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25 f9daq 1
#include "include/guide.h"
2
#include "src/raySimulator.cpp"
3
 
4
#include "TFile.h"
5
#include "TPolyMarker3D.h"
6
#include "TCanvas.h"
7
 
8
//extern int show_3d;
9
//extern int show_data;
10
 
11
// Set the simulation parameters
70 f9daq 12
void showVisual(int b) {show_3d = b;}
13
void showData(int b) {show_data = b;}
25 f9daq 14
 
72 f9daq 15
// Set the initial detector parameters (a, b, d, activeDetector, n1, n2, n3, gap, badCoupling)
16
DetectorParameters parameters(3.0, 5.0, 3.0, 3.0, 1, 1.53, 1.46, TVector3(0.3, 0, 0), false);
70 f9daq 17
// Print the detector parameters
18
void getParameters();
25 f9daq 19
 
20
//void SetLGType(int in = 1, int side = 1, int out = 0)
73 f9daq 21
//{detector->SetLGType(in, side, out);}
25 f9daq 22
 
70 f9daq 23
void setLG(double SiPM0 = 3.0, double b0 = 5.0, double d0 = 3.0, double n1 = 1.0, double n2 = 1.53, double n3 = 1.46)
73 f9daq 24
{ parameters.setGuide(SiPM0, b0, d0);
25
parameters.setIndices(n1, n2, n3); }
26
 
70 f9daq 27
void setGap(double x_gap0 = 0.3, double y_gap0 = 0.0, double z_gap0 = 0.0)
73 f9daq 28
{ parameters.setGap(x_gap0, y_gap0, z_gap0); }
29
 
70 f9daq 30
void setGlass(double glassOn, double glassD)
73 f9daq 31
{ parameters.setGlass(glassOn, glassD); };
25 f9daq 32
 
70 f9daq 33
void setPlate(int plateOn = 1, double plateWidth = 1)
73 f9daq 34
{ parameters.setPlate(plateOn, plateWidth); }
35
 
70 f9daq 36
void setFresnel(int fresnel = 1) { parameters.setFresnel(fresnel); }
25 f9daq 37
 
70 f9daq 38
// Refractive Indices
39
// n1 - around light guide - air
40
// n2 - light guide (plate) material - k9 glass
41
// n3 - the material at the exit - optical grease, epoxy, air, etc.
42
void setIndices(double n1, double n2, double n3) {parameters.setIndices(n1, n2, n3);}
43
 
25 f9daq 44
int save_ary = 0;
45
//------------------------------------------------------------------------------------------
46
void Help()
47
{
73 f9daq 48
  printf("void SetCenter(x, y, z)\n");
49
  printf("void SetLGType(in, side, out)\n");
50
  printf("SURF_DUMMY 0, ");
51
  printf("SURF_REFRA 1, ");
52
  printf("SURF_REFLE 2, ");
53
  printf("SURF_TOTAL 3, ");
54
  printf("SURF_IMPER 4\n");
55
  printf("void SetLG(SiPM0, M0, d0, n10, n20, n30, R0)\n");
56
  printf("void SetR(R0)\n");
57
  printf("void SetGlass(glass_on0, glass_d0)\n");
58
  printf("void SetGap(x_gap0, y_gap0, z_gap0)\n");
59
 
60
  printf("LGG(NN, theta)\n");
61
  printf("LGR(NN, theta, phi)\n");
62
  printf("LGI(NN, theta)\n");
63
 
64
  printf("LGI_gap(NN, min, max, steps, theta)\n");
65
  printf("LGR_gap(NN, min, max, steps, theta, phi)\n");
66
  printf("LGR_th(NN, min, max, steps, phi)\n");
67
  printf("LGG_th(NN, min, max, steps)\n");
68
 
69
  printf("LGI_ad(NN, mina, maxa, mind, maxd, steps(memory dependent), theta)");
25 f9daq 70
}
71
//------------------------------------------------------------------------------------------
72
int show_in_steps = 0;
73
void SetShowInSteps(int in = 1)
74
{                                                                                
73 f9daq 75
  show_in_steps = in;
25 f9daq 76
}
77
//------------------------------------------------------------------------------------------
78
int gs_set = 0;
79
void SetGS()
80
{                                                                                
73 f9daq 81
  const UInt_t Number = 2;
82
  Double_t Red[Number]   = { 1.00, 0.00};
83
  Double_t Green[Number] = { 1.00, 0.00};
84
  Double_t Blue[Number]  = { 1.00, 0.00};
85
  Double_t Stops[Number] = { 0.00, 1.00};
86
 
87
  Int_t nb=50;
88
  if(!gs_set) {
89
      TColor::CreateGradientColorTable(Number,Stops,Red,Green,Blue,nb);
90
      gs_set = 1;
91
  }
25 f9daq 92
}
93
//------------------------------------------------------------------------------------------
94
void Draw1(CDetector *detector, int gs = 0, double range = 0.0)
95
{
73 f9daq 96
  if(gs) SetGS();
97
  TCanvas *cdata = new TCanvas("cdata", "2dscan", 350, 0, 500, 500);
98
  gStyle->SetOptTitle(0);
99
  gStyle->SetOptStat(0);
100
  cdata->cd(0);
101
  if(range > 0.1) {
102
      ((detector->GetHLaser())->GetXaxis())->SetRangeUser(-range,range);
103
      ((detector->GetHLaser())->GetYaxis())->SetRangeUser(-range,range);
104
  }
105
  (detector->GetHLaser())->SetTitle("Hits at LG entrance; x [mm]; y [mm]");
106
  (detector->GetHLaser())->Draw("COLZ");
107
  cdata->SaveAs("2dscan.gif");
108
  //gStyle->SetOptTitle(1);
109
  //gStyle->SetOptStat(1);
25 f9daq 110
}
111
 
112
//------------------------------------------------------------------------------------------
113
 
70 f9daq 114
// Test function
115
// creates an optical boundary surface
116
// shows the propagation of light ray
117
// and polarization state of the incident ray (green)
118
// and surface normal (blue)
25 f9daq 119
void PolTest(double theta = 0.0)
120
{
73 f9daq 121
  int p_type = SURF_REFRA;
70 f9daq 122
  double p_n1 = parameters.getN1();
123
  double p_n2 = parameters.getN2();
73 f9daq 124
  theta = 3.141593*theta/180.0;
125
  if(theta < 1e-6) theta = 1e-6;
126
 
127
  Init();
128
 
129
  double cx = 0.0;
130
  TVector3 vodnik_edge[4];
131
  double t = 3.0;
132
  vodnik_edge[0].SetXYZ(cx, t,-t);
133
  vodnik_edge[1].SetXYZ(cx, t, t);
134
  vodnik_edge[2].SetXYZ(cx,-t, t);
135
  vodnik_edge[3].SetXYZ(cx,-t,-t);
136
 
137
  CSurface *surf = new CSurface(p_type, vodnik_edge, p_n1, p_n2, 0.96);
138
  surf->FlipN();
139
  surf->SetFresnel(1);
140
  surf->Draw();
141
 
142
  CRay *ray = new CRay(cx, 0.0, 0.0, TMath::Cos(theta), 0.0, TMath::Sin(theta));
143
  ray->SetColor(kRed);
144
  //p_pol = rotatey(p_pol0, -theta);
145
  TVector3 sE(0,1,0);
146
  TVector3 pE(0,0,1);
147
  TVector3 p_pol = pE;
148
  p_pol.RotateY(-theta);
149
  //printf("p_pol = "); printv(p_pol);
150
  ray->setPolarization(p_pol);
151
 
152
  ray->DrawS(cx, -5.0);
153
 
154
  CRay *out = new CRay;
155
  out->SetColor(kBlack);
156
  TVector3 *inters = new TVector3;
157
  surf->PropagateRay(*ray, out, inters);
158
  printf(" n1 = %f, n2 = %f\n", p_n1, p_n2);
159
  //if(fate == 1) out->DrawS(cx, 5.0);
70 f9daq 160
  out->DrawS(cx, 5.0);
73 f9daq 161
 
162
  CRay *incidentPolarization = new CRay;
163
  incidentPolarization->SetColor(kGreen);
164
  incidentPolarization->Set(ray->GetR(), p_pol);
165
  incidentPolarization->DrawS(cx, 1.0);
166
  printf(" GREEN: polarization vector\n");
167
 
168
  CRay *surfaceNormal = new CRay;
169
  surfaceNormal->SetColor(kBlue);
170
  surfaceNormal->Set(ray->GetR(), surf->GetN());
171
  surfaceNormal->DrawS(cx, 1.0);
172
  printf(" BLUE: surface normal vector\n");
25 f9daq 173
}
174
 
175
void ptt()
176
{
73 f9daq 177
  for(double th = 0.0; th < 91.0; th += 5.0) {
178
      printf("%lf ", th);
179
      PolTest(th);
180
  }
25 f9daq 181
}
182
//------------------------------------------------------------------------------------------
183
// Propagate single ray and show the statistics
184
void LGS(double xh = 0.0, double yh = 0.0, double zh = 0.0, double theta = 0.0, double phi = 0.0)
185
{
186
  CDetector *detector = new CDetector(CENTER, parameters);
73 f9daq 187
  Init();
188
  double izkoristek = Single(detector, parameters, TVector3(xh,yh,zh),theta, phi);
189
  PrintGuideHead();
190
  PrintGuideStat(izkoristek);
191
  DrawData(detector, parameters, theta, izkoristek);
25 f9daq 192
}
193
//------------------------------------------------------------------------------------------
194
// Propagate NN rays generated as grid and show the statistics
72 f9daq 195
void LGG(int NN=10, double theta=0.0, bool coupling=false)
25 f9daq 196
{
72 f9daq 197
  parameters.setCoupling(coupling);
73 f9daq 198
  CDetector *detector = new CDetector(CENTER, parameters);
199
  Init();
200
  double izkoristek = Grid(detector, parameters, NN, theta);
201
  //printf("izkoristek = %.3lf\n", izkoristek);
202
  PrintGuideHead();
203
  PrintGuideStat(izkoristek);
204
  DrawData(detector, parameters, theta, izkoristek);
25 f9daq 205
}
206
//------------------------------------------------------------------------------------------
207
// Propagate NN rays genarated under the same angle theta, phi with random spacing and statistics
208
void LGR(int NN = 1e4, double theta = 0.0, double phi = 0.0)
209
{
72 f9daq 210
  CDetector *detector = new CDetector(CENTER, parameters);
73 f9daq 211
  Init();
212
  double izkoristek = RandYZ(detector, parameters, NN, theta, phi, 30);
213
  //printf("izkoristek = %.3lf\n", izkoristek);
214
  PrintGuideHead(); PrintGuideStat(izkoristek);
215
  DrawData(detector, parameters, theta, izkoristek);
25 f9daq 216
}
217
//------------------------------------------------------------------------------------------
218
// Propagate NN rays isotropically generated in solid angle theta and show the statistics
219
void LGI(int NN = 1e4, double theta = 30.0, int nnrays = 30, int showr = 0)
220
{
221
  Init();
222
  CDetector *detector = new CDetector(CENTER, parameters);
223
  //CDetector detector = new CDetector();
73 f9daq 224
  double izkoristek = RandIso(detector, parameters, NN, 0.0, theta, nnrays, showr);
225
  //printf("izkoristek = %.3lf\n", izkoristek);
226
  PrintGuideHead();
227
  PrintGuideStat(izkoristek);
228
  DrawData(detector, parameters, theta, izkoristek);
229
  //TCanvas *canvasDetector = new TCanvas("canvasDetector","canvasDetector",500,500);
230
  //canvasDetector->cd();
231
  //detector->Draw();
25 f9daq 232
}
233
 
72 f9daq 234
void LGB(int NN = 1e4, double phiMin=-19.4, double phiMax=19.4, bool coupling=true, int nnrays = 30, int showr = 0)
70 f9daq 235
{
236
  Init();
72 f9daq 237
  parameters.setCoupling(coupling);
70 f9daq 238
  CDetector *detector = new CDetector(CENTER, parameters);
73 f9daq 239
 
240
  const double theta = 18.5;
241
  double izkoristek = beamtest(detector, parameters, NN, theta, phiMin, phiMax, nnrays, showr);
242
 
243
  PrintGuideHead();
244
  PrintGuideStat(izkoristek);
245
  DrawData(detector, parameters, 18.5, izkoristek);
246
 
247
  //TCanvas *canvasDetector = new TCanvas("canvasDetector","canvasDetector",500,500);
248
  //canvasDetector->cd();
249
  //detector->Draw();
70 f9daq 250
}
73 f9daq 251
 
252
 
25 f9daq 253
//------------------------------------------------------------------------------------------
254
void LGI_gap(int NN = 1e4, double min = 0.0, double max = 2.0, const int steps = 10, double theta = 30.0)
255
{
73 f9daq 256
  int tmp3d = show_3d, tmpdata = show_data;
257
  double step[steps], acc[steps];
25 f9daq 258
 
73 f9daq 259
  show_3d = 0; show_data = 0;
260
 
261
  //printf(" x_gap | acceptance \n");
262
  PrintGuideHead();
263
  for(int i=0; i<=steps; i++) {
264
      step[i] = min + i*(max - min)/(double)steps;
265
      parameters.setGap(step[i], 0.0, 0.0);
266
      CDetector *detector = new CDetector(CENTER, parameters);
267
      Init();
268
      acc[i] = RandIso(detector, parameters, NN, 0, theta);
269
      //printf("%6.2lf |%6.1lf\n", step[i], acc[i]*100.0);
270
      PrintGuideStat(acc[i]);
271
  }
272
 
273
  //char sbuff[256];
274
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap(y,z) = (%.1lf, %.1lf) | #theta = %.1lf",
275
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
276
  //    (detector->GetVGap()).y(), (detector->GetVGap()).z(), theta);
277
 
278
  DrawAcc(steps+1, step, acc, (char*)"; x_gap;Acceptance", min, max);
279
 
280
  show_3d = tmp3d; show_data = tmpdata;
25 f9daq 281
}
282
//------------------------------------------------------------------------------------------
283
 
70 f9daq 284
void LGR_th(int NN = 1e4, double min = 0.0, double max = 30.0, const int steps = 15, double phi = 0)
285
{
286
  //int tmp3d = show_3d, tmpdata = show_data;
287
  double show_rays = 10;
288
  double step[steps], acc[steps];
289
 
73 f9daq 290
  //show_3d = 0; show_data = 0;
291
 
292
  //printf(" theta | acceptance \n");
293
  PrintGuideHead();
294
  for(int i=0; i<=steps; i++) {
295
      Init();
296
      step[i] = min + i*(max - min)/(double)steps;
297
      CDetector *detector = new CDetector(TVector3(-2,0,0), parameters);
298
      acc[i] = RandYZ(detector, parameters, NN, step[i], phi, show_rays);
299
      //printf("%6.1lf |%6.1lf\n", step[i], acc[i]*100.0);
300
      PrintGuideStat(acc[i]);
301
      delete detector;
302
  }
303
 
304
  //char sbuff[256];
305
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap = (%.1lf, %.1lf, %.1lf)",
306
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
307
  //    (detector->GetVGap()).x(), (detector->GetVGap()).y(), (detector->GetVGap()).z());
308
 
309
  DrawAcc(steps+1, step, acc, (char*)"; #theta [deg];Acceptance", min, max);
310
 
311
  //show_3d = tmp3d; show_data = tmpdata;
70 f9daq 312
}
313
 
314
 
25 f9daq 315
//------------------------------------------------------------------------------------------
70 f9daq 316
//void LGR_th(int NN = 1e4, double min = 0.0, double max = 30.0, const int steps = 15, double phi = 0)
317
void LGI_th(int NN = 1e4, double min = 0.0, double max = 30.0, const int steps = 15)
25 f9daq 318
{
70 f9daq 319
  //int tmp3d = show_3d, tmpdata = show_data;
320
  double step[steps], acc[steps];
25 f9daq 321
 
73 f9daq 322
  //show_3d = 0; show_data = 0;
323
 
324
  //printf(" theta | acceptance \n");
325
  PrintGuideHead();
326
  for(int i=0; i<=steps; i++) {
327
      Init();
328
      step[i] = min + i*(max - min)/(double)steps;
329
      CDetector *detector = new CDetector(TVector3(-2,0,0), parameters);
330
      //acc[i] = RandYZ(detector, parameters, NN, step[i], phi, 30);
331
      acc[i] = RandIso(detector, parameters, NN, 0, step[i], 30, show_3d);
332
      //printf("%6.1lf |%6.1lf\n", step[i], acc[i]*100.0);
333
      PrintGuideStat(acc[i]);
334
      delete detector;
335
  }
336
 
337
  //char sbuff[256];
338
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap = (%.1lf, %.1lf, %.1lf)",
339
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
340
  //    (detector->GetVGap()).x(), (detector->GetVGap()).y(), (detector->GetVGap()).z());
341
 
342
  DrawAcc(steps+1, step, acc, (char*)"; #theta [deg];Acceptance", min, max);
343
 
344
  //show_3d = tmp3d; show_data = tmpdata;
25 f9daq 345
}
346
//------------------------------------------------------------------------------------------
347
 
70 f9daq 348
void LGR_phi(int NN = 1e4, double maxTheta = 10.0, double maxPhi = 10.0, int steps = 10)
349
{
350
  int tmp3d = show_3d, tmpdata = show_data;
351
  show_3d = 1; show_data = 0;
352
  //PrintGuideHead();
353
  TH2F *hAcceptance = new TH2F("hAcceptance","Acceptance;#theta;#phi", steps, 0, maxTheta, steps, 0, maxPhi);
354
  double min = 0.0;
355
  printf("\nWait, this takes a while ");
73 f9daq 356
  for(int i=0; i<=steps; i++) {
357
      double theta = min + i*(maxTheta - min) / (double)steps;
358
      for (int j=0; j<=steps; j++) {
359
          Init();
360
          double phi = min + j*(maxPhi - min) / (double)steps;
361
          CDetector *detector = new CDetector(TVector3(-2,0,0), parameters);
362
          double acc = RandYZ(detector, parameters, NN, theta, phi, 30);
363
          //PrintGuideStat(acc);
364
          hAcceptance->Fill(i, j, acc);
365
          //printf("Acc: %f ", acc);
366
          delete detector;
70 f9daq 367
      }
73 f9daq 368
      printf(".");
70 f9daq 369
  }
370
  printf("\n");
371
  //DrawAcc(steps+1, step, acc, (char*)"; #theta [deg];Acceptance", min, max);
372
  show_3d = tmp3d; show_data = tmpdata;
373
  TCanvas *cp = new TCanvas("Acceptance", "Acceptance", 0, 0, 1000, 1000);
374
  cp->cd();
375
  hAcceptance->Draw("COLZ");
376
}
377
 
25 f9daq 378
// a vs. d
379
void LGI_ad(int NN = 1e4, double min = 2.5, double max = 3.5, double minD = 1, double maxD = 6, const int steps = 10, double theta = 30.0)
380
{
73 f9daq 381
  //char sbuff[256];
25 f9daq 382
 
73 f9daq 383
  //show_3d = 0; // don't show simulations
384
  //show_data = 1;
25 f9daq 385
 
73 f9daq 386
  //double d  = detector->GetD();
387
  const double b = parameters.getB(); // upper side of LG
388
  //const double SiPM = 3.0; // the length of the detector itself
389
  //double reflectivity = detector->guide->getR();
390
 
391
  TH2F *hAcceptance = new TH2F("hAcceptance","Acceptance",steps-1,minD,maxD,steps-1,min,max);
392
 
393
  // Use the Fresnel eq. instead of fixed reflectivity 96%
394
  //detector->SetFresnel(1);
395
 
396
  //printf("   d |   a  | Acceptance\n");
397
  getParameters();
398
  printf("Wait, this takes a while ");
399
  for(int i=0; i<steps; i++) {
400
      const double d = hAcceptance->GetXaxis()->GetBinCenter(i);
401
      for(int j=0; j<steps; j++) {
402
          Init();
403
          const double a = hAcceptance->GetYaxis()->GetBinCenter(j);
404
          //const double M = b/a;
405
          parameters.setGuide(a, b, d);
406
          CDetector *detector = new CDetector(CENTER, parameters);
407
          //detector->guide->setLG(y, M, x);
408
          //Init(); exclude simulation
409
          double acceptance = RandIso(detector, parameters, NN, 0, theta, 30, show_3d);
410
          //double acceptance = Grid(NN, theta);
411
          //double acceptance = -1.0;
412
          hAcceptance->Fill(d, a, acceptance);
413
          //printf("%.2lf | %.2lf | ", d, a);
414
          //PrintGuideStat(acceptance);
415
          delete detector; //works fine, 50x50 grid takes ~4MB of RAM
416
      }
417
      printf(".");
418
  }
419
  printf("\n");
420
 
421
 
422
 
423
  TCanvas *cp = new TCanvas("Acceptance", "Acceptance", 0, 0, 1200, 1200);
424
  cp->cd();
425
  //TVirtualPad *pacc = cp->cd(0);
426
 
427
  /*
428
      pacc->SetRightMargin(0.10);
429
      pacc->SetLeftMargin(0.10);
430
      pacc->SetTopMargin(0.10);
431
      pacc->SetBottomMargin(0.10);
432
   */
433
 
434
  TFile *file = new TFile("acceptance.root","RECREATE");
435
  hAcceptance->Write();
436
  file->Close();
437
  //delete file;
438
 
439
  //hAcceptance->SetContour(100);
440
  //gStyle->SetPalette(1,0);
441
  hAcceptance->SetTitle(";d [mm];a [mm]");
442
  hAcceptance->GetXaxis()->SetRangeUser(minD,maxD);
443
  hAcceptance->Draw("COLZ");
444
  char filename[128];
445
  sprintf(filename,"LGI_ad%d.C", steps);
446
  cp->SaveAs(filename);
447
 
25 f9daq 448
}
449
 
450
//------------------------------------------------------------------------------------------
451
// collection efficiency vs length
452
// a changes, b rests the same, d changes
453
// still can't use this function, it has hardcoded tan 10 deg
454
// !very stupid!
455
// new 3D graph NEEDED
456
// d vs a vs acceptance
457
void LGI_d2(int NN = 1e4, double min = 0.5, double max = 3.0, const int steps = 25, double theta = 30.0)
458
{
459
  TVector3 gapGuideSiPM(0.3, 0, 0);
460
  CDetector *detector = new CDetector(TVector3(-2,0,0), parameters);
73 f9daq 461
  int tmp3d = show_3d, tmpdata = show_data;
462
  double step[steps], acc[steps];
463
  double sipm_d, M0;
464
  char sbuff[256];
25 f9daq 465
 
73 f9daq 466
  show_3d = 1; show_data = 1;
467
 
468
  M0 = parameters.getM();
469
 
470
  PrintGuideHead();
471
  for(int i=0; i<=steps; i++) {
472
      step[i] = min + i*(max - min)/(double)steps;
473
      sipm_d = M0 - 2.0*step[i]*0.199819;//tan 11.3 deg
474
      parameters.setGuide(sipm_d, M0*sipm_d, step[i]);
475
      //printf("sipm = %lf, M = %lf, d = %lf\n", detector->GetSiPM(), detector->GetM(), step[i]);
476
      printf("%.1lf | %.2lf | ", step[i], sipm_d);
477
      Init();
478
      acc[i] = RandIso(detector, parameters, NN, 0, theta);
479
      PrintGuideStat(acc[i]);
480
      sprintf(sbuff, "d%2d.gif", i);
481
      //c3dview->SaveAs(sbuff);
482
  }
483
 
484
 
485
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap(y,z) = (%.1lf, %.1lf) | #theta = %.1lf",
486
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
487
  //                              (detector->GetVGap()).y(), (detector->GetVGap()).z(), theta);
488
 
489
  //DrawAcc(steps+1, step, acc, sbuff, (char*)"; d;Acceptance", min, max);
490
 
491
  TCanvas *cp = new TCanvas("Acceptance", "Acceptance", 0, 0, 640, 480);
492
  TVirtualPad *pacc = cp->cd(0);
493
 
494
  pacc->SetRightMargin(0.05);
495
  pacc->SetLeftMargin(0.13);
496
  pacc->SetTopMargin(0.08);
497
 
498
  TGraph *gacceptance = new TGraph(steps+1, step, acc);
499
  gacceptance->SetTitle("; d [mm];Collection efficiency");
500
  gacceptance->SetMarkerStyle(8);
501
  gacceptance->SetLineColor(12);
502
  gacceptance->SetLineWidth(1);
503
  (gacceptance->GetXaxis())->SetRangeUser(min, max);
504
  //(gacceptance->GetYaxis())->SetRangeUser(ymin, ymax);
505
 
506
  gacceptance->Draw("ACP");
507
 
508
 
509
  show_3d = tmp3d; show_data = tmpdata;
25 f9daq 510
}
511
//------------------------------------------------------------------------------------------
512
// Acceptance vs. the length
513
// The magnification ratio M rests the same all the time
514
void LGI_d(int NN = 1e4, double min = 1, double max = 6.0, const int steps = 25, double theta = 30.0)
515
{
73 f9daq 516
  int tmp3d = show_3d, tmpdata = show_data;
517
  double step[steps], acc[steps];
518
  const double a = parameters.getA();
519
  const double magnif = parameters.getM();
25 f9daq 520
 
73 f9daq 521
  //show_3d = show_in_steps; show_data = 1;
522
 
523
  // Use Fresnel equations
524
  //detector->SetFresnel(1);
525
 
526
  // Set glass (n=1.5) at the exit
527
  //detector->SetGlass(1,0);
528
 
529
  PrintGuideHead();
530
  for(int i=0; i<=steps; i++) {
531
      step[i] = min + i*(max - min)/(double)steps;
532
      //parameters.setGuide(a, magnif, step[i]);
533
      parameters.setGuide(a, magnif, step[i]);
534
      CDetector *detector = new CDetector(CENTER, parameters);
535
      //printf("sipm = %lf, M = %lf, d = %lf\n", detector->GetSiPM(), detector->GetM(), step[i]);
536
      printf("%.1lf | ", step[i]);
537
      Init();
538
      acc[i] = RandIso(detector, parameters, NN, 0, theta);
539
      PrintGuideStat(acc[i]);
540
      delete detector;
541
  }
542
 
543
  //char sbuff[256];
544
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap(y,z) = (%.1lf, %.1lf) | #theta = %.1lf",
545
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
546
  //                              (detector->GetVGap()).y(), (detector->GetVGap()).z(), theta);
547
 
548
  DrawAcc(steps+1, step, acc, (char*)"; d [mm];Acceptance", min, max);
549
 
550
  show_3d = tmp3d; show_data = tmpdata;
25 f9daq 551
}
552
//------------------------------------------------------------------------------------------
553
// Magnification optimization. a and d are fixed, M and b change in steps
554
void LGI_M(int NN = 1e4, double min = 1.0, double max = 3.0, const int steps = 30, double theta = 30.0)
555
{
73 f9daq 556
  int tmp3d = show_3d, tmpdata = show_data;
557
  double step[steps], acc[steps];
25 f9daq 558
 
73 f9daq 559
  const double a = parameters.getA();
560
  const double d = parameters.getD();
561
 
562
  show_3d = 0; show_data = 0;
563
 
564
  PrintGuideHead();
565
  for(int i=0; i<=steps; i++) {
566
      step[i] = min + i*(max - min)/(double)steps;
567
      //parameters.setGuide(a, step[i], d);
568
      parameters.setGuide(a, a*step[i], d);
569
      CDetector *detector = new CDetector(CENTER, parameters);
570
      Init();
571
      acc[i] = RandIso(detector, parameters, NN, 0, theta);
572
      PrintGuideStat(acc[i]);
573
  }
574
 
575
  //char sbuff[256];
576
  //sprintf(sbuff, "SiPM = %.1lf, M = %.1lf, d = %.1lf | gap(y,z) = (%.1lf, %.1lf) | #theta = %.1lf",
577
  //    detector->GetSiPM(), detector->GetM(), detector->GetD(),
578
  //                              (detector->GetVGap()).y(), (detector->GetVGap()).z(), theta);
579
 
580
  DrawAcc(steps+1, step, acc, (char*)"; M;Acceptance", min, max);
581
 
582
  show_3d = tmp3d; show_data = tmpdata;
25 f9daq 583
}
70 f9daq 584
 
25 f9daq 585
//------------------------------------------------------------------------------------------
586
 
70 f9daq 587
void getParameters()
588
{
589
  printf("LIGHT GUIDE\n"
73 f9daq 590
      "   b=%f mm, d=%f mm, a=%f mm\n", parameters.getB(), parameters.getD(), parameters.getA());
70 f9daq 591
  printf("MATERIAL REFRACITVE INDICES\n"
73 f9daq 592
      "   n1=%f, n2=%f, n3=%f\n", parameters.getN1(), parameters.getN2(), parameters.getN3());
70 f9daq 593
  printf("PLATE\n"
73 f9daq 594
      "   ON: %d, width=%f mm\nUSES FRESNEL EQUATIONS: %d\n", parameters.getPlateOn(), parameters.getPlateWidth(), parameters.getFresnel());
70 f9daq 595
  return;
596
}
73 f9daq 597