Warning, file /geant4/examples/advanced/hadrontherapy/src/PassiveCarbonBeamLine.cc was not indexed
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0030 #include "G4Box.hh"
0031 #include "G4Tubs.hh"
0032 #include "G4VisAttributes.hh"
0033 #include "G4Colour.hh"
0034 #include "globals.hh"
0035 #include "G4RunManager.hh"
0036 #include "G4LogicalVolume.hh"
0037 #include "G4PVPlacement.hh"
0038 #include "G4RotationMatrix.hh"
0039 #include "G4NistManager.hh"
0040 #include "G4NistElementBuilder.hh"
0041 #include "HadrontherapyDetectorConstruction.hh"
0042 #include "HadrontherapyModulator.hh"
0043 #include "PassiveCarbonBeamLine.hh"
0044 #include "G4SystemOfUnits.hh"
0045 #include "G4Trd.hh"
0046 #include "PassiveCarbonBeamLineMessenger.hh"
0047 #include "G4UnionSolid.hh"
0048
0049 using namespace std;
0050
0051
0052
0053 PassiveCarbonBeamLine::PassiveCarbonBeamLine():
0054 physicalTreatmentRoom(0),hadrontherapyDetectorConstruction(0),
0055 physiBeamLineSupport(0), physiBeamLineCover(0), physiBeamLineCover2(0),
0056 physiKaptonWindow(0),PhysiRippleFilter(0),PhysiRippleFilterBase(0),PhysiRippleFilterTrd(0),
0057 physiFirstMonitorLayer1(0), physiFirstMonitorLayer2(0),
0058 physiFirstMonitorLayer3(0), physiFirstMonitorLayer4(0),
0059 physiNozzleSupport(0), physiHoleNozzleSupport(0)
0060 {
0061
0062
0063 PassiveCarbonMessenger = new PassiveCarbonBeamLineMessenger(this);
0064
0065
0066
0067 static G4String ROGeometryName = "DetectorROGeometry";
0068 RO = new HadrontherapyDetectorROGeometry(ROGeometryName);
0069
0070
0071 G4cout << "Going to register Parallel world...";
0072 RegisterParallelWorld(RO);
0073 G4cout << "... done" << G4endl;
0074
0075 }
0076
0077
0078 PassiveCarbonBeamLine::~PassiveCarbonBeamLine()
0079 {
0080 delete hadrontherapyDetectorConstruction;
0081 delete PassiveCarbonMessenger;
0082 }
0083
0084
0085 G4VPhysicalVolume* PassiveCarbonBeamLine::Construct()
0086 {
0087
0088 SetDefaultDimensions();
0089
0090
0091 ConstructPassiveCarbonBeamLine();
0092
0093
0094
0095 if (!hadrontherapyDetectorConstruction)
0096
0097
0098
0099 hadrontherapyDetectorConstruction = new HadrontherapyDetectorConstruction(physicalTreatmentRoom);
0100
0101
0102
0103 hadrontherapyDetectorConstruction->InitializeDetectorROGeometry(RO,hadrontherapyDetectorConstruction->GetDetectorToWorldPosition());
0104
0105
0106 return physicalTreatmentRoom;
0107 }
0108
0109
0110
0111
0112
0113
0114
0115
0116
0117
0118
0119 void PassiveCarbonBeamLine::SetDefaultDimensions()
0120 {
0121
0122 white = new G4VisAttributes( G4Colour());
0123 white -> SetVisibility(true);
0124 white -> SetForceSolid(true);
0125
0126 black = new G4VisAttributes( G4Colour(1., 1., 1.));
0127 black -> SetVisibility(true);
0128 black -> SetForceSolid(true);
0129
0130
0131 blue = new G4VisAttributes(G4Colour(0. ,0. ,1.));
0132 blue -> SetVisibility(true);
0133 blue -> SetForceSolid(true);
0134
0135 gray = new G4VisAttributes( G4Colour(0.5, 0.5, 0.5 ));
0136 gray-> SetVisibility(true);
0137 gray-> SetForceSolid(true);
0138
0139 red = new G4VisAttributes(G4Colour(1. ,0. ,0.));
0140 red-> SetVisibility(true);
0141 red-> SetForceSolid(true);
0142
0143 yellow = new G4VisAttributes(G4Colour(1., 1., 0. ));
0144 yellow-> SetVisibility(true);
0145 yellow-> SetForceSolid(true);
0146
0147 green = new G4VisAttributes( G4Colour(25/255. , 255/255. , 25/255. ));
0148 green -> SetVisibility(true);
0149 green -> SetForceSolid(true);
0150
0151 darkGreen = new G4VisAttributes( G4Colour(0/255. , 100/255. , 0/255. ));
0152 darkGreen -> SetVisibility(true);
0153 darkGreen -> SetForceSolid(true);
0154
0155 darkOrange3 = new G4VisAttributes( G4Colour(205/255. , 102/255. , 000/255. ));
0156 darkOrange3 -> SetVisibility(true);
0157 darkOrange3 -> SetForceSolid(true);
0158
0159 skyBlue = new G4VisAttributes( G4Colour(135/255. , 206/255. , 235/255. ));
0160 skyBlue -> SetVisibility(true);
0161 skyBlue -> SetForceSolid(true);
0162
0163
0164
0165
0166
0167 G4double defaultinnerRadiusFinalCollimator = 12.5 *mm;
0168 innerRadiusFinalCollimator = defaultinnerRadiusFinalCollimator;
0169
0170
0171
0172
0173
0174 G4bool isotopes = false;
0175 aluminumNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_Al", isotopes);
0176 G4Element* zincNist = G4NistManager::Instance()->FindOrBuildElement("Zn");
0177 G4Element* copperNist = G4NistManager::Instance()->FindOrBuildElement("Cu");
0178
0179
0180 copperNistMaterial = G4NistManager::Instance()->FindOrBuildMaterial("G4_Cu", isotopes);
0181 airNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_AIR", isotopes);
0182 kaptonNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_KAPTON", isotopes);
0183 galacticNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_Galactic", isotopes);
0184 PMMANist = G4NistManager::Instance()->FindOrBuildMaterial("G4_PLEXIGLASS", isotopes);
0185 tantalumNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_Ta", isotopes);
0186
0187 G4double d;
0188 G4int nComponents;
0189 G4double fractionmass;
0190
0191 d = 8.40*g/cm3;
0192 nComponents = 2;
0193 brass = new G4Material("Brass", d, nComponents);
0194 brass -> AddElement(zincNist, fractionmass = 30 *perCent);
0195 brass -> AddElement(copperNist, fractionmass = 70 *perCent);
0196
0197
0198
0199
0200 new G4Material("dummyMat", 1., 1.*g/mole, 1.*g/cm3);
0201
0202
0203
0204
0205
0206 beamLineSupportMaterial = aluminumNist;
0207
0208
0209 vacuumZoneMaterial = galacticNist;
0210 firstScatteringFoilMaterial = tantalumNist;
0211
0212
0213 kaptonWindowMaterial = kaptonNist;
0214
0215
0216 rippleFilterMaterial = PMMANist;
0217 rippleFilterBoxMaterial = airNist;
0218
0219
0220 layer1MonitorChamberMaterial = kaptonNist;
0221 layer2MonitorChamberMaterial = copperNistMaterial;
0222 layer3MonitorChamberMaterial = airNist;
0223 layer4MonitorChamberMaterial = copperNistMaterial;
0224
0225
0226 nozzleSupportMaterial = PMMANist;
0227 holeNozzleSupportMaterial = airNist;
0228 seconHoleNozzleSupportMaterial = airNist;
0229
0230
0231 brassTubeMaterial = brassTube2Material = brassTube3Material = brass;
0232
0233
0234 finalCollimatorMaterial = brass;
0235
0236
0237 PMMACollimatorMaterial = airNist;
0238
0239
0240 G4Element* hydrogenNist = G4NistManager::Instance()->FindOrBuildElement("H");
0241 G4Element* oxygenNist = G4NistManager::Instance()->FindOrBuildElement("O");
0242 G4Element* carbonNist = G4NistManager::Instance()->FindOrBuildElement("C");
0243
0244 G4Material* plastic = new G4Material("Plastic", 1.18*g/cm3, nComponents=3);
0245 plastic -> AddElement(carbonNist, 21);
0246 plastic -> AddElement(oxygenNist, 4);
0247 plastic -> AddElement(hydrogenNist, 24);
0248 PMMANist = plastic;
0249
0250
0251
0252 }
0253
0254
0255 void PassiveCarbonBeamLine::ConstructPassiveCarbonBeamLine()
0256 {
0257
0258
0259
0260
0261
0262 const G4double worldX = 400.0 *cm;
0263 const G4double worldY = 400.0 *cm;
0264 const G4double worldZ = 400.0 *cm;
0265 G4bool isotopes = false;
0266
0267 airNist = G4NistManager::Instance()->FindOrBuildMaterial("G4_AIR", isotopes);
0268 treatmentRoom = new G4Box("TreatmentRoom",worldX,worldY,worldZ);
0269 logicTreatmentRoom = new G4LogicalVolume(treatmentRoom,
0270 airNist,
0271 "logicTreatmentRoom",
0272 0,0,0);
0273 physicalTreatmentRoom = new G4PVPlacement(0,
0274 G4ThreeVector(),
0275 "physicalTreatmentRoom",
0276 logicTreatmentRoom,
0277 0,false,0);
0278
0279
0280
0281 logicTreatmentRoom -> SetVisAttributes (G4VisAttributes::GetInvisible());
0282
0283
0284 HadrontherapyBeamLineSupport();
0285 VacuumToAirInterface();
0286 HadrontherapyBeamMonitoring();
0287 HadrontherapyBeamNozzle();
0288 HadrontherapyBeamFinalCollimator();
0289 HadrontherapyPMMACollimator();
0290
0291
0292
0293
0294
0295
0296 HadrontherapyRidgeFilter();
0297 }
0298
0299
0300 void PassiveCarbonBeamLine::HadrontherapyBeamLineSupport()
0301 {
0302
0303
0304
0305
0306 beamLineSupportXSize = 1.5*m;
0307 beamLineSupportYSize = 20.*mm;
0308 beamLineSupportZSize = 600.*mm;
0309
0310 beamLineSupportXPosition = -1745.09 *mm;
0311 beamLineSupportYPosition = -230. *mm;
0312 beamLineSupportZPosition = 0.*mm;
0313
0314 beamLineSupport = new G4Box("BeamLineSupport",
0315 beamLineSupportXSize,
0316 beamLineSupportYSize,
0317 beamLineSupportZSize);
0318
0319 logicBeamLineSupport = new G4LogicalVolume(beamLineSupport,
0320 beamLineSupportMaterial,
0321 "BeamLineSupport");
0322 physiBeamLineSupport = new G4PVPlacement(0, G4ThreeVector(beamLineSupportXPosition,
0323 beamLineSupportYPosition,
0324 beamLineSupportZPosition),
0325 "BeamLineSupport",
0326 logicBeamLineSupport,
0327 physicalTreatmentRoom, false, 0);
0328
0329
0330 logicBeamLineSupport -> SetVisAttributes(gray);
0331
0332
0333
0334
0335 beamLineCoverXSize = 1.5*m;
0336 beamLineCoverYSize = 750.*mm;
0337 beamLineCoverZSize = 10.*mm;
0338
0339 beamLineCoverXPosition = -1745.09 *mm;
0340 beamLineCoverYPosition = -1000.*mm;
0341 beamLineCoverZPosition = 610.*mm;
0342
0343 beamLineCover = new G4Box("BeamLineCover",
0344 beamLineCoverXSize,
0345 beamLineCoverYSize,
0346 beamLineCoverZSize);
0347
0348 logicBeamLineCover = new G4LogicalVolume(beamLineCover,
0349 beamLineSupportMaterial,
0350 "BeamLineCover");
0351
0352 physiBeamLineCover = new G4PVPlacement(0, G4ThreeVector(beamLineCoverXPosition,
0353 beamLineCoverYPosition,
0354 beamLineCoverZPosition),
0355 "BeamLineCover",
0356 logicBeamLineCover,
0357 physicalTreatmentRoom,
0358 false,
0359 0);
0360
0361
0362
0363
0364
0365 physiBeamLineCover2 = new G4PVPlacement(0, G4ThreeVector(beamLineCoverXPosition,
0366 beamLineCoverYPosition,
0367 - beamLineCoverZPosition),
0368 "BeamLineCover2",
0369 logicBeamLineCover,
0370 physicalTreatmentRoom,
0371 false,
0372 0);
0373
0374
0375 logicBeamLineCover -> SetVisAttributes(blue);
0376 }
0377
0378
0379 void PassiveCarbonBeamLine::VacuumToAirInterface()
0380 {
0381
0382
0383
0384
0385
0386
0387 vacuumZoneXSize = 100 *mm;
0388 vacuumZoneYSize = 52.5 *mm;
0389 vacuumZoneZSize = 52.5 *mm;
0390 vacuumPipeXPosition = -1708.0 *mm;
0391
0392
0393 vacuumZone = new G4Box("VacuumZone",
0394 vacuumZoneXSize/2,
0395 vacuumZoneYSize/2,
0396 vacuumZoneZSize/2);
0397
0398 logicVacuumZone = new G4LogicalVolume(vacuumZone, vacuumZoneMaterial,"VacuumZone");
0399
0400 physiVacuumZone = new G4PVPlacement(0, G4ThreeVector(vacuumPipeXPosition, 0., 0.),
0401 "VacuumZone",
0402 logicVacuumZone,
0403 physicalTreatmentRoom,
0404 false,
0405 0);
0406
0407
0408
0409
0410
0411
0412
0413 firstScatteringFoilXSize = 0.015 *mm;
0414 firstScatteringFoilYSize = 52.5 *mm;
0415 firstScatteringFoilZSize = 52.5 *mm;
0416 firstScatteringFoilXPosition = 0.0 *mm;
0417
0418 firstScatteringFoil = new G4Box("FirstScatteringFoil",
0419 firstScatteringFoilXSize/2,
0420 firstScatteringFoilYSize/2,
0421 firstScatteringFoilZSize/2);
0422
0423 logicFirstScatteringFoil = new G4LogicalVolume(firstScatteringFoil,
0424 firstScatteringFoilMaterial,
0425 "FirstScatteringFoil");
0426
0427 physiFirstScatteringFoil = new G4PVPlacement(0, G4ThreeVector(firstScatteringFoilXPosition, 0.,0.),
0428 "FirstScatteringFoil", logicFirstScatteringFoil, physiVacuumZone,
0429 false, 0);
0430
0431 logicFirstScatteringFoil -> SetVisAttributes(skyBlue);
0432
0433
0434
0435
0436
0437
0438
0439 kaptonWindowXSize = 0.050 *mm;
0440 kaptonWindowYSize = 52.5 *mm;
0441 kaptonWindowZSize = 52.5 *mm;
0442 kaptonWindowXPosition = vacuumZoneXSize/2 - kaptonWindowXSize/2;
0443
0444 solidKaptonWindow = new G4Box("KaptonWindow",
0445 kaptonWindowXSize/2,
0446 kaptonWindowYSize/2,
0447 kaptonWindowZSize/2);
0448
0449 logicKaptonWindow = new G4LogicalVolume(solidKaptonWindow,
0450 kaptonWindowMaterial,
0451 "KaptonWindow");
0452
0453 physiKaptonWindow = new G4PVPlacement(0, G4ThreeVector(kaptonWindowXPosition, 0., 0.),
0454 "KaptonWindow", logicKaptonWindow,
0455 physiVacuumZone, false, 0);
0456
0457 logicKaptonWindow -> SetVisAttributes(darkOrange3);
0458 }
0459
0460 void PassiveCarbonBeamLine::HadrontherapyRippleFilter()
0461 {
0462
0463 G4double defaultRippleFilterXPosition = -1638.0*mm;
0464 G4double ripple_position=(defaultRippleFilterXPosition);
0465 G4double RF_x = 200.0 * mm;
0466 G4double RF_y = 200.0 * mm;
0467 G4double RF_z = 1.4 * mm;
0468 G4double RFbase_z = 0.2 * mm;
0469 G4double RFtrd_z = RF_z - RFbase_z;
0470 G4double RFtrd_top = 1e-4 * mm;
0471 G4double RFtrd_bottom = 1.5 * mm;
0472 G4double distanceBetweenTrd = 0.1*mm;
0473
0474
0475
0476
0477 G4double theta = -90. *deg;
0478
0479 G4RotationMatrix rot;
0480 rot.rotateY(theta);
0481
0482
0483 SolidRippleFilter= new G4Box("RippleFilter",
0484 RF_x/2 + 1*mm,
0485 RF_y/2 + 1*mm,
0486 RF_z/2 + 1*mm);
0487
0488 LogicRippleFilter = new G4LogicalVolume(SolidRippleFilter,
0489 rippleFilterBoxMaterial,
0490 "LogicRippleFilter",
0491 0,0,0);
0492
0493 PhysiRippleFilter = new G4PVPlacement(G4Transform3D(rot,G4ThreeVector(ripple_position,0,0)),
0494 "PhysiRippleFilter",
0495 LogicRippleFilter,
0496 physicalTreatmentRoom,
0497 false,
0498 1,
0499 true);
0500
0501 PhysiRippleFilter = new G4PVPlacement(G4Transform3D(rot,G4ThreeVector(ripple_position + 10*cm,0,0)),
0502 "PhysiRippleFilter",
0503 LogicRippleFilter,
0504 physicalTreatmentRoom,
0505 false,
0506 2,
0507 true);
0508
0509 LogicRippleFilter -> SetVisAttributes(G4VisAttributes::GetInvisible());
0510
0511 SolidRippleFilterBase = new G4Box("RippleFilterBase",
0512 RF_x/2,
0513 RF_y/2,
0514 RFbase_z/2);
0515
0516 LogicRippleFilterBase = new G4LogicalVolume(SolidRippleFilterBase,
0517 rippleFilterMaterial,
0518 "LogicRippleFilterBase",
0519 0,0,0);
0520
0521 LogicRippleFilterBase -> SetVisAttributes(green);
0522
0523 PhysiRippleFilterBase = new G4PVPlacement(0,
0524 G4ThreeVector(0, 0, -RF_z/2 + RFbase_z/2),
0525 "PhysiRippleFilter",
0526 LogicRippleFilterBase,
0527 PhysiRippleFilter,
0528 false,
0529 0,
0530 false);
0531
0532 SolidRippleFilterTrd = new G4Trd("SolidRippleFilterTrd",
0533 RF_x/2,
0534 RF_x/2,
0535 RFtrd_bottom/2,
0536 RFtrd_top/2,
0537 RFtrd_z/2);
0538
0539 LogicRippleFilterTrd = new G4LogicalVolume(SolidRippleFilterTrd,
0540 rippleFilterMaterial,
0541 "LogicRippleFilterTrd",
0542 0,0,0);
0543
0544 LogicRippleFilterTrd -> SetVisAttributes(green);
0545
0546 G4int numberOfTrd = static_cast<int>(std::floor( RF_y / (RFtrd_bottom+distanceBetweenTrd) ));
0547
0548 G4int N = static_cast<int>( std::floor(numberOfTrd-1)/2 );
0549
0550 G4int copyNumber = 0;
0551
0552 for( int i = -N; i <= N; i++ )
0553 {
0554 PhysiRippleFilterTrd = new G4PVPlacement(0,
0555 G4ThreeVector(0,
0556 i*(RFtrd_bottom+distanceBetweenTrd),
0557 -RF_z/2+RFbase_z+RFtrd_z/2),
0558 "PhysiRippleFilterTrd",
0559 LogicRippleFilterTrd,
0560 PhysiRippleFilter,
0561 false,
0562 copyNumber,
0563 false);
0564
0565 copyNumber++;
0566 }
0567
0568 }
0569
0570
0571 void PassiveCarbonBeamLine::StopperCostruction(){
0572
0573 supportFoil= new G4Box("supportFoil",25/2*um,10*cm,10*cm);
0574 LogicSupportFoil = new G4LogicalVolume(supportFoil,tantalumNist,"logicSupportFoil");
0575 PhysiSupportFoil = new G4PVPlacement(0,G4ThreeVector(-1398.*mm+25/2*um,0.*mm,0.*mm),"logicSupportFoil",LogicSupportFoil,physicalTreatmentRoom,false,0 );
0576 LogicSupportFoil -> SetVisAttributes(skyBlue);
0577
0578
0579
0580 stopper = new G4Tubs("Stopper",0*mm,3*mm,3.5*mm,0.*deg,360.*deg);
0581 LogicStopper= new G4LogicalVolume(stopper,brass,"logicalStopper");
0582
0583 G4double ti = -270. *deg;
0584 G4RotationMatrix rt;
0585 rt.rotateY(ti);
0586
0587 PhysicStopper= new G4PVPlacement(G4Transform3D(rt,G4ThreeVector(-1398.*mm-3.5*mm,0*mm,0*mm)),"logicalStopper",LogicStopper,physicalTreatmentRoom,false,0);
0588
0589 LogicStopper -> SetVisAttributes(red);
0590
0591
0592 }
0593
0594 void PassiveCarbonBeamLine::HadrontherapyRidgeFilter(){
0595
0596
0597 G4double defaultRidgeXPosition= -1270.0*mm;
0598 const G4double XBase = 0.5 *mm;
0599 const G4double YBase =6.03*cm;
0600 const G4double ZBase =6.03*cm;
0601
0602
0603
0604 SolidRidgeBase = new G4Box("BaseRidgeFilter",
0605 XBase,
0606 YBase/2,
0607 ZBase/2);
0608
0609 LogicRidgeBase = new G4LogicalVolume(SolidRidgeBase,
0610 PMMANist,
0611 "BaseRidgeFilter");
0612
0613 PhysiRidgeFilterBase = new G4PVPlacement(0,
0614 G4ThreeVector(
0615 -1270*mm,
0616 0.,
0617 0.),
0618 "BaseRidgeFilter",
0619 LogicRidgeBase,
0620 physicalTreatmentRoom,
0621 false,
0622 0);
0623
0624 LogicRidgeBase->SetVisAttributes(red);
0625
0626
0627 SolidRidgeMother = new G4Box("MotherRidgeSOL",1.7*mm/2,1.7*mm/2,4.72*mm/2);
0628 LogicRidgeMother = new G4LogicalVolume(SolidRidgeMother,airNist,"MotherRidge");
0629
0630 G4Trd* trapp1=new G4Trd("Trapp1SOL",1.7*mm/2,1.68*mm/2,1.7*mm/2,1.68*mm/2,0.22*mm/2);
0631 G4LogicalVolume* LogicTrapp1=new G4LogicalVolume(trapp1,PMMANist,"Trapp1");
0632 PhysiTrapp1=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22/2)*mm),LogicTrapp1,"Trapp1",LogicRidgeMother,false,0);
0633
0634 G4Trd* trapp2=new G4Trd("Trapp2SOL",1.68*mm/2,1.64*mm/2,1.68*mm/2,1.64*mm/2,0.08*mm/2);
0635 G4LogicalVolume* LogicTrapp2=new G4LogicalVolume(trapp2,PMMANist,"Trapp2");
0636 PhysiTrapp2=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08/2)*mm),LogicTrapp2,"Trapp2",LogicRidgeMother,false,0);
0637
0638 G4Trd* trapp3=new G4Trd("Trapp3SOL",1.64*mm/2,1.58*mm/2,1.64*mm/2,1.58*mm/2,0.14*mm/2);
0639 G4LogicalVolume* LogicTrapp3=new G4LogicalVolume(trapp3,PMMANist,"Trapp3");
0640 PhysiTrapp3=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14/2)*mm),LogicTrapp3,"Trapp3",LogicRidgeMother,false,0);
0641
0642 G4Trd* trapp4=new G4Trd("Trapp4SOL",1.58*mm/2,1.50*mm/2,1.58*mm/2,1.50*mm/2,0.22*mm/2);
0643 G4LogicalVolume* LogicTrapp4=new G4LogicalVolume(trapp4,PMMANist,"Trapp4");
0644 PhysiTrapp4=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22/2)*mm),LogicTrapp4,"Trapp4",LogicRidgeMother,false,0);
0645
0646 G4Trd* trapp5=new G4Trd("Trapp5SOL",1.50*mm/2,1.40*mm/2,1.50*mm/2,1.40*mm/2,0.31*mm/2);
0647 G4LogicalVolume* LogicTrapp5=new G4LogicalVolume(trapp5,PMMANist,"Trapp5");
0648 PhysiTrapp5=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31/2)*mm),LogicTrapp5,"Trapp5",LogicRidgeMother,false,0);
0649
0650 G4Trd* trapp6=new G4Trd("Trapp6SOL",1.40*mm/2,1.26*mm/2,1.40*mm/2,1.26*mm/2,0.48*mm/2);
0651 G4LogicalVolume* LogicTrapp6=new G4LogicalVolume(trapp6,PMMANist,"Trapp6");
0652 PhysiTrapp6=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48/2)*mm),LogicTrapp6,"Trapp6",LogicRidgeMother,false,0);
0653
0654 G4Trd* trapp7=new G4Trd("Trapp7SOL",1.26*mm/2,0.94*mm/2,1.26*mm/2,0.94*mm/2,1.20*mm/2);
0655 G4LogicalVolume* LogicTrapp7=new G4LogicalVolume(trapp7,PMMANist,"Trapp7");
0656 PhysiTrapp7=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20/2)*mm),LogicTrapp7,"Trapp7",LogicRidgeMother,false,0);
0657
0658 G4Trd* trapp8=new G4Trd("Trapp8SOL",0.94*mm/2,0.78*mm/2,0.94*mm/2,0.78*mm/2,0.57*mm/2);
0659 G4LogicalVolume* LogicTrapp8=new G4LogicalVolume(trapp8,PMMANist,"Trapp8");
0660 PhysiTrapp8=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57/2)*mm),LogicTrapp8,"Trapp8",LogicRidgeMother,false,0);
0661
0662 G4Trd* trapp9=new G4Trd("Trapp9SOL",0.78*mm/2,0.66*mm/2,0.78*mm/2,0.66*mm/2,0.39*mm/2);
0663 G4LogicalVolume* LogicTrapp9=new G4LogicalVolume(trapp9,PMMANist,"Trapp9");
0664 PhysiTrapp9=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39/2)*mm),LogicTrapp9,"Trapp9",LogicRidgeMother,false,0);
0665
0666 G4Trd* trapp10=new G4Trd("Trapp10SOL",0.66*mm/2,0.56*mm/2,0.66*mm/2,0.56*mm/2,0.29*mm/2);
0667 G4LogicalVolume* LogicTrapp10=new G4LogicalVolume(trapp10,PMMANist,"Trapp10");
0668 PhysiTrapp10=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29/2)*mm),LogicTrapp10,"Trapp10",LogicRidgeMother,false,0);
0669
0670 G4Trd* trapp11=new G4Trd("Trapp11SOL",0.56*mm/2,0.46*mm/2,0.56*mm/2,0.46*mm/2,0.25*mm/2);
0671 G4LogicalVolume* LogicTrapp11=new G4LogicalVolume(trapp11,PMMANist,"Trapp11");
0672 PhysiTrapp11=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25/2)*mm),LogicTrapp11,"Trapp11",LogicRidgeMother,false,0);
0673
0674 G4Trd* trapp12=new G4Trd("Trapp12SOL",0.46*mm/2,0.38*mm/2,0.46*mm/2,0.38*mm/2,0.17*mm/2);
0675 G4LogicalVolume* LogicTrapp12=new G4LogicalVolume(trapp12,PMMANist,"Trapp12");
0676 PhysiTrapp12=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25+0.17/2)*mm),LogicTrapp12,"Trapp12",LogicRidgeMother,false,0);
0677
0678 G4Trd* trapp13=new G4Trd("Trapp13SOL",0.38*mm/2,0.30*mm/2,0.38*mm/2,0.30*mm/2,0.14*mm/2);
0679 G4LogicalVolume* LogicTrapp13=new G4LogicalVolume(trapp13,PMMANist,"Trapp13");
0680 PhysiTrapp13=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25+0.17+0.14/2)*mm),LogicTrapp13,"Trapp13",LogicRidgeMother,false,0);
0681
0682 G4Trd* trapp14=new G4Trd("Trapp14SOL",0.30*mm/2,0.24*mm/2,0.30*mm/2,0.24*mm/2,0.09*mm/2);
0683 G4LogicalVolume* LogicTrapp14=new G4LogicalVolume(trapp14,PMMANist,"Trapp13");
0684 PhysiTrapp14=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25+0.17+0.14+0.09/2)*mm),LogicTrapp14,"Trapp14",LogicRidgeMother,false,0);
0685
0686 G4Trd* trapp15=new G4Trd("Trapp14SOL",0.24*mm/2,0.18*mm/2,0.24*mm/2,0.18*mm/2,0.07*mm/2);
0687 G4LogicalVolume* LogicTrapp15=new G4LogicalVolume(trapp15,PMMANist,"Trapp15");
0688 PhysiTrapp15=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25+0.17+0.14+0.09+0.07/2)*mm),LogicTrapp15,"Trapp15",LogicRidgeMother,false,0);
0689
0690 G4Trd* trapp16=new G4Trd("Trapp16SOL",0.18*mm/2,0.12*mm/2,0.18*mm/2,0.12*mm/2,0.10*mm/2);
0691 G4LogicalVolume* LogicTrapp16=new G4LogicalVolume(trapp16,PMMANist,"Trapp16");
0692 PhysiTrapp16=new G4PVPlacement(0,G4ThreeVector(0.,0.,(-4.72/2+0.22+0.08+0.14+0.22+0.31+0.48+1.20+0.57+0.39+0.29+0.25+0.17+0.14+0.09+0.07+0.10/2)*mm),LogicTrapp16,"Trapp16",LogicRidgeMother,false,0);
0693
0694 LogicTrapp1->SetVisAttributes(green);
0695 LogicTrapp2->SetVisAttributes(green);
0696 LogicTrapp3->SetVisAttributes(green);
0697 LogicTrapp4->SetVisAttributes(green);
0698 LogicTrapp5->SetVisAttributes(green);
0699 LogicTrapp6->SetVisAttributes(green);
0700 LogicTrapp7->SetVisAttributes(green);
0701 LogicTrapp8->SetVisAttributes(green);
0702 LogicTrapp9->SetVisAttributes(green);
0703 LogicTrapp10->SetVisAttributes(green);
0704 LogicTrapp11->SetVisAttributes(green);
0705 LogicTrapp12->SetVisAttributes(green);
0706 LogicTrapp13->SetVisAttributes(green);
0707 LogicTrapp14->SetVisAttributes(green);
0708 LogicTrapp15->SetVisAttributes(green);
0709 LogicTrapp16->SetVisAttributes(green);
0710 G4VisAttributes* visAttr = new G4VisAttributes();
0711 visAttr->SetVisibility(false);
0712 LogicRidgeMother->SetVisAttributes(visAttr);
0713
0714
0715
0716
0717
0718
0719 G4int numberOfLayers = 30;
0720 G4double minZ = 30.15*mm-0.3*mm-1.70/2*mm;
0721 G4double minY = 30.15*mm-0.3*mm-1.70/2*mm;
0722 G4double sum_space = 0.3*mm+1.70*mm;
0723
0724
0725 std::vector<G4ThreeVector> singleTrapPositions;
0726
0727 for (int i = 0; i < numberOfLayers; i++)
0728 {
0729 for (int j = 0; j < numberOfLayers; j++)
0730 {
0731 singleTrapPositions.push_back({defaultRidgeXPosition-4.72/2*mm-0.5*mm,
0732 minY - i*sum_space,
0733 minZ - j*sum_space,
0734
0735 });
0736 }
0737 }
0738
0739 G4double ti = - 90. *deg;
0740 G4RotationMatrix rt;
0741 rt.rotateY(ti);
0742
0743
0744 G4int peaks = numberOfLayers*numberOfLayers;
0745 for (int i = 0; i < peaks; i++)
0746 {
0747
0748 std::ostringstream tName;tName << "singleTrap" << i;
0749 new G4PVPlacement(G4Transform3D(rt,
0750 singleTrapPositions[i]),
0751 LogicRidgeMother,
0752 "tName.str()",
0753 logicTreatmentRoom,
0754 0,
0755 i);
0756
0757 }
0758
0759 }
0760
0761
0762
0763
0764
0765
0766
0767 void PassiveCarbonBeamLine::HadrontherapyPMMACollimator()
0768 {
0769
0770
0771
0772
0773 PMMACollimatorSupportXSize = 25.0 *mm;
0774 PMMACollimatorSupportYSize = 200. *mm;
0775 PMMACollimatorSupportZSize = 200. *mm;
0776
0777
0778 PMMACollimatorXPosition = -1257.0 *mm;
0779
0780 G4double phi = 90. *deg;
0781 G4RotationMatrix rm;
0782 rm.rotateY(phi);
0783
0784 solidPMMACollimatorSupport = new G4Box("PMMACollimatorSupport",
0785 PMMACollimatorSupportXSize/2,
0786 PMMACollimatorSupportYSize/2,
0787 PMMACollimatorSupportZSize/2);
0788
0789 logicPMMACollimatorSupport = new G4LogicalVolume(solidPMMACollimatorSupport,
0790 PMMACollimatorMaterial,
0791 "PMMACollimatorSupport");
0792
0793 physiPMMACollimatorSupport = new G4PVPlacement(0, G4ThreeVector(PMMACollimatorXPosition,0., 0.),
0794 "PMMACollimatorSupport",
0795 logicPMMACollimatorSupport,
0796 physicalTreatmentRoom,
0797 false,
0798 0);
0799
0800
0801 yellow = new G4VisAttributes(G4Colour(1., 1., 0. ));
0802 yellow-> SetVisibility(true);
0803 yellow-> SetForceWireframe(true);
0804
0805 logicPMMACollimatorSupport -> SetVisAttributes(yellow);
0806
0807
0808
0809
0810 innerRadiusPMMACollimator= 4.5 *cm;
0811 outerRadiusPMMACollimator = 4.6 *cm;
0812 hightPMMACollimator = PMMACollimatorSupportXSize;
0813 startAnglePMMACollimator = 0.*deg;
0814 spanningAnglePMMACollimator = 360.*deg;
0815
0816
0817 solidPMMACollimator = new G4Tubs("PMMACollimator",
0818 innerRadiusPMMACollimator,
0819 outerRadiusPMMACollimator,
0820 hightPMMACollimator/2,
0821 startAnglePMMACollimator,
0822 spanningAnglePMMACollimator);
0823
0824 logicPMMACollimator = new G4LogicalVolume(solidPMMACollimator,
0825 PMMACollimatorMaterial,
0826 "PMMACollimator",
0827 0,
0828 0,
0829 0);
0830
0831 physiPMMACollimator = new G4PVPlacement(G4Transform3D(rm,
0832 G4ThreeVector(0,0.,0.)),
0833 "PMMACollimator",
0834 logicPMMACollimator,
0835 physiPMMACollimatorSupport,
0836 false,
0837 0);
0838
0839 logicPMMACollimator -> SetVisAttributes(yellow);
0840
0841
0842
0843
0844 }
0845
0846 void PassiveCarbonBeamLine::HadrontherapyBeamMonitoring()
0847 {
0848
0849
0850
0851
0852
0853
0854
0855
0856
0857
0858
0859 monitor1XSize = 4.525022*mm;
0860 monitor2XSize = 0.000011*mm;
0861 monitor3XSize = 4.5*mm;
0862 monitorYSize = 10.*cm;
0863 monitorZSize = 10.*cm;
0864 monitor1XPosition = -1239.974978 *mm;
0865 monitor2XPosition = -4.500011*mm;
0866 monitor4XPosition = 4.500011*mm;
0867
0868 solidFirstMonitorLayer1 = new G4Box("FirstMonitorLayer1",
0869 monitor1XSize,
0870 monitorYSize,
0871 monitorZSize);
0872
0873 logicFirstMonitorLayer1 = new G4LogicalVolume(solidFirstMonitorLayer1,
0874 layer1MonitorChamberMaterial,
0875 "FirstMonitorLayer1");
0876
0877 physiFirstMonitorLayer1 = new G4PVPlacement(0,
0878 G4ThreeVector(monitor1XPosition,0.*cm,0.*cm),
0879 "FirstMonitorLayer1",
0880 logicFirstMonitorLayer1,
0881 physicalTreatmentRoom,
0882 false,
0883 0);
0884
0885 solidFirstMonitorLayer2 = new G4Box("FirstMonitorLayer2",
0886 monitor2XSize,
0887 monitorYSize,
0888 monitorZSize);
0889
0890 logicFirstMonitorLayer2 = new G4LogicalVolume(solidFirstMonitorLayer2,
0891 layer2MonitorChamberMaterial,
0892 "FirstMonitorLayer2");
0893
0894 physiFirstMonitorLayer2 = new G4PVPlacement(0, G4ThreeVector(monitor2XPosition,0.*cm,0.*cm),
0895 "FirstMonitorLayer2",
0896 logicFirstMonitorLayer2,
0897 physiFirstMonitorLayer1,
0898 false,
0899 0);
0900
0901 solidFirstMonitorLayer3 = new G4Box("FirstMonitorLayer3",
0902 monitor3XSize,
0903 monitorYSize,
0904 monitorZSize);
0905
0906 logicFirstMonitorLayer3 = new G4LogicalVolume(solidFirstMonitorLayer3,
0907 layer3MonitorChamberMaterial,
0908 "FirstMonitorLayer3");
0909
0910 physiFirstMonitorLayer3 = new G4PVPlacement(0,
0911 G4ThreeVector(0.*mm,0.*cm,0.*cm),
0912 "MonitorLayer3",
0913 logicFirstMonitorLayer3,
0914 physiFirstMonitorLayer1,
0915 false,
0916 0);
0917
0918 solidFirstMonitorLayer4 = new G4Box("FirstMonitorLayer4",
0919 monitor2XSize,
0920 monitorYSize,
0921 monitorZSize);
0922
0923 logicFirstMonitorLayer4 = new G4LogicalVolume(solidFirstMonitorLayer4,
0924 layer4MonitorChamberMaterial,
0925 "FirstMonitorLayer4");
0926
0927 physiFirstMonitorLayer4 = new G4PVPlacement(0, G4ThreeVector(monitor4XPosition,0.*cm,0.*cm),
0928 "FirstMonitorLayer4",
0929 logicFirstMonitorLayer4,
0930 physiFirstMonitorLayer1, false, 0);
0931
0932 logicFirstMonitorLayer3 -> SetVisAttributes(white);
0933
0934 }
0935
0936
0937
0938 void PassiveCarbonBeamLine::HadrontherapyBeamNozzle()
0939 {
0940
0941
0942
0943
0944
0945
0946
0947
0948
0949
0950
0951
0952 nozzleSupportXSize = 50 *mm;
0953 nozzleSupportYSize = 360. *mm;
0954 nozzleSupportZSize = 360. *mm;
0955 nozzleSupportXPosition = -423.0 *mm;
0956
0957 G4double phi = 90. *deg;
0958
0959 G4RotationMatrix rm;
0960 rm.rotateY(phi);
0961
0962 solidNozzleSupport = new G4Box("NozzleSupport",
0963 nozzleSupportXSize/2,
0964 nozzleSupportYSize/2,
0965 nozzleSupportZSize/2);
0966
0967 logicNozzleSupport = new G4LogicalVolume(solidNozzleSupport,
0968 nozzleSupportMaterial,
0969 "NozzleSupport");
0970
0971 physiNozzleSupport = new G4PVPlacement(0, G4ThreeVector(nozzleSupportXPosition,0., 0.),
0972 "NozzleSupport",
0973 logicNozzleSupport,
0974 physicalTreatmentRoom,
0975 false,
0976 0);
0977
0978 yellow = new G4VisAttributes(G4Colour(1., 1., 0. ));
0979 yellow-> SetVisibility(true);
0980 yellow-> SetForceWireframe(true);
0981
0982
0983
0984
0985 innerRadiusHoleNozzleSupport = 0.*mm;
0986 outerRadiusHoleNozzleSupport = 22.0*mm;
0987 hightHoleNozzleSupport = nozzleSupportXSize;
0988 startAngleHoleNozzleSupport = 0.*deg;
0989 spanningAngleHoleNozzleSupport = 360.*deg;
0990
0991 solidHoleNozzleSupport = new G4Tubs("HoleNozzleSupport",
0992 innerRadiusHoleNozzleSupport,
0993 outerRadiusHoleNozzleSupport,
0994 hightHoleNozzleSupport/2,
0995 startAngleHoleNozzleSupport,
0996 spanningAngleHoleNozzleSupport);
0997
0998 logicHoleNozzleSupport = new G4LogicalVolume(solidHoleNozzleSupport,
0999 holeNozzleSupportMaterial,
1000 "HoleNozzleSupport",
1001 0,
1002 0,
1003 0);
1004
1005 physiHoleNozzleSupport = new G4PVPlacement(G4Transform3D(rm, G4ThreeVector()),
1006 "HoleNozzleSupport",
1007 logicHoleNozzleSupport,
1008 physiNozzleSupport,
1009 false, 0);
1010
1011
1012
1013
1014
1015 innerRadiusBrassTube3 = 13.5 *mm;
1016 outerRadiusBrassTube3 = 21.5 *mm;
1017 hightBrassTube3 = 20.0 *mm;
1018 startAngleBrassTube3 = 0.*deg;
1019 spanningAngleBrassTube3 = 360.*deg;
1020 brassTube3XPosition = -458.0 *mm;
1021
1022 solidBrassTube3 = new G4Tubs("BrassTube3",
1023 innerRadiusBrassTube3,
1024 outerRadiusBrassTube3,
1025 hightBrassTube3/2,
1026 startAngleBrassTube3,
1027 spanningAngleBrassTube3);
1028
1029 logicBrassTube3 = new G4LogicalVolume(solidBrassTube3,
1030 brassTube3Material,
1031 "BrassTube3",
1032 0, 0, 0);
1033
1034 physiBrassTube3 = new G4PVPlacement(G4Transform3D(rm,
1035 G4ThreeVector(brassTube3XPosition,
1036 0.,
1037 0.)),
1038 "BrassTube3",
1039 logicBrassTube3,
1040 physicalTreatmentRoom,
1041 false,
1042 0);
1043
1044 logicBrassTube3 -> SetVisAttributes(darkOrange3);
1045
1046
1047
1048
1049
1050 innerRadiusBrassTube2 = 13.5 *mm;
1051 outerRadiusBrassTube2 = 21.5 *mm;
1052 hightBrassTube2 = nozzleSupportXSize;
1053 startAngleBrassTube2 = 0.*deg;
1054 spanningAngleBrassTube2 = 360.*deg;
1055
1056
1057 solidBrassTube2 = new G4Tubs("BrassTube2",
1058 innerRadiusBrassTube2,
1059 outerRadiusBrassTube2,
1060 hightBrassTube2/2,
1061 startAngleBrassTube2,
1062 spanningAngleBrassTube2);
1063
1064 logicBrassTube2 = new G4LogicalVolume(solidBrassTube2,
1065 brassTube2Material,
1066 "BrassTube2",
1067 0, 0, 0);
1068 physiBrassTube2 = new G4PVPlacement(0,
1069 G4ThreeVector(0,0.,0.),
1070 logicBrassTube2,
1071 "BrassTube2",
1072 logicHoleNozzleSupport,
1073 false,
1074 0);
1075
1076 logicBrassTube2 -> SetVisAttributes(darkOrange3);
1077
1078
1079
1080
1081 innerRadiusBrassTube= 18.*mm;
1082 outerRadiusBrassTube = 21.5 *mm;
1083 hightBrassTube = 208.0 *mm;
1084 startAngleBrassTube = 0.*deg;
1085 spanningAngleBrassTube = 360.*deg;
1086 brassTubeXPosition = -294 *mm;
1087 solidBrassTube = new G4Tubs("BrassTube",
1088 innerRadiusBrassTube,
1089 outerRadiusBrassTube,
1090 hightBrassTube/2,
1091 startAngleBrassTube,
1092 spanningAngleBrassTube);
1093
1094 logicBrassTube = new G4LogicalVolume(solidBrassTube,
1095 brassTubeMaterial,
1096 "BrassTube",
1097 0, 0, 0);
1098
1099 physiBrassTube = new G4PVPlacement(G4Transform3D(rm,
1100 G4ThreeVector(brassTubeXPosition,
1101 0.,
1102 0.)),
1103 "BrassTube",
1104 logicBrassTube,
1105 physicalTreatmentRoom,
1106 false,
1107 0);
1108
1109 logicBrassTube -> SetVisAttributes(darkOrange3);
1110 }
1111
1112
1113 void PassiveCarbonBeamLine::HadrontherapyBeamFinalCollimator()
1114 {
1115
1116
1117
1118 outerRadiusFinalCollimator = 21.5*mm;
1119 hightFinalCollimator = 7.0 *mm;
1120 startAngleFinalCollimator = 0.*deg;
1121 spanningAngleFinalCollimator = 360.*deg;
1122 finalCollimatorXPosition = -186.5 *mm;
1123
1124 G4double phi = 90. *deg;
1125
1126
1127 G4RotationMatrix rm;
1128 rm.rotateY(phi);
1129
1130 solidFinalCollimator = new G4Tubs("FinalCollimator",
1131 innerRadiusFinalCollimator,
1132 outerRadiusFinalCollimator,
1133 hightFinalCollimator/2,
1134 startAngleFinalCollimator,
1135 spanningAngleFinalCollimator);
1136
1137 logicFinalCollimator = new G4LogicalVolume(solidFinalCollimator,
1138 finalCollimatorMaterial,
1139 "FinalCollimator",
1140 0,
1141 0,
1142 0);
1143
1144 physiFinalCollimator = new G4PVPlacement(G4Transform3D(rm,
1145 G4ThreeVector(finalCollimatorXPosition,0.,0.)),
1146 "FinalCollimator",
1147 logicFinalCollimator,
1148 physicalTreatmentRoom,
1149 false,
1150 0);
1151
1152 logicFinalCollimator -> SetVisAttributes(yellow);
1153 }
1154
1155
1156
1157
1158
1159
1160 void PassiveCarbonBeamLine::SetRippleFilterXPosition(G4double value)
1161 {
1162 PhysiRippleFilter -> SetTranslation(G4ThreeVector(value, 0., 0.));
1163 G4RunManager::GetRunManager() -> GeometryHasBeenModified();
1164 G4cout << "The Ripple Filter is translated to"<< value/mm <<"mm along the X axis" <<G4endl;
1165 }
1166
1167
1168
1169 void PassiveCarbonBeamLine::SetInnerRadiusFinalCollimator(G4double value)
1170 {
1171 solidFinalCollimator -> SetInnerRadius(value);
1172 G4RunManager::GetRunManager() -> GeometryHasBeenModified();
1173 G4cout<<"Inner Radius of the final collimator is (mm):"
1174 << solidFinalCollimator -> GetInnerRadius()/mm
1175 << G4endl;
1176 }
1177
1178
1179 void PassiveCarbonBeamLine::SetRippleFilterMaterial(G4String materialChoice)
1180 {
1181 if (G4Material* RFMaterial = G4NistManager::Instance()->FindOrBuildMaterial(materialChoice, false) )
1182 {
1183 if (RFMaterial)
1184 {
1185 rippleFilterMaterial = RFMaterial;
1186 LogicRippleFilter -> SetMaterial(RFMaterial);
1187 LogicRippleFilterBase -> SetMaterial(RFMaterial);
1188 LogicRippleFilterTrd -> SetMaterial(RFMaterial);
1189 G4cout << "The material of the Ripple Filter has been changed to " << materialChoice << G4endl;
1190 }
1191 }
1192 else
1193 {
1194 G4cout << "WARNING: material \"" << materialChoice << "\" doesn't exist in NIST elements/materials"
1195 " table [located in $G4INSTALL/source/materials/src/G4NistMaterialBuilder.cc]" << G4endl;
1196 G4cout << "Use command \"/parameter/nist\" to see full materials list!" << G4endl;
1197 }
1198 }
1199
1200
1201