttributes(G4Colour( << 205 G4VPhysicalVolume* ElectronBenchmarkDetector::CreateWorld(){
203   worldLog->SetVisAttributes(fWorldVisAtt);    << 206   G4double halfLengthWorld = fPosScorer/2. + fPosDelta;
204                                                << 207   G4double radWorld = fRadOverall + fRadDelta;
205   G4VPhysicalVolume* worldPhys =               << 208   G4VSolid* worldSolid = new G4Tubs("WorldSolid", 0.*cm, radWorld, halfLengthWorld, 0.*deg, 360.*deg);
206     new G4PVPlacement(0, G4ThreeVector(0., 0., << 209   G4LogicalVolume* worldLog = new G4LogicalVolume(worldSolid, G4Material::GetMaterial("G4_AIR"), "WorldLog");
207                                                << 210   
208   return worldPhys;                            << 211   fWorldVisAtt = new G4VisAttributes(G4Colour(1.0,1.0,1.0));
209 }                                              << 212   worldLog->SetVisAttributes(fWorldVisAtt);
210                                                << 213   
211 //....oooOO0OOooo........oooOO0OOooo........oo << 214   G4VPhysicalVolume* worldPhys = 
212                                                << 215     new G4PVPlacement(0, G4ThreeVector(0.,0.,0.), worldLog,"World", 0, false, 0);
213 void ElectronBenchmarkDetector::CreateExitWind << 216   
214 {                                              << 217     return worldPhys;
215   G4double halfLengthWorld = fPosScorer / 2.;  << 218 }
216   G4double halfThicknessWindow = fPosWindow1 / << 219 
217   G4VSolid* windowSolid =                      << 220 
218     new G4Tubs("windowSolid", 0. * cm, fRadOve << 221 void ElectronBenchmarkDetector::CreateExitWindow(G4LogicalVolume* worldLog){
219   G4LogicalVolume* windowLog =                 << 222   G4double halfLengthWorld = fPosScorer/2.;
220     new G4LogicalVolume(windowSolid, G4Materia << 223   G4double halfThicknessWindow = fPosWindow1/2.;
221                                                << 224   G4VSolid* windowSolid = new G4Tubs("windowSolid", 0.*cm, fRadOverall, halfThicknessWindow, 0.*deg, 360.*deg);
222   fWindowVisAtt = new G4VisAttributes(G4Colour << 225   G4LogicalVolume* windowLog = new G4LogicalVolume(windowSolid, G4Material::GetMaterial("TiAlloy"), "windowLog");
223   windowLog->SetVisAttributes(fWindowVisAtt);  << 226   
224                                                << 227   fWindowVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
225   new G4PVPlacement(0, G4ThreeVector(0., 0., h << 228   windowLog->SetVisAttributes(fWindowVisAtt);
226                     "ExitWindow", worldLog, fa << 229   
227 }                                              << 230   new G4PVPlacement(0, 
228                                                << 231     G4ThreeVector(0.,0., halfThicknessWindow - halfLengthWorld),
229 //....oooOO0OOooo........oooOO0OOooo........oo << 232     windowLog,"ExitWindow",worldLog,false,0); 
230                                                << 233 }
231 void ElectronBenchmarkDetector::CreatePrimaryF << 234 
232 {                                              << 235 
233   G4double halfLengthWorld = fPosScorer / 2.;  << 236 void ElectronBenchmarkDetector::CreatePrimaryFoil(G4LogicalVolume* worldLog){
234                                                << 237   G4double halfLengthWorld = fPosScorer/2.;
235   // For some energies, we have no Primary Foi << 238 
236   if (fHalfThicknessPrimFoil == 0.) return;    << 239   // For some energies, we have no Primary Foil.
237                                                << 240   if (fHalfThicknessPrimFoil==0.) return;
238   fSolidPrimFoil =                             << 241   
239     new G4Tubs("PrimFoilSolid", 0. * cm, fRadO << 242   G4VSolid* primFoilSolid = new G4Tubs("PrimFoilSolid", 
240   fLogPrimFoil = new G4LogicalVolume(fSolidPri << 243     0.*cm, fRadOverall, fHalfThicknessPrimFoil, 0.*deg, 360.*deg);
241                                                << 244   G4LogicalVolume* primFoilLog = new G4LogicalVolume(primFoilSolid, fMaterialPrimFoil, "PrimFoilLog");
242   fPrimFoilVisAtt = new G4VisAttributes(G4Colo << 245   
243   fLogPrimFoil->SetVisAttributes(fPrimFoilVisA << 246   fPrimFoilVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
244                                                << 247   primFoilLog->SetVisAttributes(fPrimFoilVisAtt);
245   new G4PVPlacement(0,                         << 248   
246                     G4ThreeVector(0., 0., fPos << 249   new G4PVPlacement(0, 
247                     fLogPrimFoil, "ScatteringF << 250     G4ThreeVector(0.,0.,fPosPrimFoil + fHalfThicknessPrimFoil - halfLengthWorld),
248 }                                              << 251     primFoilLog,"ScatteringFoil",worldLog,false,0);
249                                                << 252 }
250 //....oooOO0OOooo........oooOO0OOooo........oo << 253 
251                                                << 254 
252 void ElectronBenchmarkDetector::CreateMonitor( << 255 void ElectronBenchmarkDetector::CreateMonitor(G4LogicalVolume* worldLog){
253 {                                              << 256   G4double halfLengthWorld = fPosScorer/2.;
254   G4double halfLengthWorld = fPosScorer / 2.;  << 257   G4double halfThicknessMon = (fPosMon1 - fPosMon0) /2.;
255   G4double halfThicknessMon = (fPosMon1 - fPos << 258   G4VSolid* monSolid = new G4Tubs("monSolid", 0.*cm, fRadOverall, halfThicknessMon, 0.*deg, 360.*deg);
256   G4VSolid* monSolid =                         << 259   G4LogicalVolume* monLog = new G4LogicalVolume(monSolid, G4Material::GetMaterial("G4_MYLAR"), "monLog");
257     new G4Tubs("monSolid", 0. * cm, fRadOveral << 260   
258   G4LogicalVolume* monLog =                    << 261   fMonVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
259     new G4LogicalVolume(monSolid, G4Material:: << 262   monLog->SetVisAttributes(fMonVisAtt);
260                                                << 263   
261   fMonVisAtt = new G4VisAttributes(G4Colour(0. << 264   new G4PVPlacement(0, 
262   monLog->SetVisAttributes(fMonVisAtt);        << 265     G4ThreeVector(0.,0., fPosMon0 + halfThicknessMon - halfLengthWorld),
263                                                << 266     monLog,"MonitorChamber",worldLog,false,0);  
264   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 267 }
265                     "MonitorChamber", worldLog << 268 
                                                   >> 269 
                                                   >> 270 void ElectronBenchmarkDetector::CreateHeliumBag(G4LogicalVolume* worldLog){
                                                   >> 271   G4double halfLengthWorld = fPosScorer/2.;
                                                   >> 272 // Construct cylinder of Mylar
                                                   >> 273   G4double halfThicknessBag = (fPosBag1 - fPosBag0) /2.;
                                                   >> 274   G4VSolid* bagSolid = new G4Tubs("bagSolid", 0.*cm, fRadOverall, halfThicknessBag, 0.*deg, 360.*deg);
                                                   >> 275   G4LogicalVolume* bagLog = new G4LogicalVolume(bagSolid, G4Material::GetMaterial("G4_MYLAR"), "bagLog");
                                                   >> 276   
                                                   >> 277   fBagVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
                                                   >> 278   bagLog->SetVisAttributes(fBagVisAtt);
                                                   >> 279   
                                                   >> 280   new G4PVPlacement(0, 
                                                   >> 281     G4ThreeVector(0.,0., fPosBag0 + halfThicknessBag - halfLengthWorld),
                                                   >> 282     bagLog,"HeliumBag",worldLog,false,0); 
                                                   >> 283 
                                                   >> 284 // Insert cylinder of Helium into the Cylinder of Mylar
                                                   >> 285   G4double halfThicknessHelium = (fPosHelium1 - fPosHelium0) /2.;
                                                   >> 286   G4VSolid* heliumSolid = new G4Tubs("heliumSolid", 0.*cm, fRadOverall, halfThicknessHelium, 0.*deg, 360.*deg);
                                                   >> 287   G4LogicalVolume* heliumLog = new G4LogicalVolume(heliumSolid, G4Material::GetMaterial("G4_He"), "heliumLog");
                                                   >> 288   
                                                   >> 289   fHeliumVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
                                                   >> 290   heliumLog->SetVisAttributes(fHeliumVisAtt);
                                                   >> 291   
                                                   >> 292   new G4PVPlacement(0, G4ThreeVector(0.,0.,0.),heliumLog,"Helium",bagLog,false,0);  
                                                   >> 293 
                                                   >> 294 // Insert two rings of Aluminum into the Cylinder of Helium
                                                   >> 295   G4double halfThicknessRing = fThicknessRing /2.;
                                                   >> 296   G4VSolid* ringSolid = new G4Tubs("ringSolid", fRadRingInner, fRadOverall, halfThicknessRing, 0.*deg, 360.*deg);
                                                   >> 297   G4LogicalVolume* ring0Log = new G4LogicalVolume(ringSolid, G4Material::GetMaterial("G4_Al"), "ring0Log");
                                                   >> 298   G4LogicalVolume* ring1Log = new G4LogicalVolume(ringSolid, G4Material::GetMaterial("G4_Al"), "ring1Log");
                                                   >> 299   
                                                   >> 300   fRingVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
                                                   >> 301   ring0Log->SetVisAttributes(fRingVisAtt);
                                                   >> 302   ring1Log->SetVisAttributes(fRingVisAtt);
                                                   >> 303   
                                                   >> 304   new G4PVPlacement(0, 
                                                   >> 305     G4ThreeVector(0.,0., -halfThicknessHelium + halfThicknessRing),
                                                   >> 306     ring0Log,"Ring0",heliumLog,false,0);  
                                                   >> 307   
                                                   >> 308   new G4PVPlacement(0, 
                                                   >> 309     G4ThreeVector(0.,0., halfThicknessHelium - halfThicknessRing),
                                                   >> 310     ring1Log,"Ring1",heliumLog,false,0);  
                                                   >> 311 }
                                                   >> 312 
                                                   >> 313 
                                                   >> 314 void ElectronBenchmarkDetector::CreateScorer(G4LogicalVolume* worldLog){
                                                   >> 315   G4double halfLengthWorld = fPosScorer/2.;
                                                   >> 316   G4double halfThicknessScorer = fThicknessScorer /2.;
                                                   >> 317   
                                                   >> 318   G4VSolid* scorerSolid = new G4Tubs("scorerSolid", 0.*cm, fRadOverall, halfThicknessScorer, 0.*deg, 360.*deg);
                                                   >> 319   G4LogicalVolume* scorerLog = new G4LogicalVolume(scorerSolid, G4Material::GetMaterial("G4_AIR"), "scorerLog");
                                                   >> 320 
                                                   >> 321   fScorerVisAtt = new G4VisAttributes(G4Colour(0.5,1.0,0.5));
                                                   >> 322   scorerLog->SetVisAttributes(fScorerVisAtt);
                                                   >> 323   new G4PVPlacement(0,
                                                   >> 324     G4ThreeVector(0.,0., halfLengthWorld - halfThicknessScorer),
                                                   >> 325     scorerLog,"Scorer",worldLog,false,0); 
                                                   >> 326   
                                                   >> 327   G4VSolid* scorerRingSolid = new G4Tubs("scorerRingSolid", 0.*cm, fRadOverall, halfThicknessScorer, 0.*deg, 360.*deg);
                                                   >> 328   fScorerRingLog = new G4LogicalVolume(scorerRingSolid, G4Material::GetMaterial("G4_AIR"), "scorerRingLog");
                                                   >> 329   new G4PVReplica("ScorerRing",fScorerRingLog,scorerLog,kRho,G4int(fRadOverall/fWidthScorerRing),fWidthScorerRing); 
                                                   >> 330 }
                                                   >> 331 
                                                   >> 332 
                                                   >> 333 void ElectronBenchmarkDetector::ActivateScorer()
                                                   >> 334 {
                                                   >> 335   G4String detName = "MyDetector";
                                                   >> 336   G4SDManager* SDman = G4SDManager::GetSDMpointer();
                                                   >> 337   G4VSensitiveDetector* sdet = SDman->FindSensitiveDetector(detName,false);
                                                   >> 338   
                                                   >> 339   if (sdet)
                                                   >> 340   {
                                                   >> 341     G4cout << "Already have the detector" << G4endl;
                                                   >> 342     fScorerRingLog->SetSensitiveDetector(sdet);
                                                   >> 343   }
                                                   >> 344   else
                                                   >> 345   {
                                                   >> 346       G4SDManager::GetSDMpointer()->SetVerboseLevel(1);
                                                   >> 347 
                                                   >> 348     G4MultiFunctionalDetector* det = new G4MultiFunctionalDetector(detName);
                                                   >> 349   
                                                   >> 350     G4String fltName,particleName;
                                                   >> 351     G4SDParticleFilter* electronFilter = 
                                                   >> 352     new G4SDParticleFilter(fltName="electronFilter", particleName="e-");
                                                   >> 353   
                                                   >> 354     G4VPrimitiveScorer* primitive;
                                                   >> 355   
                                                   >> 356     primitive = new G4PSCellFlux("cell flux");
                                                   >> 357     det->RegisterPrimitive(primitive);
                                                   >> 358   
                                                   >> 359     primitive = new G4PSCellFlux("e cell flux");
                                                   >> 360     primitive->SetFilter(electronFilter);
                                                   >> 361     det->RegisterPrimitive(primitive);
                                                   >> 362   
                                                   >> 363     primitive = new G4PSPopulation("population");
                                                   >> 364     det->RegisterPrimitive(primitive);
                                                   >> 365   
                                                   >> 366     primitive = new G4PSPopulation("e population");
                                                   >> 367     primitive->SetFilter(electronFilter);
                                                   >> 368     det->RegisterPrimitive(primitive);
                                                   >> 369   
                                                   >> 370     G4SDManager::GetSDMpointer()->AddNewDetector(det);
                                                   >> 371     fScorerRingLog->SetSensitiveDetector(det); 
                                                   >> 372   
                                                   >> 373     G4SDManager::GetSDMpointer()->SetVerboseLevel(0);
                                                   >> 374   }
                                                   >> 375 }
                                                   >> 376 
                                                   >> 377 
                                                   >> 378 void ElectronBenchmarkDetector::SetPrimFoilMaterial(G4String matname){
                                                   >> 379   fMaterialPrimFoil = G4Material::GetMaterial(matname);
                                                   >> 380   UpdateGeometry();
                                                   >> 381 }
                                                   >> 382 
                                                   >> 383 
                                                   >> 384 void ElectronBenchmarkDetector::SetPrimFoilThickness(G4double thicknessPrimFoil){
                                                   >> 385   fHalfThicknessPrimFoil = thicknessPrimFoil / 2.;
                                                   >> 386   UpdateGeometry();
266 }                                                 387 }
267                                                << 
268 //....oooOO0OOooo........oooOO0OOooo........oo << 
269                                                << 
270 void ElectronBenchmarkDetector::CreateHeliumBa << 
271 {                                              << 
272   G4double halfLengthWorld = fPosScorer / 2.;  << 
273                                                << 
274   // Construct cylinder of Mylar               << 
275   G4double halfThicknessBag = (fPosBag1 - fPos << 
276   G4VSolid* bagSolid =                         << 
277     new G4Tubs("bagSolid", 0. * cm, fRadOveral << 
278   G4LogicalVolume* bagLog =                    << 
279     new G4LogicalVolume(bagSolid, G4Material:: << 
280                                                << 
281   fBagVisAtt = new G4VisAttributes(G4Colour(0. << 
282   bagLog->SetVisAttributes(fBagVisAtt);        << 
283                                                << 
284   new G4PVPlacement(0, G4ThreeVector(0., 0., f << 
285                     "HeliumBag", worldLog, fal << 
286                                                << 
287   // Insert cylinder of Helium into the Cylind << 
288   G4double halfThicknessHelium = (fPosHelium1  << 
289   G4VSolid* heliumSolid =                      << 
290     new G4Tubs("heliumSolid", 0. * cm, fRadOve << 
291   G4LogicalVolume* heliumLog =                 << 
292     new G4LogicalVolume(heliumSolid, G4Materia << 
293                                                << 
294   fHeliumVisAtt = new G4VisAttributes(G4Colour << 
295   heliumLog->SetVisAttributes(fHeliumVisAtt);  << 
296                                                << 
297   new G4PVPlacement(0, G4ThreeVector(0., 0., 0 << 
298                                                << 
299   // Insert two rings of Aluminum into the Cyl << 
300   G4double halfThicknessRing = fThicknessRing  << 
301   G4VSolid* ringSolid =                        << 
302     new G4Tubs("ringSolid", fRadRingInner, fRa << 
303   G4LogicalVolume* ring0Log =                  << 
304     new G4LogicalVolume(ringSolid, G4Material: << 
305   G4LogicalVolume* ring1Log =                  << 
306     new G4LogicalVolume(ringSolid, G4Material: << 
307                                                << 
308   fRingVisAtt = new G4VisAttributes(G4Colour(0 << 
309   ring0Log->SetVisAttributes(fRingVisAtt);     << 
310   ring1Log->SetVisAttributes(fRingVisAtt);     << 
311                                                << 
312   new G4PVPlacement(0, G4ThreeVector(0., 0., - << 
313                     "Ring0", heliumLog, false, << 
314                                                << 
315   new G4PVPlacement(0, G4ThreeVector(0., 0., h << 
316                     "Ring1", heliumLog, false, << 
317 }                                              << 
318                                                << 
319 //....oooOO0OOooo........oooOO0OOooo........oo << 
320                                                << 
321 void ElectronBenchmarkDetector::CreateScorer(G << 
322 {                                              << 
323   G4double halfLengthWorld = fPosScorer / 2.;  << 
324   G4double halfThicknessScorer = fThicknessSco << 
325                                                << 
326   G4VSolid* scorerSolid =                      << 
327     new G4Tubs("scorerSolid", 0. * cm, fRadOve << 
328   G4LogicalVolume* scorerLog =                 << 
329     new G4LogicalVolume(scorerSolid, G4Materia << 
330                                                << 
331   fScorerVisAtt = new G4VisAttributes(G4Colour << 
332   scorerLog->SetVisAttributes(fScorerVisAtt);  << 
333   new G4PVPlacement(0, G4ThreeVector(0., 0., h << 
334                     "Scorer", worldLog, false, << 
335                                                << 
336   G4VSolid* scorerRingSolid =                  << 
337     new G4Tubs("scorerRingSolid", 0. * cm, fRa << 
338   fScorerRingLog =                             << 
339     new G4LogicalVolume(scorerRingSolid, G4Mat << 
340   new G4PVReplica("ScorerRing", fScorerRingLog << 
341                   G4int(fRadOverall / fWidthSc << 
342 }                                              << 
343                                                << 
344 //....oooOO0OOooo........oooOO0OOooo........oo << 
345                                                << 
346 // Note that this method is called both at sta << 
347 // any command causes a change to detector geo << 
348 void ElectronBenchmarkDetector::ConstructSDand << 
349 {                                              << 
350   G4SDManager::GetSDMpointer()->SetVerboseLeve << 
351                                                << 
352   // G4Cache mechanism is necessary for multi- << 
353   // as it allows us to store separate detecto << 
354   G4MultiFunctionalDetector*& sensitiveDetecto << 
355                                                << 
356   if (!sensitiveDetector) {                    << 
357     sensitiveDetector = new G4MultiFunctionalD << 
358                                                << 
359     G4VPrimitiveScorer* primitive;             << 
360                                                << 
361     G4SDParticleFilter* electronFilter = new G << 
362                                                << 
363     primitive = new G4PSCellFlux("cell flux"); << 
364     sensitiveDetector->RegisterPrimitive(primi << 
365                                                << 
366     primitive = new G4PSCellFlux("e cell flux" << 
367     primitive->SetFilter(electronFilter);      << 
368     sensitiveDetector->RegisterPrimitive(primi << 
369                                                << 
370     primitive = new G4PSPopulation("population << 
371     sensitiveDetector->RegisterPrimitive(primi << 
372                                                << 
373     primitive = new G4PSPopulation("e populati << 
374     primitive->SetFilter(electronFilter);      << 
375     sensitiveDetector->RegisterPrimitive(primi << 
376   }                                            << 
377   G4SDManager::GetSDMpointer()->AddNewDetector << 
378   fScorerRingLog->SetSensitiveDetector(sensiti << 
379 }                                              << 
380                                                << 
381 //....oooOO0OOooo........oooOO0OOooo........oo << 
382                                                << 
383 void ElectronBenchmarkDetector::SetPrimFoilMat << 
384 {                                              << 
385   G4Material* material = G4NistManager::Instan << 
386                                                << 
387   if (material && material != fMaterialPrimFoi << 
388     fMaterialPrimFoil = material;              << 
389     if (fLogPrimFoil) {                        << 
390       fLogPrimFoil->SetMaterial(fMaterialPrimF << 
391     }                                          << 
392     G4RunManager::GetRunManager()->PhysicsHasB << 
393   }                                            << 
394 }                                              << 
395                                                << 
396 //....oooOO0OOooo........oooOO0OOooo........oo << 
397                                                << 
398 void ElectronBenchmarkDetector::SetPrimFoilThi << 
399 {                                              << 
400   fHalfThicknessPrimFoil = thicknessPrimFoil / << 
401 }                                              << 
402                                                << 
403 //....oooOO0OOooo........oooOO0OOooo........oo << 
404                                                   388