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 1.4 2001/01/31 11:55:27 hristov
19 Loop variables declared once (required by HP)
21 Revision 1.3 2001/01/30 12:28:27 morsch
22 Recess station 1 changed do make space for chambers.
24 Revision 1.2 2000/12/04 16:30:02 morsch
25 Update to geometry defined for the Muon Spectrometer Addendum to the TDR.
30 #include "AliSHILvF.h"
38 //_____________________________________________________________________________
39 AliSHILvF::AliSHILvF()
42 // Default constructor for muon shield
46 //_____________________________________________________________________________
47 AliSHILvF::AliSHILvF(const char *name, const char *title)
51 // Standard constructor for muon shield
56 // Pb cone not yet compatible with muon chamber inner radii
57 // Switched off by default
61 //_____________________________________________________________________________
62 void AliSHILvF::CreateGeometry()
65 // Build muon shield geometry
70 <img src="picts/AliSHILvF.gif">
75 <img src="picts/AliSHILvFTree.gif">
79 Float_t cpar[5], cpar0[5], tpar[3], par1[39], par2[27], par3[27],
83 Int_t *idtmed = fIdtmed->GetArray()-1699;
85 #include "ABSOSHILConst.h"
86 #include "SHILConst.h"
88 enum {kC=1705, kAl=1708, kFe=1709, kCu=1710, kW=1711, kPb=1712,
89 kNiCuW=1720, kVacuum=1715, kAir=1714, kConcrete=1716,
90 kPolyCH2=1717, kSteel=1709, kInsulation=1713};
92 // Material of the rear part of the shield
94 if (fPbCone) iHeavy=kPb;
98 AliALIFE* flukaGeom = new AliALIFE("beamshield.alife", "beamshield_vol.inp");
100 Float_t posfluka[3]={0., 0., 0.};
101 Float_t zfluka[12], rfluka1[12], rfluka2[12], rfluka3[12] ;
109 Float_t dRear1=dRear;
111 Float_t zstart=zRear-dRear1;
117 Float_t dl=(zvac12-zstart)/2.;
122 par0[5] = zstart * TMath::Tan(accMin);
124 par0[6] = -dl+dRear1;
126 par0[8] = zRear * TMath::Tan(accMin);
128 par0[9] = -dl+dRear1;
132 par0[12] = -dz+zvac4;
136 par0[15] = -dz+zvac4;
140 par0[18] = -dz+zvac6;
144 par0[21] = -dz+zvac6;
146 par0[23] = zvac6 * TMath::Tan(accMin);
148 par0[24] = -dz+zConeE;
152 par0[27] = -dz+zvac10;
156 par0[30] = -dz+zvac10;
160 par0[33] = -dz+zvac11;
164 par0[36] = -dz+zvac11;
168 par0[39] = -dz+zvac12;
172 gMC->Gsvolu("YMOT", "PCON", idtmed[kVacuum], par0, 42);
174 gMC->Gspos("YMOT", 1, "ALIC", 0., 0., dz, 0, "ONLY");
180 // First section: bellows below and behind front absorber
186 dl=(zvac4-zstart)/2.;
189 par1[4] = rAbs+(zstart-zOpen) * TMath::Tan(thetaOpen1);
190 par1[5] = zstart * TMath::Tan(accMin);
192 par1[6] = -dl+zvac1-zstart;
193 par1[7] = rAbs+ (zvac1-zOpen) * TMath::Tan(thetaOpen1);
194 par1[8] = zvac1 * TMath::Tan(accMin);
196 par1[9] = par1[6]+dr11;
197 par1[10] = par1[7]+dr11;
198 par1[11] = (zvac1+dr11) * TMath::Tan(accMin);
200 par1[12] = -dl+dRear1;
202 par1[14] = zRear * TMath::Tan(accMin);
204 par1[15] = -dl+dRear1;
208 par1[18] = -dl+(zvac1+dr11+dB1-zstart);
212 par1[21] = par1[18]+dr12;
213 par1[22] = par1[19]+dr12;
216 par1[24] = par1[21]+dF1;
220 par1[27] = par1[24]+dr12;
221 par1[28] = par1[25]-dr12;
224 par1[30] = par1[27]+dB1;
228 par1[33] = par1[30]+dr13;
232 par1[36] = -dl+zvac4-zstart;
236 Float_t r2 = par1[34];
237 Float_t rBox= par1[31]-0.1;
238 Float_t rc1 = par1[7];
240 gMC->Gsvolu("YGO1", "PCON", idtmed[kNiCuW], par1, 39);
244 for (ifl=0; ifl<12; ifl++) {
245 zfluka[ifl]=par1[3+3*ifl]+dl+zRear-dRear;
246 rfluka1[ifl] = par1[4+3*ifl];
247 rfluka2[ifl] = par1[5+3*ifl];
248 if (ifl > 3) rfluka2[ifl]=rfluka2[ifl]-dRSteel1;
252 Float_t rfluka0[8]={rBox,rBox,rBox,rBox,rBox,rBox,rBox,rBox};
254 flukaGeom->Comment("1st part: Shield");
255 // Use default for first three cones
256 flukaGeom->SetDefaultVolume("*ACR02");
257 rfluka2[0]=rfluka2[1]=rfluka2[2]=-1;
259 flukaGeom->Comment("Shield");
260 flukaGeom->PolyCone(rfluka1, rfluka2, zfluka, 12, posfluka, "NIW", "MF", "$SHS");
261 flukaGeom->Comment("Vacuum");
262 flukaGeom->PolyCone(rfluka0, rfluka1+2, zfluka+2, 8, posfluka, "VACUUM", "MF", "$SHS");
267 for (i=4; i<38; i+=3) par1[i] = 0;
269 gMC->Gsvolu("YMO1", "PCON", idtmed[kVacuum+40], par1, 39);
270 gMC->Gspos("YGO1", 1, "YMO1", 0., 0., 0., 0, "ONLY");
272 gMC->Gspos("YMO1", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
277 tpar[0]=R11-dRSteel1;
280 gMC->Gsvolu("YSE1", "TUBE", idtmed[kNiCuW], tpar, 3);
282 gMC->Gspos("YSE1", 1, "YGO1", 0., 0., dz, 0, "ONLY");
285 flukaGeom->Comment("1st part: Steel Envelope");
286 flukaGeom->Cylinder(tpar[0], tpar[1], zRear, zvac4, posfluka, "NIW", "MF", "$SHS");
291 // 1st section: vacuum system
299 gMC->Gsvolu("YB11", "TUBE", idtmed[kSteel+40], tpar, 3);
304 tpar[2]=(lB1/2.-2.*eB1)/2.;
305 gMC->Gsvolu("YB12", "TUBE", idtmed[kSteel+40], tpar, 3);
311 gMC->Gsvolu("YB13", "TUBE", idtmed[kSteel+40], tpar, 3);
318 gMC->Gsvolu("YBU1", "TUBE", idtmed[kVacuum+40], tpar, 3);
321 gMC->Gspos("YB13", 1, "YBU1", 0., 0., dz, 0, "ONLY");
324 gMC->Gspos("YB11", 1, "YBU1", 0., 0., dz, 0, "ONLY");
327 gMC->Gspos("YB12", 1, "YBU1", 0., 0., dz, 0, "ONLY");
330 gMC->Gspos("YB11", 2, "YBU1", 0., 0., dz, 0, "ONLY");
333 gMC->Gspos("YB13", 2, "YBU1", 0., 0., dz, 0, "ONLY");
339 gMC->Gsvolu("YBM1", "TUBE", idtmed[kVacuum+40], tpar, 3);
342 for (i=0; i<10; i++) {
343 gMC->Gspos("YBU1", i+1 , "YBM1", 0., 0., dz, 0, "ONLY");
347 dz=-dl+(zvac1-zstart)+dr11+tpar[2];
348 gMC->Gspos("YBM1", 1, "YMO1", 0., 0., dz, 0, "ONLY");
350 dz=dl-dr13-(zvac4-zvac3)-tpar[2];
351 gMC->Gspos("YBM1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
359 gMC->Gsvolu("YFM1", "TUBE", idtmed[kVacuum+40], tpar, 3);
364 gMC->Gsvolu("YF11", "TUBE", idtmed[kSteel+40], tpar, 3);
365 gMC->Gspos("YF11", 1, "YFM1", 0., 0., 0., 0, "ONLY");
370 gMC->Gsvolu("YF12", "TUBE", idtmed[kSteel+40], tpar, 3);
372 gMC->Gspos("YF12", 1, "YFM1", 0., 0., dz, 0, "ONLY");
374 gMC->Gspos("YF12", 2, "YFM1", 0., 0., dz, 0, "ONLY");
376 dz=-dl+(zvac2-zstart);
377 gMC->Gspos("YFM1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
380 // pipe between flange and bellows
383 tpar[2]=2.*(dB1+dr12-10.*lB1)/4.;
384 gMC->Gsvolu("YPF1", "TUBE", idtmed[kSteel+40], tpar, 3);
386 dz=-dl+(zvac2-zstart)-dF1/2.-tpar[2];
387 gMC->Gspos("YPF1", 1, "YMO1", 0., 0., dz, 0, "ONLY");
388 dz=-dl+(zvac2-zstart)+dF1/2.+tpar[2];
389 gMC->Gspos("YPF1", 2, "YMO1", 0., 0., dz, 0, "ONLY");
393 flukaGeom->Comment("First Bellow");
394 Float_t z1=zvac1+dr11;
397 for (i=0; i<10; i++) {
399 flukaGeom->Cylinder(0., rB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
400 flukaGeom->Cylinder(rB1, rB1+hB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
404 flukaGeom->Cylinder(0., rB1+hB1-eB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
405 flukaGeom->Cylinder(rB1+hB1-eB1, rB1+hB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
408 flukaGeom->Cylinder(0., rB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
409 flukaGeom->Cylinder(rB1, rB1+hB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
412 flukaGeom->Cylinder(0., rB1, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
413 flukaGeom->Cylinder(rB1, rB1+eB1, z1, z2, posfluka, "STEEL", "MF", "$SHH");
414 flukaGeom->Cylinder(rB1+eB1, rB1+hB1, z1, z2, posfluka, "AIR", "MF", "$SHH");
417 flukaGeom->Cylinder(rB1+hB1, rB1+hB1+0.5, zvac1+dr11, z1, posfluka, "AIR", "MF", "$SHH");
418 flukaGeom->Cylinder(rB1+hB1+0.5, rBox, zvac1+dr11, z1, posfluka, "AIR", "MF", "$SHH");
422 flukaGeom->Comment("Second Bellow");
424 for (i=0; i<10; i++) {
426 flukaGeom->Cylinder(0., rB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
427 flukaGeom->Cylinder(rB1, rB1+hB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
430 flukaGeom->Cylinder(0., rB1+hB1-eB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
431 flukaGeom->Cylinder(rB1+hB1-eB1, rB1+hB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
434 flukaGeom->Cylinder(0., rB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
435 flukaGeom->Cylinder(rB1, rB1+hB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
438 flukaGeom->Cylinder(0., rB1, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
439 flukaGeom->Cylinder(rB1, rB1+eB1, z2, z1, posfluka, "STEEL", "MF", "$SHH");
440 flukaGeom->Cylinder(rB1+eB1, rB1+hB1, z2, z1, posfluka, "AIR", "MF", "$SHH");
443 flukaGeom->Cylinder(rB1+hB1, rB1+hB1+0.5, z1, zvac3-dr13, posfluka, "AIR", "MF", "$SHH");
444 flukaGeom->Cylinder(rB1+hB1+0.5, rBox, z1, zvac3-dr13, posfluka, "AIR", "MF", "$SHH");
447 flukaGeom->Comment("Flange");
448 Float_t zfl=(zcy1+zcy2)/2.;
452 flukaGeom->Cylinder(0.,rF1-2. , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
453 flukaGeom->Cylinder(rF1-2., rF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
454 flukaGeom->Cylinder(rF1, rF1+0.05 , z1, z2, posfluka, "AIR", "MF", "$SHH");
455 flukaGeom->Cylinder(rF1+0.05, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
458 flukaGeom->Cylinder(0.,rB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
459 flukaGeom->Cylinder(rB1, rF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
460 flukaGeom->Cylinder(rF1, rF1+0.5 , z1, z2, posfluka, "AIR", "MF", "$SHH");
461 flukaGeom->Cylinder(rF1+0.5, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
464 flukaGeom->Cylinder(0.,rB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
465 flukaGeom->Cylinder(rB1, rB1+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
466 flukaGeom->Cylinder(rB1+0.1, rB1+0.6 , z1, z2, posfluka, "AIR", "MF", "$SHH");
467 flukaGeom->Cylinder(rB1+0.6, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
471 flukaGeom->Cylinder(0.,rB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
472 flukaGeom->Cylinder(rB1, rF1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
473 flukaGeom->Cylinder(rF1, rF1+0.5 , z1, z2, posfluka, "AIR", "MF", "$SHH");
474 flukaGeom->Cylinder(rF1+0.5, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
477 flukaGeom->Cylinder(0.,rB1 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
478 flukaGeom->Cylinder(rB1, rB1+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
479 flukaGeom->Cylinder(rB1+0.1, rB1+0.6 , z1, z2, posfluka, "AIR", "MF", "$SHH");
480 flukaGeom->Cylinder(rB1+0.6, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
484 // pipe and heating jackets outside bellows
487 cpar0[0]=(zvac1-zstart)/2;
488 cpar0[1]=rVacu+(zstart-zOpen)*TMath::Tan(thetaOpen1)-0.05;
489 cpar0[2]=rAbs +(zstart-zOpen)*TMath::Tan(thetaOpen1);
490 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(thetaOpen1);
491 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(thetaOpen1);
492 gMC->Gsvolu("YV11", "CONE", idtmed[kSteel+40], cpar0, 5);
497 cpar[1]=cpar0[1]+0.15;
498 cpar[2]=cpar0[1]+0.65;
499 cpar[3]=cpar0[3]+0.15;
500 cpar[4]=cpar0[3]+0.65;
501 gMC->Gsvolu("YI11", "CONE", idtmed[kInsulation+40], cpar, 5);
502 gMC->Gspos("YI11", 1, "YV11", 0., 0., 0., 0, "ONLY");
505 cpar[1]=cpar0[1]+0.75;
506 cpar[2]=cpar0[1]+1.25;
507 cpar[3]=cpar0[3]+0.75;
508 cpar[4]=cpar0[3]+1.25;
509 gMC->Gsvolu("YP11", "CONE", idtmed[kVacuum+40], cpar, 5);
510 gMC->Gspos("YP11", 1, "YV11", 0., 0., 0., 0, "ONLY");
513 gMC->Gspos("YV11", 1, "YMO1", 0., 0., dz, 0, "ONLY");
517 Float_t rf1[10], rf2[10];
518 rf1[0]=0.; rf2[0]=0.;
523 rf1[2]=rf1[1]+0.15; rf1[3]=rf1[2]+0.5; rf1[4]=rf1[3]+0.1;
525 rf2[2]=rf2[1]+0.15; rf2[3]=rf2[2]+0.5; rf2[4]=rf2[3]+0.1;
529 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR", "AIR"};
531 = {"MF", "MF", "MF", "MF", "MF", "MF"};
533 = {"$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH"};
535 flukaGeom->Comment("1st part: Beam pipe lateral struture (left)");
536 flukaGeom->OnionCone(rf1, rf2, 6 , zstart, zvac1, posfluka, materialsA, fieldsA, cutsA);
537 for (i=0; i<7; i++) rf1[i]=rf2[i];
538 for (i=1; i<7; i++) rf2[i]=rf1[i]+dr11*TMath::Tan(thetaOpen1);
539 flukaGeom->OnionCone(rf1, rf2, 6 , zvac1, zvac1+dr11, posfluka, materialsA, fieldsA, cutsA);
540 flukaGeom->Cone(rc1, rf2[5], rc1, rc1+dr11, zvac1 , zvac1+dr11, posfluka,"AIR", "MF", "$SHH");
549 cpar0[0]=(zvac4-zvac3)/2;
551 cpar0[2]=cpar0[1]+dVacuS;
553 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(thetaOpenB);
554 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(thetaOpenB);
555 gMC->Gsvolu("YV12", "CONE", idtmed[kSteel], cpar0, 5);
556 Float_t r2V=cpar0[3];
560 cpar[1]=cpar0[1]+dTubeS;
561 cpar[2]=cpar0[1]+dTubeS+dInsuS;
562 cpar[3]=cpar0[3]+dTubeS;
563 cpar[4]=cpar0[3]+dTubeS+dInsuS;
564 gMC->Gsvolu("YI12", "CONE", idtmed[kInsulation], cpar, 5);
565 gMC->Gspos("YI12", 1, "YV12", 0., 0., 0., 0, "ONLY");
569 cpar[1]=cpar0[1]+dTubeS+dInsuS+dEnveS;
570 cpar[2]=cpar0[1]+dTubeS+dInsuS+dEnveS+dFreeS;
571 cpar[3]=cpar0[3]+dTubeS+dInsuS+dEnveS;
572 cpar[4]=cpar0[3]+dTubeS+dInsuS+dEnveS+dFreeS;
573 gMC->Gsvolu("YP12", "CONE", idtmed[kAir], cpar, 5);
574 gMC->Gspos("YP12", 1, "YV12", 0., 0., 0., 0, "ONLY");
577 gMC->Gspos("YV12", 1, "YMO1", 0., 0., dz, 0, "ONLY");
582 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR", "STEEL", "AIR"};
585 = {"MF", "MF", "MF", "MF", "MF", "MF", "MF"};
588 = {"$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH", "$SHH"};
594 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
595 rf1[5]=rf1[4]+dFreeS; rf1[6]=rf1[5]+dProtS; rf1[7]=r2;
597 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+dInsuS; rf2[4]=rf2[3]+dEnveS;
598 rf2[5]=rf2[4]+dFreeS; rf2[6]=rf2[5]+dProtS;
600 flukaGeom->Comment("1st part: Beam pipe lateral structure (right)");
601 flukaGeom->OnionCone(rf1, rf2, 8 , zvac3, zvac4, posfluka, materialsB, fieldsB, cutsB);
602 for (i=0; i<8; i++) rf2[i]=rf1[i];
603 for (i=1; i<7; i++) rf1[i]=rf2[i];
605 flukaGeom->OnionCone(rf1, rf2, 8 , zvac3-dr13, zvac3, posfluka, materialsB, fieldsB, cutsB);
611 // Between first and second bellow section
627 par2[9] = -dl+(zvac6-zvac4);
628 par2[10] = r2+(zvac6-zvac4-10.) * TMath::Tan(thetaOpen2);
631 par2[12] = -dl+(zvac6-zvac4);
633 par2[14] = zvac6*TMath::Tan(accMin);
635 // Start of Pb section
636 par2[15] = -dl+(zPb-zvac4);
637 par2[16] = r2+(zPb-zvac4-10.) * TMath::Tan(thetaOpen2);
638 par2[17] = zPb*TMath::Tan(accMin);
641 // end of cone following 2 deg line
642 par2[18] = -dl+(zConeE-zvac4);
643 par2[19] = r2+(zConeE-zvac4-10.) * TMath::Tan(thetaOpen2);
646 par2[21] = -dl+(zvac7-zvac4);
647 par2[22] = r2+(zvac7-zvac4-10.) * TMath::Tan(thetaOpen2);
651 gMC->Gsvolu("YGO2", "PCON", idtmed[kNiCuW+40], par2, 24);
655 Float_t rfvacu0[8], rfvacu1[8], rfvacu2[8], rfvacu3[8], rfvacu4[8], rfvacu5[8];
657 for (ifl=0; ifl<7; ifl++) {
658 rfluka1[ifl] = par2[4+3*ifl];
659 rfluka2[ifl] = par2[5+3*ifl]-dRSteel2;
660 rfluka3[ifl] = par2[5+3*ifl];
662 rfvacu4[ifl]=rfvacu5[0]+dTubeS;
663 rfvacu3[ifl]=rfvacu4[0]+dInsuS;
664 rfvacu2[ifl]=rfvacu3[0]+dEnveS;
665 rfvacu1[ifl]=rfvacu2[0]+dFreeS;
666 rfvacu0[ifl]=rfvacu1[0]+dProtS;
670 = {"VACUUM", "STEEL", "PIPEINSU", "STEEL", "AIR", "STEEL", "AIR", "NIW",
673 = {"MF", "MF", "MF", "MF", "MF", "MF", "MF", "MF", "MF", "MF", "MF"};
675 = {"$SHH","$SHH","$SHH","$SHH","$SHH","$SHH","$SHH", "$SHH","$SHH","$SHS", "$SHS"};
678 rf1[0]=0.; rf1[1]=rfvacu5[0]; rf1[2]=rfvacu4[0]; rf1[3]=rfvacu3[0];
679 rf1[4]=rfvacu2[0]; rf1[5]=rfvacu1[0]; rf1[6]=rfvacu0[0];
680 rf1[7]=rfluka1[0]; rf1[9]=R11-dRSteel1;
682 for (i=1; i<7; i++) rf2[i]=rf1[i]+4.*TMath::Tan(thetaOpenB);
684 rf2[9]=rf1[9]; rf2[10]=rf1[10];
686 rf2[8]=rf1[8]+4.*TMath::Tan(thetaOpenPb);
688 flukaGeom->Comment("2nd part: Beam pipe lateral struture (0)");
689 flukaGeom->OnionCone(rf1, rf2, 11 , zvac4, zvac4+4, posfluka, materials1, fields1, cuts1);
692 for (i=0; i<11; i++) rf1[i]=rf2[i];
694 rf2[i]=rf1[i]+20.*TMath::Tan(thetaOpenB);
696 rf2[8]=rf1[8]+20.*TMath::Tan(thetaOpenPb);
701 flukaGeom->Comment("2nd part: Beam pipe lateral struture (1)");
702 flukaGeom->OnionCone(rf1, rf2, 11 , zvac4+4, zvac4+24, posfluka, materials1, fields1, cuts1);
704 for (i=0; i<11; i++) rf1[i]=rf2[i];
706 rf2[i]=rf1[i]+(zvac6-zvac4-24.)*TMath::Tan(thetaOpenB);
707 rf2[7]=rf1[7]+(zvac6-zvac4-24.)*TMath::Tan(thetaOpen2);
708 rf2[8]=rf1[8]+(zvac6-zvac4-24.)*TMath::Tan(thetaOpenPb);
713 flukaGeom->Comment("2nd part: Beam pipe lateral struture (2)");
714 flukaGeom->OnionCone(rf1, rf2, 11 , zvac4+24, zvac6, posfluka, materials1, fields1, cuts1);
716 for (i=0; i<11; i++) rf1[i]=rf2[i];
718 rf2[i]=rf1[i]+4.*TMath::Tan(thetaOpenB);
719 rf2[7]=rf1[7]+4.*TMath::Tan(thetaOpen2);
721 rf2[8]=rf1[8]+4.*TMath::Tan(thetaOpenPb);
726 flukaGeom->Comment("2nd part: Beam pipe lateral struture (3)");
727 flukaGeom->OnionCone(rf1, rf2, 11 , zvac6, zvac6+4, posfluka, materials1, fields1, cuts1);
730 for (i=0; i<11; i++) rf1[i]=rf2[i];
732 rf2[i]=rf1[i]+(zPb-(zvac6-4.))*TMath::Tan(thetaOpenB);
733 rf2[7]=rf1[7]+(zPb-(zvac6-4.))*TMath::Tan(thetaOpen2);
735 rf2[8]=rf1[8]+(zPb-(zvac6-4.))*TMath::Tan(thetaOpenPb);
736 rf1[9]=(zvac6+4)*TMath::Tan(accMin)-dRSteel2;
737 rf2[9]=zPb*TMath::Tan(accMin)-dRSteel2;
740 flukaGeom->Comment("2nd part: Beam pipe lateral struture (4)");
741 flukaGeom->OnionCone(rf1, rf2, 11 , zvac6+4, zPb, posfluka, materials1, fields1, cuts1);
744 for (i=0; i<11; i++) rf1[i]=rf2[i];
746 rf2[i]=rf1[i]+(zConeE-zPb)*TMath::Tan(thetaOpenB);
747 rf2[7]=rf1[7]+(zConeE-zPb)*TMath::Tan(thetaOpen2);
749 rf2[8]=rf1[8]+(zConeE-zPb)*TMath::Tan(thetaOpenPb);
750 rf1[9]=zPb*TMath::Tan(accMin)-dRSteel2;
754 flukaGeom->Comment("2nd part: Beam pipe lateral struture (5)");
755 if (fPbCone) materials1[7] = "LEAD";
756 materials1[8]="LEAD";
757 flukaGeom->OnionCone(rf1, rf2, 11 , zPb, zConeE, posfluka, materials1, fields1, cuts1);
759 for (i=0; i<11; i++) rf1[i]=rf2[i];
761 rf2[i]=rf1[i]+(zvac7-zConeE)*TMath::Tan(thetaOpenB);
762 rf2[7]=rf1[7]+(zvac7-zConeE)*TMath::Tan(thetaOpen2);
765 rf2[8]=rf1[8]+(zvac7-zConeE)*TMath::Tan(thetaOpenPb);
770 flukaGeom->Comment("2nd part: Beam pipe lateral struture (6)");
771 flukaGeom->OnionCone(rf1, rf2, 10 , zConeE, zvac7, posfluka, materials1, fields1, cuts1);
772 // Steel envelope and recesses for station 3
773 flukaGeom->Comment("Steel envelope and recesses for station 3");
774 flukaGeom->Cylinder(rf1[9],rf1[10], zConeE, zch31, posfluka, materials1[9], fields1[9], cuts1[9]);
775 flukaGeom->Cylinder(rf1[9], rf1[10]-1, zch31, zch32, posfluka, materials1[9], fields1[9], cuts1[9]);
776 flukaGeom->Cylinder(rf1[10]-1, rf1[10], zch31, zch32, posfluka, "AIR", fields1[9], cuts1[9]);
777 flukaGeom->Cylinder(rf1[9], rf1[10], zch32, zvac7, posfluka, materials1[9], fields1[9], cuts1[9]);
779 Float_t r3V = rf2[1];
784 // Lead cone option replacing Tungsten
790 Float_t dlPb=(zvac7-zPb)/2.;
794 parPb[5] = zPb*TMath::Tan(accMin);
796 parPb[6] = -dlPb+(zConeE-zPb);
797 parPb[7] = parPb[4]+(zConeE-zPb)*TMath::Tan(thetaOpenPb);
801 parPb[10] = parPb[7]+(zvac7-zConeE)*TMath::Tan(thetaOpenPb);
804 Float_t rPbLast=parPb[10];
807 gMC->Gsvolu("YXO2", "PCON", idtmed[kPb], parPb, 12);
808 gMC->Gspos("YXO2", 1, "YGO2", 0., 0., (zPb-zvac4)/2., 0, "ONLY");
811 parPb[4] = r2+(zPb-zvac3) * TMath::Tan(thetaOpen2);
814 parPb[7] = r2+(zConeE-zvac3) * TMath::Tan(thetaOpen2);
815 parPb[8] = parPb[5]+(zConeE-zPb)*TMath::Tan(thetaOpenPb);
817 parPb[10] = r2+(zvac7-zvac3) * TMath::Tan(thetaOpen2);
818 parPb[11] = parPb[8]+(zvac7-zConeE)*TMath::Tan(thetaOpenPb);
820 gMC->Gsvolu("YYO2", "PCON", idtmed[iHeavy+40], parPb, 12);
821 gMC->Gspos("YYO2", 1, "YGO2", 0., 0., (zPb-zvac4)/2., 0, "ONLY");
823 for (i=4; i<23; i+=3) par2[i] = 0;
825 gMC->Gsvolu("YMO2", "PCON", idtmed[kVacuum+40], par2, 24);
826 gMC->Gspos("YGO2", 1, "YMO2", 0., 0., 0., 0, "ONLY");
828 gMC->Gspos("YMO2", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
834 tpar[0]=R11-dRSteel1;
837 gMC->Gsvolu("YS21", "TUBE", idtmed[kSteel], tpar, 3);
839 gMC->Gspos("YS21", 1, "YGO2", 0., 0., dz, 0, "ONLY");
842 tpar[0]=R21-dRSteel2;
844 tpar[2]=(zvac6-zvac5)/2.;
845 gMC->Gsvolu("YS22", "TUBE", idtmed[kSteel], tpar, 3);
847 gMC->Gspos("YS22", 1, "YGO2", 0., 0., dz, 0, "ONLY");
851 cpar[1]=R21-dRSteel2;
852 cpar[2]=zvac6 * TMath::Tan(accMin);
854 cpar[4]=cpar[2]+4.*TMath::Tan(accMin);
855 gMC->Gsvolu("YS23", "CONE", idtmed[kSteel], cpar, 5);
857 gMC->Gspos("YS23", 1, "YGO2", 0., 0., dz, 0, "ONLY");
860 cpar[0]=(zPb-zvac6-4.)/2;
862 cpar[4]=cpar[2]+2.*cpar[0]*TMath::Tan(accMin);
863 cpar[1]=cpar[2]-dRSteel2;
864 cpar[3]=cpar[4]-dRSteel2;
866 gMC->Gsvolu("YS24", "CONE", idtmed[kSteel], cpar, 5);
868 gMC->Gspos("YS24", 1, "YGO2", 0., 0., dz, 0, "ONLY");
872 cpar[0]=(zConeE-zPb)/2;
874 cpar[4]=cpar[2]+2.*cpar[0]*TMath::Tan(accMin);
875 cpar[1]=cpar[2]-dRSteel2;
876 cpar[3]=cpar[4]-dRSteel2;
878 gMC->Gsvolu("YS25", "CONE", idtmed[kSteel], cpar, 5);
880 gMC->Gspos("YS25", 1, "YXO2", 0., 0., dz, 0, "ONLY");
885 tpar[2]=(zvac7-zConeE)/2.;
887 gMC->Gsvolu("YS26", "TUBE", idtmed[kSteel], tpar, 3);
889 gMC->Gspos("YS26", 1, "YXO2", 0., 0., dz, 0, "ONLY");
892 // Recess in steel for station 3
896 tpar[2]=(zch32-zch31)/2.;
897 gMC->Gsvolu("YS27", "TUBE", idtmed[kAir], tpar, 3);
898 dz+=(tpar[2]+zch31-zConeE);
900 gMC->Gspos("YS27", 1, "YS26", 0., 0., dz, 0, "ONLY");
904 // 2nd section: vacuum system
906 cpar0[0]=(zvac7-zvac4)/2;
909 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(thetaOpenB);
910 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(thetaOpenB);
911 gMC->Gsvolu("YV21", "CONE", idtmed[kSteel+40], cpar0, 5);
915 cpar[1]=cpar0[1]+dTubeS;
916 cpar[2]=cpar0[1]+dTubeS+dInsuS;
917 cpar[3]=cpar0[3]+dTubeS;
918 cpar[4]=cpar0[3]+dTubeS+dInsuS;
919 gMC->Gsvolu("YI21", "CONE", idtmed[kInsulation+40], cpar, 5);
920 gMC->Gspos("YI21", 1, "YV21", 0., 0., 0., 0, "ONLY");
923 cpar[1]=cpar0[1]+dTubeS+dInsuS+dEnveS;
924 cpar[2]=cpar0[1]+dTubeS+dInsuS+dEnveS+dFreeS;
925 cpar[3]=cpar0[3]+dTubeS+dInsuS+dEnveS;
926 cpar[4]=cpar0[3]+dTubeS+dInsuS+dEnveS+dFreeS;
927 gMC->Gsvolu("YP21", "CONE", idtmed[kAir+40], cpar, 5);
928 gMC->Gspos("YP21", 1, "YV21", 0., 0., 0., 0, "ONLY");
931 gMC->Gspos("YV21", 1, "YMO2", 0., 0., dz, 0, "ONLY");
935 // Third Section: Bellows and Flange
943 par3[4] = r2+(zvac7-zvac3) * TMath::Tan(thetaOpen2);
947 par3[7] = par3[4]+dr21;
950 par3[9] = par3[6]+dB2;
954 par3[12] = par3[9]+dr22;
955 par3[13] = par3[10]+dr22;
958 par3[15] = par3[12]+dF2;
962 par3[18] = par3[15]+dr22;
963 par3[19] = par3[16]-dr22;
966 par3[21] = par3[18]+dB2;
970 par3[24] = par3[21]+dr23;
977 gMC->Gsvolu("YGO3", "PCON", idtmed[iHeavy+40], par3, 27);
981 for (ifl=0; ifl<8; ifl++) {
982 zfluka[ifl]=par3[3+3*ifl]+dl+zvac7;
983 rflukaPb[ifl]= 15.+(zfluka[ifl]-zvac4)*TMath::Tan(thetaOpenPb);
984 rfluka1[ifl] = par3[4+3*ifl];
985 rfluka2[ifl] = par3[5+3*ifl]-4.;
986 rfluka3[ifl] = par3[5+3*ifl];
989 for (i=0; i<8; i++) rfluka0[i]=rBox;
990 rfluka0[0]=0.; rfluka0[7]=0.;
992 flukaGeom->Comment("3rd part: Shield");
993 flukaGeom->PolyCone(rflukaPb, rfluka2, zfluka, 8, posfluka, "LEAD", "MF", "$SHS");
996 flukaGeom->PolyCone(rfluka1, rflukaPb, zfluka, 8, posfluka, "LEAD", "MF", "$SHS");
998 flukaGeom->PolyCone(rfluka1, rflukaPb, zfluka, 8, posfluka, "NIW", "MF", "$SHS");
1001 flukaGeom->Comment("3rd part: Steel envelope");
1002 flukaGeom->PolyCone(rfluka2, rfluka3, zfluka, 8, posfluka, "STEEL", "MF", "$SHS");
1003 flukaGeom->Comment("3rd part: Vacuum");
1004 flukaGeom->PolyCone(rfluka0+1, rfluka1+1, zfluka+1, 6, posfluka, "AIR", "MF", "$SHH");
1005 flukaGeom->Comment("3rd part: Beam Pipe (left)");
1007 rf1[0]=0.; rf2[0]=0.;
1009 rf2[1] = rf1[1]+dr21*TMath::Tan(thetaOpenB);
1010 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
1011 rf1[5]=rf1[4]+dFreeS; rf1[6]= rf1[5]+dProtS; rf1[7]=par3[4];
1012 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+dInsuS; rf2[4]=rf2[3]+dEnveS;
1013 rf2[5]=rf2[4]+dFreeS; rf2[6]=rf2[5]+dProtS; rf2[7]=rf1[7]+dr21;
1014 flukaGeom->OnionCone(rf1, rf2, 8 , zvac7, zvac7+dr21, posfluka, materialsB, fieldsB, cutsB);
1017 flukaGeom->Comment("3rd part: Beam Pipe (right)");
1020 rf1[1] = par3[25]-dr23;
1021 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
1022 rf1[5]=rf1[4]+dFreeS; rf1[6]=par3[25];
1023 flukaGeom->OnionCylinder(rf1, 7 , zvac9-dr23, zvac9, posfluka, materialsA, fieldsA, cutsA);
1026 flukaGeom->Comment("First Bellow");
1029 for (i=0; i<7; i++) {
1031 flukaGeom->Cylinder(0., rB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1032 flukaGeom->Cylinder(rB2, rB2+hB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1036 flukaGeom->Cylinder(0., rB2+hB2-eB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1037 flukaGeom->Cylinder(rB2+hB2-eB2, rB2+hB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1040 flukaGeom->Cylinder(0., rB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1041 flukaGeom->Cylinder(rB2, rB2+hB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1044 flukaGeom->Cylinder(0., rB2, z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1045 flukaGeom->Cylinder(rB2, rB2+eB2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1046 flukaGeom->Cylinder(rB2+eB2, rB2+hB2, z1, z2, posfluka, "AIR", "MF", "$SHH");
1049 flukaGeom->Cylinder(rB2+hB2, rB2+hB2+0.2, zvac7+dr21, z1, posfluka, "AIR", "MF", "$SHH");
1050 flukaGeom->Cylinder(rB2+hB2+0.2, rBox, zvac7+dr21, z1, posfluka, "AIR", "MF", "$SHH");
1054 flukaGeom->Comment("Second Bellow");
1056 for (i=0; i<7; i++) {
1058 flukaGeom->Cylinder(0., rB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1059 flukaGeom->Cylinder(rB2, rB2+hB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1062 flukaGeom->Cylinder(0., rB2+hB2-eB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1063 flukaGeom->Cylinder(rB2+hB2-eB2, rB2+hB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1066 flukaGeom->Cylinder(0., rB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1067 flukaGeom->Cylinder(rB2, rB2+hB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1070 flukaGeom->Cylinder(0., rB2, z2, z1, posfluka, "VACUUM", "MF", "$SHH");
1071 flukaGeom->Cylinder(rB2, rB2+eB2, z2, z1, posfluka, "STEEL", "MF", "$SHH");
1072 flukaGeom->Cylinder(rB2+eB2, rB2+hB2, z2, z1, posfluka, "AIR", "MF", "$SHH");
1075 flukaGeom->Cylinder(rB2+hB2, rB2+hB2+0.2, z1, zvac9-dr23, posfluka, "AIR", "MF", "$SHH");
1076 flukaGeom->Cylinder(rB2+hB2+0.2, rBox, z1, zvac9-dr23, posfluka, "AIR", "MF", "$SHH");
1079 flukaGeom->Comment("Flange");
1084 flukaGeom->Cylinder(0.,rF2-2., z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1085 flukaGeom->Cylinder(rF2-2., rF2, z1, z2, posfluka, "STEEL", "MF", "$SHH");
1086 flukaGeom->Cylinder(rF2, rF2+0.02 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1087 flukaGeom->Cylinder(rF2+0.02, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1090 flukaGeom->Cylinder(0.,rB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1091 flukaGeom->Cylinder(rB2, rF2 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1092 flukaGeom->Cylinder(rF2, rF2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1093 flukaGeom->Cylinder(rF2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1096 flukaGeom->Cylinder(0.,rB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1097 flukaGeom->Cylinder(rB2, rB2+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1098 flukaGeom->Cylinder(rB2+0.1, rB2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1099 flukaGeom->Cylinder(rB2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1103 flukaGeom->Cylinder(0.,rB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1104 flukaGeom->Cylinder(rB2, rF2 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1105 flukaGeom->Cylinder(rF2, rF2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1106 flukaGeom->Cylinder(rF2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1109 flukaGeom->Cylinder(0.,rB2 , z1, z2, posfluka, "VACUUM", "MF", "$SHH");
1110 flukaGeom->Cylinder(rB2, rB2+0.1 , z1, z2, posfluka, "STEEL", "MF", "$SHH");
1111 flukaGeom->Cylinder(rB2+0.1, rB2+0.2 , z1, z2, posfluka, "AIR", "MF", "$SHH");
1112 flukaGeom->Cylinder(rB2+0.2, rBox , z1, z2, posfluka, "AIR", "MF", "$SHH");
1119 parPb[3] = parPb[1]+2.*dl*TMath::Tan(thetaOpenPb);
1121 gMC->Gsvolu("YXO3", "CONE", idtmed[kPb], parPb, 5);
1122 gMC->Gspos("YXO3", 1, "YGO3", 0., 0., 0., 0, "ONLY");
1124 for (i=4; i<26; i+=3) par3[i] = 0;
1126 gMC->Gsvolu("YMO3", "PCON", idtmed[kVacuum+40], par3, 27);
1127 gMC->Gspos("YGO3", 1, "YMO3", 0., 0., 0., 0, "ONLY");
1134 gMC->Gsvolu("YS31", "TUBE", idtmed[kSteel], tpar, 3);
1135 gMC->Gspos("YS31", 1, "YXO3", 0., 0., 0., 0, "ONLY");
1137 gMC->Gspos("YMO3", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
1141 // 3rd section: vacuum system
1149 gMC->Gsvolu("YB21", "TUBE", idtmed[kSteel+40], tpar, 3);
1152 tpar[0]=rB2+hB2-eB2;
1154 tpar[2]=(lB2/2.-2.*eB2)/2.;
1155 gMC->Gsvolu("YB22", "TUBE", idtmed[kSteel+40], tpar, 3);
1161 gMC->Gsvolu("YB23", "TUBE", idtmed[kSteel+40], tpar, 3);
1168 gMC->Gsvolu("YBU2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1171 gMC->Gspos("YB23", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1174 gMC->Gspos("YB21", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1177 gMC->Gspos("YB22", 1, "YBU2", 0., 0., dz, 0, "ONLY");
1180 gMC->Gspos("YB21", 2, "YBU2", 0., 0., dz, 0, "ONLY");
1183 gMC->Gspos("YB23", 2, "YBU2", 0., 0., dz, 0, "ONLY");
1189 gMC->Gsvolu("YBM2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1192 for (i=0; i<7; i++) {
1193 gMC->Gspos("YBU2", i+1 , "YBM2", 0., 0.,dz , 0, "ONLY");
1197 dz=-dl+dr21+tpar[2];
1198 gMC->Gspos("YBM2", 1, "YMO3", 0., 0., dz, 0, "ONLY");
1201 gMC->Gspos("YBM2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1209 gMC->Gsvolu("YFM2", "TUBE", idtmed[kVacuum+40], tpar, 3);
1214 gMC->Gsvolu("YF21", "TUBE", idtmed[kSteel+40], tpar, 3);
1215 gMC->Gspos("YF21", 1, "YFM2", 0., 0., 0., 0, "ONLY");
1220 gMC->Gsvolu("YF22", "TUBE", idtmed[kSteel+40], tpar, 3);
1222 gMC->Gspos("YF22", 1, "YFM2", 0., 0., dz, 0, "ONLY");
1224 gMC->Gspos("YF22", 2, "YFM2", 0., 0., dz, 0, "ONLY");
1227 gMC->Gspos("YFM2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1231 // pipe between flange and bellows
1234 tpar[2]=2.*(dB2+dr22-7.*lB2)/4.;
1235 gMC->Gsvolu("YPF2", "TUBE", idtmed[kSteel+40], tpar, 3);
1236 dz=dr21/2.-dr23/2.-dF2/2.-tpar[2];
1237 gMC->Gspos("YPF2", 1, "YMO3", 0., 0., dz, 0, "ONLY");
1238 dz=dr21/2.-dr23/2.+dF2/2.+tpar[2];
1239 gMC->Gspos("YPF2", 2, "YMO3", 0., 0., dz, 0, "ONLY");
1244 // 4th section: rear shield and closing cone
1249 dl=(zvac12-zvac9)/2.;
1255 par4[6] = -dl+dHorZ;
1259 par4[9] = -dl+(zvac10-zvac9);
1260 par4[10] = r3+(zvac10-zvac9-dHorZ) * TMath::Tan(thetaOpen3);
1264 par4[13] = par4[10];
1267 par4[15] = -dl+(zvac11-zvac9);
1268 par4[16] = r3+(zvac11-zvac9-dHorZ) * TMath::Tan(thetaOpen3);
1271 par4[18] = par4[15];
1272 par4[19] = par4[16];
1275 par4[21] = -dl+(zvac12-zvac9);
1279 gMC->Gsvolu("YGO4", "PCON", idtmed[iHeavy+40], par4, 24);
1281 parPb[0] = (zvac10-zvac9)/2.;
1282 parPb[1] = parPb[3];
1284 parPb[3] = parPb[1]+2.*parPb[0]*TMath::Tan(thetaOpenPb);
1286 gMC->Gsvolu("YXO4", "CONE", idtmed[kPb], parPb, 5);
1287 gMC->Gspos("YXO4", 1, "YGO4", 0., 0., -dl+parPb[0], 0, "ONLY");
1289 parPb[0] = (zvac12-zvac10)/2.;
1290 parPb[1] = parPb[3];
1292 parPb[3] = parPb[1]+2.*parPb[0]*TMath::Tan(thetaOpenPb);
1294 gMC->Gsvolu("YXO5", "CONE", idtmed[kPb], parPb, 5);
1295 gMC->Gspos("YXO5", 1, "YGO4", 0., 0., -dl+(zvac10-zvac9)+parPb[0], 0, "ONLY");
1297 for (i=4; i<23; i+=3) par4[i] = 0;
1299 gMC->Gsvolu("YMO4", "PCON", idtmed[kVacuum+40], par4, 24);
1300 gMC->Gspos("YGO4", 1, "YMO4", 0., 0., 0., 0, "ONLY");
1305 gMC->Gspos("YMO4", 1, "YMOT", 0., 0., dZ, 0, "ONLY");
1308 // Closing concrete cone
1310 cpar[0]=(zvac12-zvac11)/2.;
1311 cpar[1] = r3+(zvac11-zvac9-dHorZ) * TMath::Tan(thetaOpen3);
1312 cpar[2] = cpar[1]+0.001;
1315 gMC->Gsvolu("YCC4", "CONE", idtmed[kConcrete+40], cpar, 5);
1317 gMC->Gspos("YCC4", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1321 Float_t r10=r3+(zvac10-zvac9-dHorZ) * TMath::Tan(thetaOpen3);
1322 Float_t r11=cpar[1];
1324 Float_t rPb0=15.+(zvac9-zvac4)* TMath::Tan(thetaOpenPb);
1325 Float_t rPb1=15.+(zvac9+dHorZ-zvac4)* TMath::Tan(thetaOpenPb);
1326 Float_t rPb2=15.+(zvac10-zvac4)* TMath::Tan(thetaOpenPb);
1327 flukaGeom->Comment("4th part: Shield");
1329 flukaGeom->Cone(rPb0, rPb1, 26.0, 26.0, zvac9, zvac9+dHorZ,
1330 posfluka, "LEAD", "NF", "$SHH");
1332 flukaGeom->Cone(r3, r3, rPb0, rPb1, zvac9, zvac9+dHorZ,
1333 posfluka, "LEAD", "NF", "$SHS");
1335 flukaGeom->Cone(r3, r3, rPb0, rPb1, zvac9, zvac9+dHorZ,
1336 posfluka, "NIW", "NF", "$SHS");
1339 flukaGeom->Cone(rPb1, rPb2, 26.0, 26.0, zvac9+dHorZ, zvac10,
1340 posfluka, "LEAD", "NF", "$SHH");
1342 flukaGeom->Cone(r3, r10, rPb1, rPb2, zvac9+dHorZ, zvac10,
1343 posfluka, "LEAD", "NF", "$SHS");
1345 flukaGeom->Cone(r3, r10, rPb1, rPb2, zvac9+dHorZ, zvac10,
1346 posfluka, "NIW", "NF", "$SHS");
1351 rPb2=15.+(zvac11-zvac4)* TMath::Tan(thetaOpenPb);
1352 flukaGeom->Cone(rPb1, rPb2, 30.0, 30.0, zvac10, zvac11,
1353 posfluka, "LEAD", "NF", "$SHH");
1355 flukaGeom->Cone(r10, r11, rPb1, rPb2, zvac10, zvac11,
1356 posfluka, "LEAD", "NF", "$SHH");
1358 flukaGeom->Cone(r10, r11, rPb1, rPb2, zvac10, zvac11,
1359 posfluka, "NIW", "NF", "$SHH");
1362 flukaGeom->Cylinder( rPb2, 30.0, zvac11, zvac12,
1363 posfluka, "LEAD", "NF", "$SHH");
1365 flukaGeom->Cylinder( cpar[1], rPb2, zvac11, zvac12,
1366 posfluka, "LEAD", "NF", "$SHH");
1368 flukaGeom->Cylinder( cpar[1], rPb2, zvac11, zvac12,
1369 posfluka, "NIW", "NF", "$SHH");
1372 flukaGeom->Comment("4th part: Steel Envelope");
1373 flukaGeom->Cylinder(26.0, 30., zvac9, zvac10, posfluka, "STEEL", "NF", "$SHH");
1374 flukaGeom->Comment("4th part: Closing Cone");
1375 flukaGeom->Cone(cpar[1]-0.1, cpar[3], cpar[1], cpar[1], zvac11, zvac12,
1376 posfluka, "PORTLAND", "NF", "$SHH");
1377 flukaGeom->Comment("4th part: VACUUM");
1378 flukaGeom->Cone(0., 0., cpar[1]-0.1, cpar[3], zvac11, zvac12,
1379 posfluka, "VACUUM", "NF", "$SHH");
1389 tpar[2]=(zvac10-zvac9)/2.;
1390 gMC->Gsvolu("YS41", "TUBE", idtmed[kSteel], tpar, 3);
1392 gMC->Gspos("YS41", 1, "YXO4", 0., 0., 0., 0, "ONLY");
1398 gMC->Gsvolu("YS42", "TUBE", idtmed[kSteel], tpar, 3);
1400 gMC->Gspos("YS42", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1403 tpar[0]=R41-dRSteel2;
1405 tpar[2]=(zvac11-zvac10)/2.;
1406 gMC->Gsvolu("YS43", "TUBE", idtmed[kSteel], tpar, 3);
1408 gMC->Gspos("YS43", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1414 tpar[2]=(zvac11-zvac10)/2.;
1415 gMC->Gsvolu("YPBI", "TUBE", idtmed[kPb+40], tpar, 3);
1417 gMC->Gspos("YPBI", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1421 tpar[2]=(zvac11-zvac10)/2.;
1422 gMC->Gsvolu("YPBO", "TUBE", idtmed[kPb], tpar, 3);
1423 gMC->Gspos("YPBO", 1, "YPBI", 0., 0., 0., 0, "ONLY");
1431 tpar[2]=(zvac12-zvac11)/2.;
1432 gMC->Gsvolu("YFEI", "TUBE", idtmed[kFe+40], tpar, 3);
1434 gMC->Gspos("YFEI", 1, "YGO4", 0., 0., dz, 0, "ONLY");
1439 gMC->Gsvolu("YFEO", "TUBE", idtmed[kFe], tpar, 3);
1440 dz=-(zvac12-zvac11)/2.+tpar[2];
1441 gMC->Gspos("YFEO", 1, "YFEI", 0., 0., dz, 0, "ONLY");
1448 gMC->Gsvolu("YAEM", "TUBE", idtmed[kAir], tpar, 3);
1452 gMC->Gsvolu("YFEM", "TUBE", idtmed[kFe], tpar, 3);
1453 gMC->Gspos("YFEM", 1, "YAEM", 0., 0., 0., 0, "ONLY");
1458 gMC->Gspos("YAEM", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1463 // 4th section: vacuum system
1465 // up to closing cone
1468 cpar0[0]=(zvac11-zvac9)/2;
1469 cpar0[1]=r3V-dVacuS;
1471 cpar0[3]=cpar0[1]+2.*cpar0[0]*TMath::Tan(thetaOpen3);
1472 cpar0[4]=cpar0[2]+2.*cpar0[0]*TMath::Tan(thetaOpen3);
1473 gMC->Gsvolu("YV31", "CONE", idtmed[kSteel+40], cpar0, 5);
1477 cpar[1]=cpar0[1]+dTubeS;
1478 cpar[2]=cpar0[1]+dTubeS+dInsuS;
1479 cpar[3]=cpar0[3]+dTubeS;
1480 cpar[4]=cpar0[3]+dTubeS+dInsuS;
1481 gMC->Gsvolu("YI31", "CONE", idtmed[kInsulation+40], cpar, 5);
1482 gMC->Gspos("YI31", 1, "YV31", 0., 0., 0., 0, "ONLY");
1485 cpar[1]=cpar0[2]-dProtS-dFreeS;
1486 cpar[2]=cpar0[2]-dProtS;
1487 cpar[3]=cpar0[4]-dProtS-dFreeS;
1488 cpar[4]=cpar0[4]-dProtS;
1489 gMC->Gsvolu("YP31", "CONE", idtmed[kVacuum+40], cpar, 5);
1490 gMC->Gspos("YP31", 1, "YV31", 0., 0., 0., 0, "ONLY");
1493 gMC->Gspos("YV31", 1, "YMO4", 0., 0., dz, 0, "ONLY");
1497 flukaGeom->Comment("4th part: Beam pipe lateral structure");
1498 for (i=0; i<7; i++) fieldsA[i] = "NF";
1500 rf1[0]=0.; rf2[0]=0.;
1502 rf1[1]=cpar0[1]; rf2[1]=rf1[1]+dHorZ*TMath::Tan(thetaOpen3);
1504 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
1505 rf1[5]=rf1[4]+dFreeS; rf1[6]=r3;
1507 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+dInsuS; rf2[4]=rf2[3]+dEnveS;
1508 rf2[5]=rf2[4]+dFreeS; rf2[6]=r3;
1510 flukaGeom->OnionCone(rf1, rf2, 7 , zvac9 , zvac9+dHorZ, posfluka, materialsA, fieldsA, cutsA);
1512 rf1[0]=0.; rf2[0]=0.;
1514 rf1[1]=rf2[1]; rf2[1]=rf1[1]+(zvac10-zvac9-dHorZ)*TMath::Tan(thetaOpen3);
1516 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
1517 rf1[5]=rf1[4]+dFreeS; rf1[6]=r3;
1519 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+dInsuS; rf2[4]=rf2[3]+dEnveS;
1520 rf2[5]=rf2[4]+dFreeS; rf2[6]=r10;
1523 flukaGeom->OnionCone(rf1, rf2, 7 , zvac9+dHorZ, zvac10, posfluka, materialsA, fieldsA, cutsA);
1525 rf1[0]=0.; rf2[0]=0.;
1526 rf1[1]=rf2[1]; rf2[1]=rf1[1]+(zvac11-zvac10)*TMath::Tan(thetaOpen3);
1528 rf1[2]=rf1[1]+dTubeS; rf1[3]=rf1[2]+dInsuS; rf1[4]=rf1[3]+dEnveS;
1529 rf1[5]=rf1[4]+dFreeS; rf1[6]=r10;
1530 rf2[2]=rf2[1]+dTubeS; rf2[3]=rf2[2]+dInsuS; rf2[4]=rf2[3]+dEnveS;
1531 rf2[5]=rf2[4]+dFreeS; rf2[6]=r11;
1533 flukaGeom->OnionCone(rf1, rf2, 7 , zvac10, zvac11, posfluka, materialsA, fieldsA, cutsA);
1539 cpar0[0]=(zvac12-zvac11)/2;
1540 cpar0[1]=r3V-dVacuS+(zvac11-zvac9)*TMath::Tan(thetaOpen3);
1541 cpar0[2]=r3V +(zvac11-zvac9)*TMath::Tan(thetaOpen3);
1544 gMC->Gsvolu("YV32", "CONE", idtmed[kSteel+40], cpar0, 5);
1548 cpar[1]=cpar0[1]+dTubeS;
1549 cpar[2]=cpar0[1]+dTubeS+dInsuS;
1550 cpar[3]=cpar0[3]+dTubeS;
1551 cpar[4]=cpar0[3]+dTubeS+dInsuS;
1552 gMC->Gsvolu("YI32", "CONE", idtmed[kInsulation+40], cpar, 5);
1553 gMC->Gspos("YI32", 1, "YV32", 0., 0., 0., 0, "ONLY");
1556 cpar[1]=cpar0[2]-dProtS-dFreeS;
1557 cpar[2]=cpar0[2]-dProtS;
1558 cpar[3]=cpar0[4]-dProtS-dFreeS;
1559 cpar[4]=cpar0[4]-dProtS;
1560 gMC->Gsvolu("YP32", "CONE", idtmed[kVacuum+40], cpar, 5);
1561 gMC->Gspos("YP32", 1, "YV32", 0., 0., 0., 0, "ONLY");
1564 gMC->Gspos("YV32", 1, "YMO4", 0., 0., dz, 0, "ONLY");
1567 // MUON trigger wall
1571 tpar[2] = (zFilterOut - zFilterIn) / 2.;
1572 gMC->Gsvolu("YFIM", "TUBE", idtmed[kFe+40], tpar, 3);
1573 dz = (zFilterIn + zFilterOut) / 2.;
1575 gMC->Gsvolu("YFII","TUBE", idtmed[kFe], tpar, 3);
1576 gMC->Gspos("YFII", 1, "YFIM", 0., 0., 0., 0, "ONLY");
1577 gMC->Gspos("YFIM", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1579 // Shielding close to chamber
1582 cpar[0]=(zch11-zRear)/2.;
1584 cpar[2]=zRear*TMath::Tan(accMin);
1586 cpar[4]=(zRear+2.*cpar[0])*TMath::Tan(accMin);
1587 gMC->Gsvolu("YCS1", "CONE", idtmed[kNiCuW], cpar, 5);
1589 gMC->Gspos("YCS1", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1591 cpar[0]=(zvac4-zch12)/2.;
1593 cpar[2]=zch12*TMath::Tan(accMin);
1595 cpar[4]=(zch12+2.*cpar[0])*TMath::Tan(accMin);
1596 gMC->Gsvolu("YCS3", "CONE", idtmed[kNiCuW], cpar, 5);
1598 gMC->Gspos("YCS3", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1603 cpar[0]=(zch12-zch11)/2.;
1608 gMC->Gsvolu("YCS2", "CONE", idtmed[kAir], cpar, 5);
1610 gMC->Gspos("YCS2", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1619 gMC->Gsvolu("YCR0", "TUBS", idtmed[kNiCuW], ptubs, 0);
1622 AliMatrix(idrotm[1701],90., 0., 90., 90., 0., 0.);
1623 AliMatrix(idrotm[1702],90., 90., 90., 180., 0., 0.);
1624 AliMatrix(idrotm[1703],90., 180., 90., 270., 0., 0.);
1625 AliMatrix(idrotm[1704],90., 270., 90., 0., 0., 0.);
1632 gMC->Gsposp("YCR0", 1, "YCS2", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1633 gMC->Gsposp("YCR0", 2, "YCS2", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1639 gMC->Gsposp("YCR0", 3, "YCS2", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1640 gMC->Gsposp("YCR0", 4, "YCS2", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1646 gMC->Gsposp("YCR0", 5, "YCS2", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1647 gMC->Gsposp("YCR0", 6, "YCS2", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1653 gMC->Gsposp("YCR0", 7, "YCS2", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1654 gMC->Gsposp("YCR0", 8, "YCS2", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1660 cpar[0]=(zch21-zvac4)/2.;
1662 cpar[2]=zvac4*TMath::Tan(accMin);
1664 cpar[4]=(zvac4+2.*cpar[0])*TMath::Tan(accMin);
1665 gMC->Gsvolu("YCS4", "CONE", idtmed[kNiCuW], cpar, 5);
1667 gMC->Gspos("YCS4", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1669 cpar[0]=(zvac6-zch22)/2.;
1671 cpar[2]=zch22*TMath::Tan(accMin);
1673 cpar[4]=(zch22+2.*cpar[0])*TMath::Tan(accMin);
1674 gMC->Gsvolu("YCS6", "CONE", idtmed[kNiCuW], cpar, 5);
1676 gMC->Gspos("YCS6", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1680 cpar[0]=(zch22-zch21)/2.;
1685 gMC->Gsvolu("YCS5", "CONE", idtmed[kAir], cpar, 5);
1687 gMC->Gspos("YCS5", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1694 gMC->Gsvolu("YCR1", "TUBS", idtmed[kNiCuW], ptubs, 0);
1700 gMC->Gsposp("YCR1", 1, "YCS5", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1701 gMC->Gsposp("YCR1", 2, "YCS5", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1707 gMC->Gsposp("YCR1", 3, "YCS5", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1708 gMC->Gsposp("YCR1", 4, "YCS5", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1714 gMC->Gsposp("YCR1", 5, "YCS5", 0., 0., dz, idrotm[1701], "ONLY", ptubs, 5);
1715 gMC->Gsposp("YCR1", 6, "YCS5", 0., 0., dz, idrotm[1703], "ONLY", ptubs, 5);
1721 gMC->Gsposp("YCR1", 7, "YCS5", 0., 0., dz, idrotm[1702], "ONLY", ptubs, 5);
1722 gMC->Gsposp("YCR1", 8, "YCS5", 0., 0., dz, idrotm[1704], "ONLY", ptubs, 5);
1729 flukaGeom->Cone(R11, R11, -1., -1.,
1730 zRear, zch11, posfluka,"NIW", "MF", "$SHS");
1732 flukaGeom->Cone(R11, R11, -1., -1.,
1733 zch11, zch12, posfluka,"AIR", "MF", "$SHS");
1735 flukaGeom->Cone(R11, R11, -1., -1.,
1736 zch12, zvac4, posfluka,"NIW", "MF", "$SHS");
1738 flukaGeom->Cone(R21, R21, -1., -1.,
1739 zvac4, zch21, posfluka,"NIW", "MF", "$SHS");
1740 flukaGeom->Cone(R21, R21, -1., -1.,
1741 zch21, zch22, posfluka,"AIR", "MF", "$SHS");
1742 flukaGeom->Cone(R21, R21, -1., -1.,
1743 zch22, zvac6, posfluka,"NIW", "MF", "$SHS");
1746 flukaGeom->Finish();
1766 par0[8] = 30.+(zch31-zConeE)*TMath::Tan(thetaOpenPbO);
1770 par0[11] = par0[8]-1.;
1775 par0[14] = par0[11];
1779 par0[ 5] = 30.+(zch32-zConeE)*TMath::Tan(thetaOpenPbO);
1784 par0[ 8] = 30.+(zch41-zConeE)*TMath::Tan(thetaOpenPbO);
1792 par0[14] = par0[11];
1796 par0[17] = 30.+(zch42-zConeE)*TMath::Tan(thetaOpenPbO);
1801 par0[20] = 30.+(zch51-zConeE)*TMath::Tan(thetaOpenPbO);
1805 par0[23] = 37.5; // recess erice2000
1809 par0[26] = par0[23];
1813 par0[29] = 30.+(zch52-zConeE)*TMath::Tan(thetaOpenPbO);
1815 par0[30] = zFilterIn;
1817 par0[32] = par0[29];
1819 gMC->Gsvolu("YOPB", "PCON", idtmed[kPb], par0, 33);
1821 gMC->Gspos("YOPB", 1, "ALIC", 0., 0., dz, 0, "ONLY");
1825 void AliSHILvF::Init()
1828 // Initialise the muon shield after it has been built
1833 for(i=0;i<35;i++) printf("*");
1834 printf(" SHILvF_INIT ");
1835 for(i=0;i<35;i++) printf("*");
1838 // Here the SHIL initialisation code (if any!)
1839 for(i=0;i<80;i++) printf("*");