1 /**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
18 Revision 1.18 2002/10/29 09:53:40 morsch
19 Constants start with k. Warnings corrected.
21 Revision 1.17 2002/10/14 14:57:39 hristov
22 Merging the VirtualMC branch to the main development branch (HEAD)
24 Revision 1.12.6.2 2002/07/24 10:08:27 alibrary
27 Revision 1.16 2002/07/08 15:13:24 morsch
30 Revision 1.15 2002/05/30 11:58:34 morsch
31 More robust geometry for bellows: use divisions and neg. parameters.
33 Revision 1.14 2002/05/29 11:23:46 morsch
34 Numerical overlap for 2nd bellow corrected.
36 Revision 1.13 2002/05/02 12:50:06 morsch
37 For G4: gMC->VolId(...) replaced by gAlice->GetModule(...).
39 Revision 1.12 2002/01/21 11:31:21 morsch
40 ALIFE output only on demand.
42 Revision 1.11 2001/11/17 01:29:21 morsch
43 Obsolete and wrong volume YXO5 removed.
45 Revision 1.10 2001/11/16 08:57:42 morsch
48 Revision 1.9 2001/11/12 10:19:30 morsch
49 Correction of uninitialized array element problem.
51 Revision 1.8 2001/10/25 08:50:57 morsch
52 New beamshield geometry with increased tolerances and insulation thickness.
54 Revision 1.6 2001/04/23 23:12:41 morsch
55 Overlap in closing cone corrected (thanks to Ivana Hrivnacova)
57 Revision 1.5 2001/03/16 16:26:05 morsch
58 Put vacuum in beam-pipe not air.
60 Revision 1.4 2001/01/31 11:55:27 hristov
61 Loop variables declared once (required by HP)
63 Revision 1.3 2001/01/30 12:28:27 morsch
64 Recess station 1 changed do make space for chambers.
66 Revision 1.2 2000/12/04 16:30:02 morsch
67 Update to geometry defined for the Muon Spectrometer Addendum to the TDR.
72 #include "AliSHILvF.h"
80 //_____________________________________________________________________________
81 AliSHILvF::AliSHILvF()
84 // Default constructor for muon shield
88 //_____________________________________________________________________________
89 AliSHILvF::AliSHILvF(const char *name, const char *title)
93 // Standard constructor for muon shield
98 // Pb cone not yet compatible with muon chamber inner radii
99 // Switched off by default
104 //_____________________________________________________________________________
105 void AliSHILvF::CreateGeometry()
108 // Build muon shield geometry
113 <img src="picts/AliSHILvF.gif">
118 <img src="picts/AliSHILvFTree.gif">
122 Float_t cpar[5], cpar0[5], tpar[3], par1[100], pars1[100], par2[100], par3[100],
126 Int_t *idtmed = fIdtmed->GetArray()-1699;
128 #include "ABSOSHILConst.h"
129 #include "SHILConst.h"
131 const Float_t kDRSteel1=2.;
133 enum {kC=1705, kAl=1708, kFe=1709, kCu=1710, kW=1711, kPb=1712,
134 kNiCuW=1720, kVacuum=1715, kAir=1714, kConcrete=1716,
135 kPolyCH2=1717, kSteel=1709, kInsulation=1713};
137 // Material of the rear part of the shield
139 if (fPbCone) iHeavy=kPb;
144 Float_t posfluka[3]={0., 0., 0.};
145 Float_t zfluka[12], rfluka1[12], rfluka2[12], rfluka3[12] ;
146 AliALIFE* flukaGeom = 0;
148 if (fWriteGeometry) {
149 flukaGeom = new AliALIFE("beamshield.alife", "beamshield_vol.inp");
159 Float_t dRear1=kDRear;
161 Float_t zstart=kZRear-dRear1;
167 Float_t dl=(kZvac12-zstart)/2.;
173 par0[5] = zstart * TMath::Tan(kAccMin);
175 par0[6] = -dz+kZch11;
177 par0[8] = kZch11 * TMath::Tan(kAccMin);
183 par0[12] = -dz+kZch12;
189 par0[17] = kZch12 * TMath::Tan(kAccMin);
191 par0[18] = -dz+kZch21;
193 par0[20] = kZch21 * TMath::Tan(kAccMin);
195 par0[21] = -dz+kZch21;
199 par0[24] = -dz+kZch22;
203 par0[27] = -dz+kZch22;
205 par0[29] = kZch22 * TMath::Tan(kAccMin);
207 par0[30] = -dz+kZvac6;
209 par0[32] = kZvac6 * TMath::Tan(kAccMin);
211 par0[33] = -dz+kZConeE;
215 par0[36] = -dz+kZch31;
219 par0[39] = -dz+kZch31;
223 par0[42] = -dz+kZch32;
226 // start of 1.6 deg cone
227 par0[45] = -dz+kZch32;
229 par0[47] = 30.+(kZch32-kZConeE)*TMath::Tan(kThetaOpenPbO);
231 par0[48] = -dz+kZch41;
233 par0[50] = 30.+(kZch41-kZConeE)*TMath::Tan(kThetaOpenPbO);
235 par0[51] = -dz+kZch41;
239 par0[54] = -dz+kZch42;
243 par0[57] = -dz+kZch42;
245 par0[59] = 30.+(kZch42-kZConeE)*TMath::Tan(kThetaOpenPbO);
249 par0[60] = -dz+kZch51;
251 par0[62] = 30.+(kZch51-kZConeE)*TMath::Tan(kThetaOpenPbO);
253 par0[63] = -dz+kZch51;
257 par0[66] = -dz+kZch52;
261 par0[69] = -dz+kZch52;
263 par0[71] = 30.+(kZch52-kZConeE)*TMath::Tan(kThetaOpenPbO);
267 par0[72] = -dz+kZvac10;
269 par0[74] = 30.+(kZvac10-kZConeE)*TMath::Tan(kThetaOpenPbO);
271 par0[75] = -dz+kZvac10;
275 par0[78] = -dz+kZvac11;
279 par0[81] = -dz+kZvac11;
283 par0[84] = -dz+kZvac12;
287 gMC->Gsvolu("YMOT", "PCON", idtmed[kVacuum], par0, 87);
289 gMC->Gspos("YMOT", 1, "ALIC", 0., 0., dz, 0, "ONLY");
295 // First section: bellows below and behind front absorber
301 dl=(kZvac4-zstart)/2.;
304 par1[4] = kRAbs+(zstart-kZOpen) * TMath::Tan(kThetaOpen1);
305 par1[5] = zstart * TMath::Tan(kAccMin);
307 par1[6] = -dl+kZvac1-zstart;
308 par1[7] = kRAbs+ (kZvac1-kZOpen) * TMath::Tan(kThetaOpen1);
309 par1[8] = kZvac1 * TMath::Tan(kAccMin);
311 par1[9] = par1[6]+kDr11/2.;
312 par1[10] = par1[7]+kDr11;
313 par1[11] = (kZvac1+kDr11/2.) * TMath::Tan(kAccMin);
315 par1[12] = -dl+dRear1;
317 par1[14] = kZRear * TMath::Tan(kAccMin);
319 par1[15] = -dl+dRear1;
323 par1[18] = -dl+(kZvac1+kDr11+kDB1-zstart);
327 par1[21] = par1[18]+kDr12;
328 par1[22] = par1[19]+kDr12;
331 par1[24] = par1[21]+kDF1;
335 par1[27] = par1[24]+kDr12;
336 par1[28] = par1[25]-kDr12;
339 par1[30] = par1[27]+kDB1;
343 par1[33] = par1[30]+kDr13;
344 par1[34] = par1[31]-kDr13;
347 par1[36] = -dl+kZvac4-zstart;
351 Float_t r2 = par1[37];
352 Float_t rBox= par1[31]-0.1;
353 Float_t rc1 = par1[7];
355 gMC->Gsvolu("YGO1", "PCON", idtmed[kNiCuW], par1, 39);
359 Float_t rfluka0[8]={rBox,rBox,rBox,rBox,rBox,rBox,rBox,rBox};
360 if (fWriteGeometry) {
361 for (ifl=0; ifl<12; ifl++) {
362 zfluka[ifl]=par1[3+3*ifl]+dl+kZRear-kDRear;
363 rfluka1[ifl] = par1[4+3*ifl];
364 rfluka2[ifl] = par1[5+3*ifl];
365 if (ifl > 3) rfluka2[ifl]=rfluka2[ifl]-kDRSteel1;
367 flukaGeom->Comment("1st part: Shield");
368 // Use default for first three cones
369 flukaGeom->SetDefaultVolume("*ACR02");
370 rfluka2[0]=rfluka2[1]=rfluka2[2]=-1;
372 flukaGeom->Comment("Shield");
373 flukaGeom->PolyCone(rfluka1, rfluka2, zfluka, 12, posfluka, "NIW", "MF", "$SHS");
374 flukaGeom->Comment("Vacuum");
375 flukaGeom->PolyCone(rfluka0, rfluka1+2, zfluka+2, 8, posfluka, "VACUUM", "MF", "$SHS");
382 for (i=0; i<39; i++) {
386 for (i=4; i<38; i+=3) pars1[i] = 0.;
388 gMC->Gsvolu("YMO1", "PCON", idtmed[kVacuum+40], pars1, 39);
389 gMC->Gspos("YGO1", 1, "YMO1", 0., 0., 0., 0, "ONLY");
391 gMC->Gspos("YMO1", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
396 tpar[0]=kR11-kDRSteel2;
398 tpar[2]=(kZvac4-kZvac3)/2.;
399 gMC->Gsvolu("YSE1", "TUBE", idtmed[kNiCuW], tpar, 3);
401 gMC->Gspos("YSE1", 1, "YGO1", 0., 0., dz, 0, "ONLY");
405 if (fWriteGeometry) {
406 flukaGeom->Comment("1st part: Steel Envelope");
407 flukaGeom->Cylinder(tpar[0], tpar[1], kZRear, kZvac4, posfluka, "NIW", "MF", "$SHS");
414 // 1st section: vacuum system
422 gMC->Gsvolu("YB11", "TUBE", idtmed[kSteel+40], tpar, 3);
425 tpar[0]=kRB1+kHB1-kEB1;
427 tpar[2]=(kLB1/2.-2.*kEB1)/2.;
428 gMC->Gsvolu("YB12", "TUBE", idtmed[kSteel+40], tpar, 3);
434 gMC->Gsvolu("YB13", "TUBE", idtmed[kSteel+40], tpar, 3);
441 gMC->Gsvolu("YBU1", "TUBE", idtmed[kVacuum+40], tpar, 3);
444 gMC->Gspos("YB13", 1, "YBU1", 0., 0., dz, 0, "ONLY");
447 gMC->Gspos("YB11", 1, "YBU1", 0., 0., dz, 0, "ONLY");
450 gMC->Gspos("YB12", 1, "YBU1", 0., 0., dz, 0, "ONLY");
453 gMC->Gspos("YB11", 2, "YBU1", 0., 0., dz, 0, "ONLY");
456 gMC->Gspos("YB13", 2, "YBU1", 0., 0., dz, 0, "ONLY");
460 tpar[1]=kRB1+kHB1+0.5;
462 gMC->Gsvolu("YBM1", "TUBE", idtmed[kVacuum+40], tpar, 3);
463 gMC->Gsdvn("YB1S", "YBM1", 12 , 3);
465 Float_t bsize = tpar[2];
468 gMC->Gsvolu("YBI1", "TUBE", idtmed[kInsulation+40], tpar, 3);
470 gMC->Gspos("YBI1", 1, "YB1S", 0., 0., 0., 0, "ONLY");
471 gMC->Gspos("YBU1", 1, "YB1S", 0., 0., 0., 0, "ONLY");
473 dz=-dl+(kZvac1-zstart)+kDr11/2.+bsize;
474 gMC->Gspos("YBM1", 1, "YMO1", 0., 0., dz, 0, "ONLY");
476 // dz=dl-kDr13-(kZvac4-kZvac3)-bsize;
477 // gMC->Gspos("YBM1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
486 gMC->Gsvolu("YFM1", "TUBE", idtmed[kVacuum+40], tpar, 3);
491 gMC->Gsvolu("YF11", "TUBE", idtmed[kSteel+40], tpar, 3);
496 gMC->Gsvolu("YF12", "TUBE", idtmed[kInsulation+40], tpar, 3);
499 gMC->Gspos("YF11", 1, "YFM1", 0., 0., 0., 0, "ONLY");
500 gMC->Gspos("YF12", 1, "YFM1", 0., 0., 0., 0, "ONLY");
502 dz=-dl+(kZvac1-zstart)+kDr11/2.+2.*bsize+kDF1/2.+3.;
503 gMC->Gspos("YFM1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
506 // pipe between flange and bellows
512 gMC->Gsvolu("YPF1", "TUBE", idtmed[kSteel+40], tpar, 3);
516 gMC->Gsvolu("YPS1", "TUBE", idtmed[kInsulation+40], tpar, 3);
517 gMC->Gspos("YPS1", 1, "YPF1", 0., 0., 0., 0, "ONLY");
520 gMC->Gspos("YPF1", 1, "YMO1", 0., 0., dz, 0, "ONLY");
522 gMC->Gspos("YPF1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
526 Float_t z1, z2, zcy1, zcy2, zfl;
528 if (fWriteGeometry) {
529 flukaGeom->Comment("First Bellow");
531 for (i=0; i<10; i++) {
533 flukaGeom->Cylinder(0., kRB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
534 flukaGeom->Cylinder(kRB1, kRB1+kHB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
538 flukaGeom->Cylinder(0., kRB1+kHB1-kEB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
539 flukaGeom->Cylinder(kRB1+kHB1-kEB1, kRB1+kHB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
542 flukaGeom->Cylinder(0., kRB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
543 flukaGeom->Cylinder(kRB1, kRB1+kHB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
546 flukaGeom->Cylinder(0., kRB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
547 flukaGeom->Cylinder(kRB1, kRB1+kEB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
548 flukaGeom->Cylinder(kRB1+kEB1, kRB1+kHB1, z1, z2, posfluka, "AIR", "MF", "$SHH");
551 flukaGeom->Cylinder(kRB1+kHB1, kRB1+kHB1+0.5, kZvac1+kDr11, z1, posfluka, "AIR", "MF", "$SHH");
552 flukaGeom->Cylinder(kRB1+kHB1+0.5, rBox, kZvac1+kDr11, z1, posfluka, "AIR", "MF", "$SHH");
556 flukaGeom->Comment("Second Bellow");
558 for (i=0; i<10; i++) {
560 flukaGeom->Cylinder(0., kRB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
561 flukaGeom->Cylinder(kRB1, kRB1+kHB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
564 flukaGeom->Cylinder(0., kRB1+kHB1-kEB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
565 flukaGeom->Cylinder(kRB1+kHB1-kEB1, kRB1+kHB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
568 flukaGeom->Cylinder(0., kRB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
569 flukaGeom->Cylinder(kRB1, kRB1+kHB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
572 flukaGeom->Cylinder(0., kRB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
573 flukaGeom->Cylinder(kRB1, kRB1+kEB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
574 flukaGeom->Cylinder(kRB1+kEB1, kRB1+kHB1, z2, z1, posfluka, "AIR", "MF", "$SHH");
577 flukaGeom->Cylinder(kRB1+kHB1, kRB1+kHB1+0.5, z1, kZvac3-kDr13, posfluka, "AIR", "MF", "$SHH");
578 flukaGeom->Cylinder(kRB1+kHB1+0.5, rBox, z1, kZvac3-kDr13, posfluka, "AIR", "MF", "$SHH");
581 flukaGeom->Comment("Flange");
586 flukaGeom->Cylinder(0.,kRF1-2. , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
587 flukaGeom->Cylinder(kRF1-2., kRF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
588 flukaGeom->Cylinder(kRF1, kRF1+0.05 , z1, z2, posfluka, "AIR", "MF", "$SHH");
589 flukaGeom->Cylinder(kRF1+0.05, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
592 flukaGeom->Cylinder(0.,kRB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
593 flukaGeom->Cylinder(kRB1, kRF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
594 flukaGeom->Cylinder(kRF1, kRF1+0.5 , z1, z2, posfluka, "AIR", "MF", "$SHH");
595 flukaGeom->Cylinder(kRF1+0.5, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
598 flukaGeom->Cylinder(0.,kRB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
599 flukaGeom->Cylinder(kRB1, kRB1+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
600 flukaGeom->Cylinder(kRB1+0.1, kRB1+0.6 , z1, z2, posfluka, "AIR", "MF", "$SHH");
601 flukaGeom->Cylinder(kRB1+0.6, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
605 flukaGeom->Cylinder(0.,kRB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
606 flukaGeom->Cylinder(kRB1, kRF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
607 flukaGeom->Cylinder(kRF1, kRF1+0.5 , z1, z2, posfluka, "AIR", "MF", "$SHH");
608 flukaGeom->Cylinder(kRF1+0.5, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
611 flukaGeom->Cylinder(0.,kRB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
612 flukaGeom->Cylinder(kRB1, kRB1+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
613 flukaGeom->Cylinder(kRB1+0.1, kRB1+0.6 , z1, z2, posfluka, "AIR", "MF", "$SHH");
614 flukaGeom->Cylinder(kRB1+0.6, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
619 // Pipe+Heating 1.5 mm
620 // Heating Jacket 5.0 mm
622 // ========================
624 // pipe and heating jackets outside bellows
627 cpar0[0]=(kZvac1+kDr11/2.-zstart)/2;
628 cpar0[1]=kRVacu-0.05 +(zstart-kZOpen)*TMath::Tan(kThetaOpen1);
629 cpar0[2]=kRVacu+0.7 +(zstart-kZOpen)*TMath::Tan(kThetaOpen1);
630 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(kThetaOpen1);
631 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(kThetaOpen1);
632 gMC->Gsvolu("YV11", "CONE", idtmed[kSteel+40], cpar0, 5);
637 cpar[1]=cpar0[1]+0.15;
638 cpar[2]=cpar0[1]+0.65;
639 cpar[3]=cpar0[3]+0.15;
640 cpar[4]=cpar0[3]+0.65;
641 gMC->Gsvolu("YI11", "CONE", idtmed[kInsulation+40], cpar, 5);
642 gMC->Gspos("YI11", 1, "YV11", 0., 0., 0., 0, "ONLY");
644 gMC->Gspos("YV11", 1, "YMO1", 0., 0., dz, 0, "ONLY");
648 Float_t rf1[10], rf2[10];
650 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR", "AIR"};
652 = {"MF", "MF", "MF", "MF", "MF", "MF"};
654 = {"$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH"};
656 if (fWriteGeometry) {
657 rf1[0]=0.; rf2[0]=0.;
662 rf1[2]=rf1[1]+0.15; rf1[3]=rf1[2]+0.5; rf1[4]=rf1[3]+0.1;
664 rf2[2]=rf2[1]+0.15; rf2[3]=rf2[2]+0.5; rf2[4]=rf2[3]+0.1;
668 flukaGeom->Comment("1st part: Beam pipe lateral struture (left)");
669 flukaGeom->OnionCone(rf1, rf2, 6 , zstart, kZvac1, posfluka, materialsA, fieldsA, cutsA);
670 for (i=0; i<6; i++) rf1[i]=rf2[i];
671 for (i=1; i<6; i++) rf2[i]=rf1[i]+kDr11*TMath::Tan(kThetaOpen1);
672 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac1, kZvac1+kDr11, posfluka, materialsA, fieldsA, cutsA);
673 flukaGeom->Cone(rc1, rf2[5], rc1, rc1+kDr11, kZvac1 , kZvac1+kDr11, posfluka,"AIR", "MF", "$SHH");
684 cpar0[0] = (kZvac4-kZvac3)/2;
686 cpar0[2] = cpar0[1]+dVacuS;
687 cpar0[3] = cpar0[1]+2.*cpar0[0]*TMath::Tan(kThetaOpenB);
688 cpar0[4] = cpar0[2]+2.*cpar0[0]*TMath::Tan(kThetaOpenB);
689 gMC->Gsvolu("YV12", "CONE", idtmed[kSteel], cpar0, 5);
690 Float_t r2V=cpar0[3];
694 cpar[1] = cpar0[1]+dTubeS;
695 cpar[2] = cpar0[1]+dTubeS+kDInsuS;
696 cpar[3] = cpar0[3]+dTubeS;
697 cpar[4] = cpar0[3]+dTubeS+kDInsuS;
698 gMC->Gsvolu("YI12", "CONE", idtmed[kInsulation], cpar, 5);
699 gMC->Gspos("YI12", 1, "YV12", 0., 0., 0., 0, "ONLY");
702 gMC->Gspos("YV12", 1, "YMO1", 0., 0., dz, 0, "ONLY");
707 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR"};
710 = {"MF", "MF", "MF", "MF", "MF"};
713 = {"$SHH","$SHH","$SHH","$SHH","$SHH"};
715 if (fWriteGeometry) {
721 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
724 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+kDInsuS; rf2[4]=rf2[3]+kDEnveS;
726 flukaGeom->Comment("1st part: Beam pipe lateral structure (right)");
727 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac3, kZvac4, posfluka, materialsB, fieldsB, cutsB);
728 for (i=0; i<6; i++) rf2[i]=rf1[i];
729 for (i=1; i<5; i++) rf1[i]=rf2[i];
731 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac3-kDr13, kZvac3, posfluka, materialsB, fieldsB, cutsB);
739 // Between first and second bellow section
745 dl=(kZvac7-kZvac4)/2.;
755 par2[9] = -dl+(kZvac6-kZvac4);
756 par2[10] = r2+(kZvac6-kZvac4-10.) * TMath::Tan(kThetaOpen2);
759 par2[12] = -dl+(kZvac6-kZvac4);
761 par2[14] = kZvac6*TMath::Tan(kAccMin);
763 // Start of Pb section
764 par2[15] = -dl+(kZPb-kZvac4);
765 par2[16] = r2+(kZPb-kZvac4-10.) * TMath::Tan(kThetaOpen2);
766 par2[17] = kZPb*TMath::Tan(kAccMin);
768 // end of cone following 2 deg line
769 par2[18] = -dl+(kZConeE-kZvac4);
770 par2[19] = r2+(kZConeE-kZvac4-10.) * TMath::Tan(kThetaOpen2);
773 par2[21] = -dl+(kZch31-kZvac4);
774 par2[22] = r2+(kZch31-kZvac4-10.) * TMath::Tan(kThetaOpen2);
777 par2[24] = -dl+(kZch31-kZvac4);
778 par2[25] = r2+(kZch31-kZvac4-10.) * TMath::Tan(kThetaOpen2);
781 par2[27] = -dl+(kZch32-kZvac4);
782 par2[28] = r2+(kZch32-kZvac4-10.) * TMath::Tan(kThetaOpen2);
785 par2[30] = -dl+(kZch32-kZvac4);
786 par2[31] = r2+(kZch32-kZvac4-10.) * TMath::Tan(kThetaOpen2);
789 par2[33] = -dl+(kZvac7-kZvac4);
790 par2[34] = r2+(kZvac7-kZvac4-10.) * TMath::Tan(kThetaOpen2);
793 gMC->Gsvolu("YGO2", "PCON", idtmed[kSteel+40], par2, 36);
799 if (fWriteGeometry) {
801 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR", "NIW", "NIW", "STEEL"};
803 = {"MF", "MF", "MF", "MF", "MF", "MF", "MF", "MF"};
805 = {"$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH"};
807 flukaGeom->Comment("2nd part: Beam shield lateral struture (0)");
808 // until end of recess 1
809 rf1[0] = 0.; rf1[1] = r2V; rf1[2] = rf1[1] + dTubeS; rf1[3] = rf1[2] + kDInsuS;
810 rf1[4] = rf1[3] + kDEnveS; rf1[5] = r2; rf1[6] = rf1[5]+2.;
811 rf1[7] = kR11-kDRSteel1; rf1[8] = kR21;
813 for (i=1; i<7; i++) rf2[i]=rf1[i]+4.*TMath::Tan(kThetaOpenB);
816 flukaGeom->OnionCone(rf1, rf2, 9 , kZvac4, kZvac4+4, posfluka, materials1, fields1, cuts1);
818 flukaGeom->Comment("2nd part: Beam shield lateral struture (1)");
819 // until end of recess 2
820 for (i=0; i<9; i++) rf1[i]=rf2[i];
821 rf1[7] = kR21-kDRSteel2; rf1[8] = kR21;
822 for (i=1; i<9; i++) rf2[i]=rf1[i]+(kZvac6-kZvac4-4.)*TMath::Tan(kThetaOpenB);
825 flukaGeom->OnionCone(rf1, rf2, 9 , kZvac4+4, kZvac6, posfluka, materials1, fields1, cuts1);
827 flukaGeom->Comment("2nd part: Beam shield lateral struture (2)");
829 for (i=0; i<9; i++) rf1[i]=rf2[i];
830 rf1[8] = kZvac6*TMath::Tan(kAccMin);
831 rf1[7] = kR21-kDRSteel2;
833 for (i=1; i<9; i++) rf2[i]=rf1[i]+4.*TMath::Tan(kThetaOpenB);
836 rf2[8] = -(rf1[8]+4.*TMath::Tan(kAccMin));
839 flukaGeom->OnionCone(rf1, rf2, 9 , kZvac6, kZvac6+4, posfluka, materials1, fields1, cuts1);
843 flukaGeom->Comment("2nd part: Beam shield lateral struture (3)");
844 // until start of lead section
845 for (i=0; i<9; i++) rf1[i]=rf2[i];
846 for (i=1; i<9; i++) rf2[i]=rf1[i]+(kZPb-kZvac6-4.)*TMath::Tan(kThetaOpenB);
847 rf1[7] = rf1[8] - kDRSteel2;
848 rf2[8] = rf1[8] + (kZPb-kZvac6-4.)*TMath::Tan(kAccMin);
849 rf2[7] = rf2[8] - kDRSteel2;
853 flukaGeom->OnionCone(rf1, rf2, 9 , kZvac6+4, kZPb, posfluka, materials1, fields1, cuts1);
857 flukaGeom->Comment("2nd part: Beam shield lateral struture (4)");
859 materials1[5] = "LEAD";
860 materials1[6] = "LEAD";
861 for (i=0; i<9; i++) rf1[i]=rf2[i];
862 for (i=1; i<9; i++) rf2[i]=rf1[i]+(kZConeE-kZPb)*TMath::Tan(kThetaOpenB);
866 flukaGeom->OnionCone(rf1, rf2, 9 , kZPb, kZConeE, posfluka, materials1, fields1, cuts1);
870 flukaGeom->Comment("2nd part: Beam shield lateral struture (4)");
871 // until end of this section
872 for (i=0; i<9; i++) rf1[i]=rf2[i];
873 for (i=1; i<9; i++) rf2[i]=rf1[i]+(kZvac7-kZConeE)*TMath::Tan(kThetaOpenB);
876 flukaGeom->OnionCone(rf1, rf2, 9 , kZConeE, kZvac7, posfluka, materials1, fields1, cuts1);
890 Float_t dlPb=(kZvac7-kZPb)/2.;
893 parPb[ 4] = r2+(kZPb-kZvac4-10.) * TMath::Tan(kThetaOpen2);
894 parPb[ 5] = kZPb*TMath::Tan(kAccMin)-kDRSteel2;
896 parPb[ 6] = -dlPb+(kZConeE-kZPb);
897 parPb[ 7] = r2+(kZConeE-kZvac4-10.) * TMath::Tan(kThetaOpen2);
900 parPb[ 9] = -dlPb+(kZch32+4.-kZPb);
901 parPb[10] = r2+(kZch32+4.-kZvac4-10.) * TMath::Tan(kThetaOpen2);
904 parPb[12] = -dlPb+(kZch32+4.-kZPb);
905 parPb[13] = r2+(kZch32+4.-kZvac4-10.) * TMath::Tan(kThetaOpen2);
909 parPb[16] = r2+(kZvac7-kZvac4-10.) * TMath::Tan(kThetaOpen2);
912 gMC->Gsvolu("YXO2", "PCON", idtmed[kPb], parPb, 18);
913 gMC->Gspos("YXO2", 1, "YGO2", 0., 0., (kZPb-kZvac4)/2., 0, "ONLY");
922 Float_t dlW=(kZPb-kZvac4)/2.;
926 parW[5] = kR21-kDRSteel2;
928 parW[6] = -dlW+(kZvac6-kZvac4)+kDRSteel2;
929 parW[7] = r2+(kZvac6-kZvac4+kDRSteel2) * TMath::Tan(kThetaOpen2);
930 parW[8] = kR21-kDRSteel2;
932 parW[9] = -dlW+(kZvac6-kZvac4)+kDRSteel2;
933 parW[10] = r2+(kZvac6-kZvac4+kDRSteel2) * TMath::Tan(kThetaOpen2);
934 parW[11] = (kZvac6+kDRSteel2)*TMath::Tan(kAccMin)-kDRSteel2;
937 parW[13] = r2+(kZPb-kZvac4) * TMath::Tan(kThetaOpen2);
938 parW[14] = kZPb*TMath::Tan(kAccMin)-kDRSteel2;
940 gMC->Gsvolu("YYO2", "PCON", idtmed[kNiCuW], parW, 15);
941 gMC->Gspos("YYO2", 1, "YGO2", 0., 0., -(kZvac7-kZPb)/2., 0, "ONLY");
943 for (i=4; i<35; i+=3) par2[i] = 0;
945 gMC->Gsvolu("YMO2", "PCON", idtmed[kVacuum+40], par2, 36);
946 gMC->Gspos("YGO2", 1, "YMO2", 0., 0., 0., 0, "ONLY");
948 gMC->Gspos("YMO2", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
952 // 2nd section: vacuum system
954 cpar0[0]=(kZvac7-kZvac4)/2;
957 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(kThetaOpenB);
958 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(kThetaOpenB);
959 gMC->Gsvolu("YV21", "CONE", idtmed[kSteel+40], cpar0, 5);
963 cpar[1]=cpar0[1]+dTubeS;
964 cpar[2]=cpar0[1]+dTubeS+kDInsuS;
965 cpar[3]=cpar0[3]+dTubeS;
966 cpar[4]=cpar0[3]+dTubeS+kDInsuS;
967 gMC->Gsvolu("YI21", "CONE", idtmed[kInsulation+40], cpar, 5);
968 gMC->Gspos("YI21", 1, "YV21", 0., 0., 0., 0, "ONLY");
969 gMC->Gspos("YV21", 1, "YMO2", 0., 0., 0., 0, "ONLY");
972 // Third Section: Bellows and Flange
977 dl=(kZvac9-kZvac7)/2.;
980 par3[4] = r2+(kZvac7-kZvac3) * TMath::Tan(kThetaOpen2);
984 par3[7] = par3[4]+kDr21;
987 par3[9] = par3[6]+kDB2;
991 par3[12] = par3[9]+kDr22;
992 par3[13] = par3[10]+kDr22;
995 par3[15] = par3[12]+kDF2;
999 par3[18] = par3[15]+kDr22;
1000 par3[19] = par3[16]-kDr22;
1003 par3[21] = par3[18]+kDB2;
1004 par3[22] = par3[19];
1007 par3[24] = par3[21]+kDr23;
1008 par3[25] = par3[22];
1012 Float_t r3=par3[25];
1014 gMC->Gsvolu("YGO3", "PCON", idtmed[iHeavy+40], par3, 27);
1017 if (fWriteGeometry) {
1018 Float_t rfvacu0[15];
1019 for (ifl=0; ifl<8; ifl++) {
1020 zfluka[ifl]=par3[3+3*ifl]+dl+kZvac7;
1021 rfluka1[ifl] = par3[4+3*ifl];
1022 rfluka2[ifl] = par3[5+3*ifl]-4.;
1023 rfluka3[ifl] = par3[5+3*ifl];
1026 for (i=0; i<8; i++) rfluka0[i]=rBox;
1027 rfluka0[0]=0.; rfluka0[7]=0.;
1029 flukaGeom->Comment("3rd part: Shield");
1030 flukaGeom->PolyCone(rfluka1, rfluka2, zfluka, 8, posfluka, "LEAD", "MF", "$SHS");
1031 flukaGeom->Comment("3rd part: Steel envelope");
1032 flukaGeom->PolyCone(rfluka2, rfluka3, zfluka, 8, posfluka, "STEEL", "MF", "$SHS");
1033 flukaGeom->Comment("3rd part: Vacuum");
1034 flukaGeom->PolyCone(rfluka0+1, rfluka1+1, zfluka+1, 6, posfluka, "AIR", "MF", "$SHH");
1036 flukaGeom->Comment("3rd part: Beam Pipe (left)");
1038 rf1[0]=0.; rf2[0]=0.;
1040 rf2[1] = rf1[1]+kDr21*TMath::Tan(kThetaOpenB);
1041 rf1[2] = rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
1043 rf2[2] = rf2[1]+dTubeS; rf2[3]=rf2[2]+kDInsuS; rf2[4]=rf2[3]+kDEnveS;
1044 rf2[5] = rf1[5]+kDr21;
1045 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac7, kZvac7+kDr21, posfluka, materialsB, fieldsB, cutsB);
1048 flukaGeom->Comment("3rd part: Beam Pipe (right)");
1052 rf1[2] = rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
1054 flukaGeom->OnionCylinder(rf1, 6 , kZvac9-kDr23, kZvac9, posfluka, materialsA, fieldsA, cutsA);
1057 flukaGeom->Comment("First Bellow");
1060 for (i=0; i<7; i++) {
1062 flukaGeom->Cylinder(0., kRB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1063 flukaGeom->Cylinder(kRB2, kRB2+kHB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1067 flukaGeom->Cylinder(0., kRB2+kHB2-kEB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1068 flukaGeom->Cylinder(kRB2+kHB2-kEB2, kRB2+kHB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1071 flukaGeom->Cylinder(0., kRB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1072 flukaGeom->Cylinder(kRB2, kRB2+kHB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1075 flukaGeom->Cylinder(0., kRB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1076 flukaGeom->Cylinder(kRB2, kRB2+kEB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1077 flukaGeom->Cylinder(kRB2+kEB2, kRB2+kHB2, z1, z2, posfluka, "AIR", "MF", "$SHH");
1080 flukaGeom->Cylinder(kRB2+kHB2, kRB2+kHB2+0.2, kZvac7+kDr21, z1, posfluka, "AIR", "MF", "$SHH");
1081 flukaGeom->Cylinder(kRB2+kHB2+0.2, rBox, kZvac7+kDr21, z1, posfluka, "AIR", "MF", "$SHH");
1085 flukaGeom->Comment("Second Bellow");
1087 for (i=0; i<7; i++) {
1089 flukaGeom->Cylinder(0., kRB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1090 flukaGeom->Cylinder(kRB2, kRB2+kHB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1093 flukaGeom->Cylinder(0., kRB2+kHB2-kEB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1094 flukaGeom->Cylinder(kRB2+kHB2-kEB2, kRB2+kHB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1097 flukaGeom->Cylinder(0., kRB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1098 flukaGeom->Cylinder(kRB2, kRB2+kHB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1101 flukaGeom->Cylinder(0., kRB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1102 flukaGeom->Cylinder(kRB2, kRB2+kEB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1103 flukaGeom->Cylinder(kRB2+kEB2, kRB2+kHB2, z2, z1, posfluka, "AIR", "MF", "$SHH");
1106 flukaGeom->Cylinder(kRB2+kHB2, kRB2+kHB2+0.2, z1, kZvac9-kDr23, posfluka, "AIR", "MF", "$SHH");
1107 flukaGeom->Cylinder(kRB2+kHB2+0.2, rBox, z1, kZvac9-kDr23, posfluka, "AIR", "MF", "$SHH");
1110 flukaGeom->Comment("Flange");
1115 flukaGeom->Cylinder(0.,kRF2-2., z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1116 flukaGeom->Cylinder(kRF2-2., kRF2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1117 flukaGeom->Cylinder(kRF2, kRF2+0.02 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1118 flukaGeom->Cylinder(kRF2+0.02, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1121 flukaGeom->Cylinder(0.,kRB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1122 flukaGeom->Cylinder(kRB2, kRF2 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1123 flukaGeom->Cylinder(kRF2, kRF2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1124 flukaGeom->Cylinder(kRF2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1127 flukaGeom->Cylinder(0.,kRB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1128 flukaGeom->Cylinder(kRB2, kRB2+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1129 flukaGeom->Cylinder(kRB2+0.1, kRB2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1130 flukaGeom->Cylinder(kRB2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1134 flukaGeom->Cylinder(0.,kRB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1135 flukaGeom->Cylinder(kRB2, kRF2 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1136 flukaGeom->Cylinder(kRF2, kRF2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1137 flukaGeom->Cylinder(kRF2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1140 flukaGeom->Cylinder(0.,kRB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1141 flukaGeom->Cylinder(kRB2, kRB2+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1142 flukaGeom->Cylinder(kRB2+0.1, kRB2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1143 flukaGeom->Cylinder(kRB2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1149 for (i=4; i<26; i+=3) par3[i] = 0;
1151 gMC->Gsvolu("YMO3", "PCON", idtmed[kVacuum+40], par3, 27);
1152 gMC->Gspos("YGO3", 1, "YMO3", 0., 0., 0., 0, "ONLY");
1159 // gMC->Gsvolu("YS31", "TUBE", idtmed[kSteel], tpar, 3);
1160 // gMC->Gspos("YS31", 1, "YGO3", 0., 0., 0., 0, "ONLY");
1162 gMC->Gspos("YMO3", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
1166 // 3rd section: vacuum system
1172 Float_t kLB2S = kLB2-eps;
1177 gMC->Gsvolu("YB21", "TUBE", idtmed[kSteel+40], tpar, 3);
1180 tpar[0]=kRB2+kHB2-kEB2;
1182 tpar[2]=(kLB2S/2.-2.*kEB2)/2.;
1183 gMC->Gsvolu("YB22", "TUBE", idtmed[kSteel+40], tpar, 3);
1189 gMC->Gsvolu("YB23", "TUBE", idtmed[kSteel+40], tpar, 3);
1195 tpar[2]= - kLB2S/2.;
1196 gMC->Gsvolu("YBU2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1202 gMC->Gsvolu("YBM2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1203 gMC->Gsdvn("YBMS", "YBM2", 7, 3);
1204 gMC->Gspos("YBU2", 1, "YBMS", 0., 0., 0., 0, "ONLY");
1207 gMC->Gspos("YB23", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1210 gMC->Gspos("YB21", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1213 gMC->Gspos("YB22", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1216 gMC->Gspos("YB21", 2, "YBU2", 0., 0., dz, 0, "ONLY");
1219 gMC->Gspos("YB23", 2, "YBU2", 0., 0., dz, 0, "ONLY");
1221 dz=-dl+kDr21+tpar[2];
1222 gMC->Gspos("YBM2", 1, "YMO3", 0., 0., dz, 0, "ONLY");
1224 dz=dl-kDr23-tpar[2];
1225 gMC->Gspos("YBM2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1233 gMC->Gsvolu("YFM2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1238 gMC->Gsvolu("YF21", "TUBE", idtmed[kSteel+40], tpar, 3);
1239 gMC->Gspos("YF21", 1, "YFM2", 0., 0., 0., 0, "ONLY");
1243 tpar[2]=kDFlange/2.;
1244 gMC->Gsvolu("YF22", "TUBE", idtmed[kSteel+40], tpar, 3);
1245 dz=-kDF2/2.+tpar[2];
1246 gMC->Gspos("YF22", 1, "YFM2", 0., 0., dz, 0, "ONLY");
1247 dz= kDF2/2.-tpar[2];
1248 gMC->Gspos("YF22", 2, "YFM2", 0., 0., dz, 0, "ONLY");
1250 dz=kDr21/2.-kDr23/2.;
1251 gMC->Gspos("YFM2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1255 // pipe between flange and bellows
1256 tpar[0]=kRB2-dTubeS;
1258 tpar[2]=2.*(kDB2+kDr22-7.*kLB2)/4.;
1259 gMC->Gsvolu("YPF2", "TUBE", idtmed[kSteel+40], tpar, 3);
1260 dz=kDr21/2.-kDr23/2.-kDF2/2.-tpar[2];
1261 gMC->Gspos("YPF2", 1, "YMO3", 0., 0., dz, 0, "ONLY");
1262 dz=kDr21/2.-kDr23/2.+kDF2/2.+tpar[2];
1263 gMC->Gspos("YPF2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1268 // 4th section: rear shield and closing cone
1273 dl=(kZvac12-kZvac9)/2.;
1279 par4[6] = -dl+dHorZ;
1283 par4[9] = -dl+(kZvac10-kZvac9);
1284 par4[10] = r3+(kZvac10-kZvac9-dHorZ) * TMath::Tan(kThetaOpen3);
1288 par4[13] = par4[10];
1291 par4[15] = -dl+(kZvac11-kZvac9);
1292 par4[16] = r3+(kZvac11-kZvac9-dHorZ) * TMath::Tan(kThetaOpen3);
1295 par4[18] = par4[15];
1296 par4[19] = par4[16];
1299 par4[21] = -dl+(kZvac12-kZvac9);
1300 par4[22] = kRVacu+dVacuS;
1303 gMC->Gsvolu("YGO4", "PCON", idtmed[iHeavy+40], par4, 24);
1306 // parPb[0] = (kZvac12-kZvac10)/2.;
1307 // parPb[1] = parPb[3];
1309 // parPb[3] = parPb[1]+2.*parPb[0]*TMath::Tan(kThetaOpenPb);
1311 // gMC->Gsvolu("YXO5", "CONE", idtmed[kPb], parPb, 5);
1312 // gMC->Gspos("YXO5", 1, "YGO4", 0., 0., -dl+(kZvac10-kZvac9)+parPb[0], 0, "ONLY");
1314 for (i=4; i<23; i+=3) par4[i] = 0;
1316 gMC->Gsvolu("YMO4", "PCON", idtmed[kVacuum+40], par4, 24);
1317 gMC->Gspos("YGO4", 1, "YMO4", 0., 0., 0., 0, "ONLY");
1322 gMC->Gspos("YMO4", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
1325 // Closing concrete cone
1327 cpar[0]=(kZvac12-kZvac11)/2.;
1328 cpar[1] = r3+(kZvac11-kZvac9-dHorZ) * TMath::Tan(kThetaOpen3);
1329 cpar[2] = cpar[1]+0.001;
1330 cpar[3] = kRVacu+dVacuS;
1332 gMC->Gsvolu("YCC4", "CONE", idtmed[kConcrete+40], cpar, 5);
1334 gMC->Gspos("YCC4", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1338 Float_t r10 = .0, r11 = 0.;
1340 if (fWriteGeometry) {
1341 r10=r3+(kZvac10-kZvac9-dHorZ) * TMath::Tan(kThetaOpen3);
1344 flukaGeom->Comment("4th part: Shield");
1346 flukaGeom->Cone(r3, r3, 26.0, 26.0, kZvac9, kZvac9+dHorZ,
1347 posfluka, "LEAD", "NF", "$SHH");
1349 flukaGeom->Cone(r3, r10, 26.0, 26.0, kZvac9+dHorZ, kZvac10,
1350 posfluka, "LEAD", "NF", "$SHH");
1351 flukaGeom->Cone(r10, r11, 30.0, 30.0, kZvac10, kZvac11,
1352 posfluka, "LEAD", "NF", "$SHH");
1353 flukaGeom->Cylinder( cpar[1], 30.0, kZvac11, kZvac12,
1354 posfluka, "LEAD", "NF", "$SHH");
1357 flukaGeom->Comment("4th part: Steel Envelope");
1358 flukaGeom->Cylinder(26.0, 30., kZvac9, kZvac10, posfluka, "STEEL", "NF", "$SHH");
1359 flukaGeom->Comment("4th part: Closing Cone");
1360 flukaGeom->Cone(cpar[1]-0.1, cpar[3], cpar[1], cpar[1], kZvac11, kZvac12,
1361 posfluka, "PORTLAND", "NF", "$SHH");
1362 flukaGeom->Comment("4th part: VACUUM");
1363 flukaGeom->Cone(0., 0., cpar[1]-0.1, cpar[3], kZvac11, kZvac12,
1364 posfluka, "VACUUM", "NF", "$SHH");
1375 tpar[2]=(kZvac10-kZvac9)/2.;
1376 gMC->Gsvolu("YS41", "TUBE", idtmed[kSteel], tpar, 3);
1378 // gMC->Gspos("YS41", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1381 tpar[0]=kR41-kDRSteel2;
1383 tpar[2]=(kZvac11-kZvac10)/2.;
1384 gMC->Gsvolu("YS43", "TUBE", idtmed[kPb], tpar, 3);
1386 gMC->Gspos("YS43", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1392 tpar[2]=(kZvac11-kZvac10)/2.;
1393 gMC->Gsvolu("YPBI", "TUBE", idtmed[kPb+40], tpar, 3);
1395 gMC->Gspos("YPBI", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1399 tpar[2]=(kZvac11-kZvac10)/2.;
1400 gMC->Gsvolu("YPBO", "TUBE", idtmed[kPb], tpar, 3);
1401 gMC->Gspos("YPBO", 1, "YPBI", 0., 0., 0., 0, "ONLY");
1409 tpar[2]=(kZvac12-kZvac11)/2.;
1410 gMC->Gsvolu("YFEI", "TUBE", idtmed[kFe+40], tpar, 3);
1412 gMC->Gspos("YFEI", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1417 gMC->Gsvolu("YFEO", "TUBE", idtmed[kFe], tpar, 3);
1418 dz=-(kZvac12-kZvac11)/2.+tpar[2];
1419 gMC->Gspos("YFEO", 1, "YFEI", 0., 0., dz, 0, "ONLY");
1426 gMC->Gsvolu("YAEM", "TUBE", idtmed[kAir], tpar, 3);
1430 gMC->Gsvolu("YFEM", "TUBE", idtmed[kFe], tpar, 3);
1431 gMC->Gspos("YFEM", 1, "YAEM", 0., 0., 0., 0, "ONLY");
1435 if (gAlice->GetModule("HALL")) {
1436 gMC->Gspos("YAEM", 1, "HUP2", 0., 0., 0., 0, "ONLY");
1439 gMC->Gspos("YAEM", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1444 // 4th section: vacuum system
1446 // up to closing cone
1448 r3V=r3-kDr23+dVacuS-1.6;
1450 cpar0[0]=(kZvac11-kZvac9)/2;
1451 cpar0[1]=r3V-dVacuS;
1453 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(kThetaOpen3);
1454 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(kThetaOpen3);
1455 gMC->Gsvolu("YV31", "CONE", idtmed[kSteel+40], cpar0, 5);
1459 cpar[1]=cpar0[1]+dTubeS;
1460 cpar[2]=cpar0[1]+dTubeS+kDInsuS;
1461 cpar[3]=cpar0[3]+dTubeS;
1462 cpar[4]=cpar0[3]+dTubeS+kDInsuS;
1463 gMC->Gsvolu("YI31", "CONE", idtmed[kInsulation+40], cpar, 5);
1464 gMC->Gspos("YI31", 1, "YV31", 0., 0., 0., 0, "ONLY");
1466 gMC->Gspos("YV31", 1, "YMO4", 0., 0., dz, 0, "ONLY");
1470 if (fWriteGeometry) {
1471 flukaGeom->Comment("4th part: Beam pipe lateral structure");
1472 for (i=0; i<7; i++) fieldsA[i] = "NF";
1474 rf1[0]=0.; rf2[0]=0.;
1475 rf1[1]=rf2[1]; rf2[1]=rf1[1]+dHorZ*TMath::Tan(kThetaOpen3);
1477 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
1480 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+kDInsuS; rf2[4]=rf2[3]+kDEnveS;
1483 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac9 , kZvac9+dHorZ, posfluka, materialsA, fieldsA, cutsA);
1485 rf1[0]=0.; rf2[0]=0.;
1487 rf1[1]=rf2[1]; rf2[1]=rf1[1]+(kZvac10-kZvac9-dHorZ)*TMath::Tan(kThetaOpen3);
1489 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
1492 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+kDInsuS; rf2[4]=rf2[3]+kDEnveS;
1496 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac9+dHorZ, kZvac10, posfluka, materialsA, fieldsA, cutsA);
1498 rf1[0]=0.; rf2[0]=0.;
1499 rf1[1]=rf2[1]; rf2[1]=rf1[1]+(kZvac11-kZvac10)*TMath::Tan(kThetaOpen3);
1501 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+kDInsuS; rf1[4]=rf1[3]+kDEnveS;
1503 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+kDInsuS; rf2[4]=rf2[3]+kDEnveS;
1506 flukaGeom->OnionCone(rf1, rf2, 6 , kZvac10, kZvac11, posfluka, materialsA, fieldsA, cutsA);
1513 cpar0[0]=(kZvac12-kZvac11)/2;
1514 cpar0[1]=r3V-dVacuS+(kZvac11-kZvac9)*TMath::Tan(kThetaOpen3);
1515 cpar0[2]=r3V +(kZvac11-kZvac9)*TMath::Tan(kThetaOpen3);
1517 cpar0[4]=kRVacu+dTubeS+kDInsuS+kDProtS+kDFreeS;
1518 gMC->Gsvolu("YV32", "CONE", idtmed[kSteel+40], cpar0, 5);
1522 cpar[1]=cpar0[1]+dTubeS;
1523 cpar[2]=cpar0[1]+dTubeS+kDInsuS;
1524 cpar[3]=cpar0[3]+dTubeS;
1525 cpar[4]=cpar0[3]+dTubeS+kDInsuS;
1526 gMC->Gsvolu("YI32", "CONE", idtmed[kInsulation+40], cpar, 5);
1527 gMC->Gspos("YI32", 1, "YV32", 0., 0., 0., 0, "ONLY");
1530 // cpar[1]=cpar0[2]-kDProtS-kDFreeS;
1531 // cpar[2]=cpar0[2]-kDProtS;
1532 // cpar[3]=cpar0[4]-kDProtS-kDFreeS;
1533 // cpar[4]=cpar0[4]-kDProtS;
1534 // gMC->Gsvolu("YP32", "CONE", idtmed[kVacuum+40], cpar, 5);
1535 // gMC->Gspos("YP32", 1, "YV32", 0., 0., 0., 0, "ONLY");
1537 gMC->Gspos("YV32", 1, "YMO4", 0., 0., dz, 0, "ONLY");
1540 // MUON trigger wall
1544 tpar[2] = (kZFilterOut - kZFilterIn) / 2.;
1545 gMC->Gsvolu("YFIM", "TUBE", idtmed[kFe+40], tpar, 3);
1546 dz = (kZFilterIn + kZFilterOut) / 2.;
1548 gMC->Gsvolu("YFII","TUBE", idtmed[kFe], tpar, 3);
1549 gMC->Gspos("YFII", 1, "YFIM", 0., 0., 0., 0, "ONLY");
1550 gMC->Gspos("YFIM", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1552 // Shielding close to chamber
1555 cpar[0]=(kZch11-kZRear)/2.;
1557 cpar[2]=kZRear*TMath::Tan(kAccMin);
1559 cpar[4]=(kZRear+2.*cpar[0])*TMath::Tan(kAccMin);
1560 gMC->Gsvolu("YCS1", "CONE", idtmed[kNiCuW], cpar, 5);
1561 dz=-(kZvac12-zstart)/2.+(kZRear-zstart)+cpar[0];
1562 gMC->Gspos("YCS1", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1564 cpar[0]=(kZvac4-kZch12)/2.;
1566 cpar[2]=kZch12*TMath::Tan(kAccMin);
1568 cpar[4]=(kZch12+2.*cpar[0])*TMath::Tan(kAccMin);
1569 gMC->Gsvolu("YCS3", "CONE", idtmed[kNiCuW], cpar, 5);
1570 dz=-(kZvac12-zstart)/2.+(kZch12-zstart)+cpar[0];
1571 gMC->Gspos("YCS3", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1576 cpar[0]=(kZch12-kZch11)/2.;
1581 gMC->Gsvolu("YCS2", "CONE", idtmed[kAir], cpar, 5);
1582 dz=-(kZvac12-zstart)/2.+(kZch11-zstart)+cpar[0];
1583 gMC->Gspos("YCS2", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1592 gMC->Gsvolu("YCR0", "TUBS", idtmed[kNiCuW], ptubs, 0);
1595 AliMatrix(idrotm[1701],90., 0., 90., 90., 0., 0.);
1596 AliMatrix(idrotm[1702],90., 90., 90., 180., 0., 0.);
1597 AliMatrix(idrotm[1703],90., 180., 90., 270., 0., 0.);
1598 AliMatrix(idrotm[1704],90., 270., 90., 0., 0., 0.);
1605 gMC->Gsposp("YCR0", 1, "YCS2", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1606 gMC->Gsposp("YCR0", 2, "YCS2", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1612 gMC->Gsposp("YCR0", 3, "YCS2", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1613 gMC->Gsposp("YCR0", 4, "YCS2", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1619 gMC->Gsposp("YCR0", 5, "YCS2", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1620 gMC->Gsposp("YCR0", 6, "YCS2", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1626 gMC->Gsposp("YCR0", 7, "YCS2", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1627 gMC->Gsposp("YCR0", 8, "YCS2", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1633 cpar[0]=(kZch21-kZvac4)/2.;
1635 cpar[2]=kZvac4*TMath::Tan(kAccMin);
1637 cpar[4]=(kZvac4+2.*cpar[0])*TMath::Tan(kAccMin);
1638 gMC->Gsvolu("YCS4", "CONE", idtmed[kNiCuW], cpar, 5);
1639 dz=-(kZvac12-zstart)/2.+(kZvac4-zstart)+cpar[0];
1640 gMC->Gspos("YCS4", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1642 cpar[0]=(kZvac6-kZch22)/2.;
1644 cpar[2]=kZch22*TMath::Tan(kAccMin);
1646 cpar[4]=(kZch22+2.*cpar[0])*TMath::Tan(kAccMin);
1647 gMC->Gsvolu("YCS6", "CONE", idtmed[kNiCuW], cpar, 5);
1648 dz=-(kZvac12-zstart)/2.+(kZch22-zstart)+cpar[0];
1649 gMC->Gspos("YCS6", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1653 cpar[0]=(kZch22-kZch21)/2.;
1658 gMC->Gsvolu("YCS5", "CONE", idtmed[kAir], cpar, 5);
1659 dz=-(kZvac12-zstart)/2.+(kZch21-zstart)+cpar[0];
1660 gMC->Gspos("YCS5", 1, "YMOT", 0., 0., dz, 0, "ONLY");
1667 gMC->Gsvolu("YCR1", "TUBS", idtmed[kNiCuW], ptubs, 0);
1673 gMC->Gsposp("YCR1", 1, "YCS5", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1674 gMC->Gsposp("YCR1", 2, "YCS5", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1680 gMC->Gsposp("YCR1", 3, "YCS5", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1681 gMC->Gsposp("YCR1", 4, "YCS5", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1687 gMC->Gsposp("YCR1", 5, "YCS5", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1688 gMC->Gsposp("YCR1", 6, "YCS5", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1694 gMC->Gsposp("YCR1", 7, "YCS5", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1695 gMC->Gsposp("YCR1", 8, "YCS5", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1703 flukaGeom->Cone(kR11, kR11, -1., -1.,
1704 kZRear, kZch11, posfluka,"NIW", "MF", "$SHS");
1706 flukaGeom->Cone(kR11, kR11, -1., -1.,
1707 kZch11, kZch12, posfluka,"AIR", "MF", "$SHS");
1709 flukaGeom->Cone(kR11, kR11, -1., -1.,
1710 kZch12, kZvac4, posfluka,"NIW", "MF", "$SHS");
1712 flukaGeom->Cone(kR21, kR21, -1., -1.,
1713 kZvac4, kZch21, posfluka,"NIW", "MF", "$SHS");
1714 flukaGeom->Cone(kR21, kR21, -1., -1.,
1715 kZch21, kZch22, posfluka,"AIR", "MF", "$SHS");
1716 flukaGeom->Cone(kR21, kR21, -1., -1.,
1717 kZch22, kZvac6, posfluka,"NIW", "MF", "$SHS");
1720 if (fWriteGeometry) flukaGeom->Finish();
1728 dl = (kZvac10-kZch32)/2.;
1737 par0[ 5] = 30.+(kZch32-kZConeE)*TMath::Tan(kThetaOpenPbO);
1740 par0[ 6] = -dz + kZch41;
1742 par0[ 8] = 30.+(kZch41-kZConeE)*TMath::Tan(kThetaOpenPbO);
1744 par0[ 9] = -dz + kZch41;
1748 par0[12] = -dz + kZch42;
1750 par0[14] = par0[11];
1752 par0[15] = -dz + kZch42;
1754 par0[17] = 30.+(kZch42-kZConeE)*TMath::Tan(kThetaOpenPbO);
1757 par0[18] = -dz + kZch51;
1759 par0[20] = 30.+(kZch51-kZConeE)*TMath::Tan(kThetaOpenPbO);
1761 par0[21] = -dz + kZch51;
1763 par0[23] = 37.5; // recess erice2000
1765 par0[24] = -dz + kZch52;
1767 par0[26] = par0[23];
1769 par0[27] = -dz + kZch52;
1771 par0[29] = 30.+(kZch52-kZConeE)*TMath::Tan(kThetaOpenPbO);
1775 par0[32] = par0[29];
1777 gMC->Gsvolu("YOPB", "PCON", idtmed[kPb], par0, 33);
1778 Float_t dzs = -(kZvac12-zstart)/2. + (kZch32-zstart) + dl;
1779 gMC->Gspos("YOPB", 1, "YMOT", 0., 0., dzs, 0, "ONLY");
1786 par0[ 5] = 30.+(kZch32-kZConeE)*TMath::Tan(kThetaOpenPbO);
1787 par0[ 4] = par0[ 5] - 4.;
1789 par0[ 6] = -dz + kZch41 - 4.;
1790 par0[ 8] = 30.+(kZch41-4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1791 par0[ 7] = par0[ 8] -4.;
1793 par0[ 9] = -dz + kZch41 - 4.;
1797 par0[12] = -dz + kZch41;
1798 par0[14] = 30.+(kZch41-kZConeE)*TMath::Tan(kThetaOpenPbO);
1801 par0[15] = -dz + kZch41;
1805 par0[18] = -dz + kZch42;
1809 par0[21] = -dz + kZch42;
1810 par0[23] = 30.+(kZch42-kZConeE)*TMath::Tan(kThetaOpenPbO);
1813 par0[24] = -dz + kZch42 + 4.;
1814 par0[26] = 30.+(kZch42+4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1817 par0[27] = -dz + kZch42 + 4.;
1818 par0[29] = 30.+(kZch42+4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1819 par0[28] = par0[29] - 4.;
1822 par0[30] = -dz + kZch51 - 4.;
1823 par0[32] = 30.+(kZch51-4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1824 par0[31] = par0[32] - 4.;
1826 par0[33] = -dz + kZch51 - 4.;
1827 par0[35] = par0[32];
1830 par0[36] = -dz + kZch51;
1831 par0[38] = 30.+(kZch51-kZConeE)*TMath::Tan(kThetaOpenPbO);
1834 par0[39] = -dz + kZch51;
1838 par0[42] = -dz + kZch52;
1842 par0[45] = -dz + kZch52;
1843 par0[47] = 30.+(kZch52-kZConeE)*TMath::Tan(kThetaOpenPbO);
1846 par0[48] = -dz + kZch52 + 4.;
1847 par0[50] = 30.+(kZch52+4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1850 par0[51] = -dz + kZch52 + 4.;
1851 par0[53] = 30.+(kZch52+4.-kZConeE)*TMath::Tan(kThetaOpenPbO);
1852 par0[52] = par0[53] - 4.;
1855 par0[56] = par0[53];
1856 par0[55] = par0[52];
1858 gMC->Gsvolu("YOSE", "PCON", idtmed[kSteel], par0, 57);
1859 gMC->Gspos ("YOSE", 1, "YOPB", 0., 0., 0., 0, "ONLY");
1863 void AliSHILvF::Init()
1866 // Initialise the muon shield after it has been built
1871 printf("\n%s: ",ClassName());
1872 for(i=0;i<35;i++) printf("*");
1873 printf(" SHILvF_INIT ");
1874 for(i=0;i<35;i++) printf("*");
1875 printf("\n%s: ",ClassName());
1877 // Here the SHIL initialisation code (if any!)
1878 for(i=0;i<80;i++) printf("*");