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root/cvsroot/UserCode/MitPhysics/Utils/src/ElectronTools.cc
Revision: 1.16
Committed: Mon Oct 11 23:11:39 2010 UTC (14 years, 6 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_017, Mit_017pre3, Mit_017pre2, Mit_017pre1, Mit_016, Mit_015b, Mit_015a, Mit_015
Changes since 1.15: +3 -3 lines
Log Message:
fix possible selection bug for electrons with negative fbrem

File Contents

# Content
1 // $Id: ElectronTools.cc,v 1.15 2010/10/09 20:15:33 bendavid Exp $
2
3 #include "MitPhysics/Utils/interface/ElectronTools.h"
4 #include "MitAna/DataTree/interface/StableData.h"
5 #include <TFile.h>
6
7 ClassImp(mithep::ElectronTools)
8
9 using namespace mithep;
10
11 //--------------------------------------------------------------------------------------------------
12 ElectronTools::ElectronTools()
13 {
14 // Constructor.
15 }
16
17 //--------------------------------------------------------------------------------------------------
18 Bool_t ElectronTools::PassCustomID(const Electron *ele, EElIdType idType) {
19
20 Double_t fCuts[6][8]; //!custom id cuts
21
22 Double_t tightcuts[6][8]={
23 {0.086, 0.1, 0.052, 0.0, 0.050, 0.059, 0.061, 0.0}, //hovere
24 {0.011, 0.011, 0.011, 0.0, 0.033, 0.029, 0.030, 0.0}, //sigmaetaeta
25 {0.038, 0.024, 0.045, 0.0, 0.034, 0.017, 0.026, 0.0}, //deltaphiin
26 {0.0081, 0.0029, 0.0051, 0.0, 0.0070, 0.0062, 0.0088, 0.0}, //deltaetain
27 {0.0, 0.9, 0.0, 0.0, 0.0, 0.78, 0.0, 0.0}, //eoverp
28 {0.8,0.2,0.9,0,0,0,0,0}}; //extra cuts fbrem and E_Over_P
29
30 Double_t loosecuts[6][8]={
31 {0.076, 0.033, 0.07, 0.0, 0.083,0.148, 0.033, 0.0}, //hovere
32 {0.0101, 0.0095, 0.0097, 0.0, 0.03, 0.03, 0.03, 0.0}, //sigmaetaeta
33 {0.053, 0.0189, 0.059, 0.099, 0.0278,0.0157, 0.042, 0.080}, //deltaphiin
34 {0.0078, 0.00259, 0.0062, 0.0, 0.0078,0.0061, 0.0061, 0.0}, //deltaetain
35 {0.3, 0.92, 0.211, 0.0, 0.42, 0.88, 0.68, 0.0}, //eoverp
36 {0.8,0.2,0,0,0,0,0,0}}; //extra cuts fbrem and E_Over_P
37
38 Double_t VBTFWorkingPoint95[6][8] = {
39 {0.15, 0.15, 0.15, 0.15, 0.07, 0.07, 0.07, 0.07 }, //hovere
40 {0.01, 0.01, 0.01, 0.01, 0.03, 0.03, 0.03, 0.03 }, //sigmaetaeta
41 {0.8, 0.8, 0.8, 0.8, 0.7, 0.7, 0.7, 0.7 }, //deltaphiin
42 {0.007, 0.007, 0.007, 0.007, 0.010, 0.010, 0.010, 0.010 }, //deltaetain
43 {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0 }, //eoverp
44 {0.0, 0.0, 0, 0, 0, 0, 0, 0 } //extra cuts fbrem and E_Over_P
45 };
46
47 Double_t VBTFWorkingPoint90[6][8] = {
48 {0.12, 0.12, 0.12, 0.12, 0.05, 0.05, 0.05, 0.05 }, //hovere
49 {0.01, 0.01, 0.01, 0.01, 0.03, 0.03, 0.03, 0.03 }, //sigmaetaeta
50 {0.8, 0.8, 0.8, 0.8, 0.7, 0.7, 0.7, 0.7 }, //deltaphiin
51 {0.007, 0.007, 0.007, 0.007, 0.009, 0.009, 0.009, 0.009 }, //deltaetain
52 {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0 }, //eoverp
53 {0.0, 0.0, 0, 0, 0, 0, 0, 0 } //extra cuts fbrem and E_Over_P
54 };
55
56 Double_t VBTFWorkingPoint85[6][8] = {
57 {0.04, 0.04, 0.04, 0.04, 0.025, 0.025, 0.025, 0.025 }, //hovere
58 {0.01, 0.01, 0.01, 0.01, 0.03, 0.03, 0.03, 0.03 }, //sigmaetaeta
59 {0.06, 0.06, 0.06, 0.06, 0.04, 0.04, 0.04, 0.04 }, //deltaphiin
60 {0.006, 0.006, 0.006, 0.006, 0.007, 0.007, 0.007, 0.007 }, //deltaetain
61 {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0 }, //eoverp
62 {0.0, 0.0, 0, 0, 0, 0, 0, 0 } //extra cuts fbrem and E_Over_P
63 };
64
65 Double_t VBTFWorkingPoint80[6][8] = {
66 {0.04, 0.04, 0.04, 0.04, 0.025, 0.025, 0.025, 0.025}, //hovere
67 {0.01, 0.01, 0.01, 0.01, 0.03, 0.03, 0.03, 0.03 }, //sigmaetaeta
68 {0.06, 0.06, 0.06, 0.06, 0.03, 0.03, 0.03, 0.03 }, //deltaphiin
69 {0.004, 0.004, 0.004, 0.004, 0.007, 0.007, 0.007, 0.007}, //deltaetain
70 {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0 }, //eoverp
71 {0.0, 0.0, 0, 0, 0, 0, 0, 0 } //extra cuts fbrem and E_Over_P
72 };
73
74 Double_t VBTFWorkingPoint70[6][8] = {
75 {0.025, 0.025, 0.025, 0.025, 0.012, 0.012, 0.012, 0.012}, //hovere
76 {0.01, 0.01, 0.01, 0.01, 0.03, 0.03, 0.03, 0.03 }, //sigmaetaeta
77 {0.03, 0.03, 0.03, 0.03, 0.02, 0.02, 0.02, 0.02 }, //deltaphiin
78 {0.004, 0.004, 0.004, 0.004, 0.005, 0.005, 0.005, 0.005}, //deltaetain
79 {0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0 }, //eoverp
80 {0.0, 0.0, 0, 0, 0, 0, 0, 0 } //extra cuts fbrem and E_Over_P
81 };
82
83 switch (idType) {
84 case kCustomIdTight:
85 memcpy(fCuts,tightcuts,sizeof(fCuts));
86 break;
87 case kCustomIdLoose:
88 memcpy(fCuts,loosecuts,sizeof(fCuts));
89 break;
90 case kVBTFWorkingPoint95Id:
91 memcpy(fCuts,VBTFWorkingPoint95,sizeof(fCuts));
92 break;
93 case kVBTFWorkingPoint90Id:
94 memcpy(fCuts,VBTFWorkingPoint90,sizeof(fCuts));
95 break;
96 case kVBTFWorkingPoint85Id:
97 memcpy(fCuts,VBTFWorkingPoint85,sizeof(fCuts));
98 break;
99 case kVBTFWorkingPoint80Id:
100 memcpy(fCuts,VBTFWorkingPoint80,sizeof(fCuts));
101 break;
102 case kVBTFWorkingPoint70Id:
103 memcpy(fCuts,VBTFWorkingPoint70,sizeof(fCuts));
104 break;
105 default:
106 memset(fCuts,0,sizeof(fCuts));
107 break;
108 }
109
110
111 // Based on RecoEgamma/ElectronIdentification/src/CutBasedElectronID.cc.
112 Double_t eOverP = ele->ESuperClusterOverP();
113 Double_t fBrem = ele->FBrem();
114
115 if ( (fCuts[5][0]>0.0) && (eOverP < fCuts[5][0]) && (fCuts[5][1]>0.0) && (fBrem < fCuts[5][1]))
116 return kFALSE;
117
118 if ( (fCuts[5][2]>0.0) && (eOverP < fCuts[5][2]*(1-fBrem)))
119 return kFALSE;
120
121 Int_t cat = 2;
122 if ((ele->IsEB() && fBrem<0.06) || (ele->IsEE() && fBrem<0.1))
123 cat=1;
124 else if (eOverP < 1.2 && eOverP > 0.8)
125 cat=0;
126
127 if(ele->SCluster() == 0)
128 return kFALSE;
129 Double_t eSeedOverPin = ele->ESeedClusterOverPIn();
130 Double_t hOverE = ele->HadronicOverEm();
131 Double_t sigmaee = ele->CoviEtaiEta();
132 Double_t deltaPhiIn = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
133 Double_t deltaEtaIn = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
134
135 Int_t eb = 1;
136 if (ele->IsEB())
137 eb = 0;
138
139 if (hOverE>fCuts[0][cat+4*eb])
140 return kFALSE;
141
142 if (sigmaee>fCuts[1][cat+4*eb])
143 return kFALSE;
144
145 if (deltaPhiIn>fCuts[2][cat+4*eb])
146 return kFALSE;
147
148 if(deltaEtaIn>fCuts[3][cat+4*eb])
149 return kFALSE;
150
151 if(eSeedOverPin<fCuts[4][cat+4*eb])
152 return kFALSE;
153
154 return kTRUE;
155 }
156
157 //--------------------------------------------------------------------------------------------------
158 Bool_t ElectronTools::PassCustomIso(const Electron *ele, EElIsoType isoType,
159 Bool_t useCombineIso)
160 {
161 Bool_t pass = kTRUE;
162 Double_t fIsoCuts[4][2]; //!custom isolation cuts
163 Double_t VBTFWorkingPoint95[4][2] = {
164 {0.15 , 0.08 }, //TrkIso
165 {2.00 , 0.06 }, //ECALIso
166 {0.12 , 0.05 }, //HCALIso
167 {0.15, 0.10 } //Combined
168 };
169
170 Double_t VBTFWorkingPoint90[4][2] = {
171 {0.12 , 0.05 }, //TrkIso
172 {0.09 , 0.06 }, //ECALIso
173 {0.10 , 0.03 }, //HCALIso
174 {0.10, 0.07 } //Combined
175 };
176
177 Double_t VBTFWorkingPoint85[4][2] = {
178 {0.09 , 0.05 }, //TrkIso
179 {0.08 , 0.05 }, //ECALIso
180 {0.10 , 0.025 }, //HCALIso
181 {0.09, 0.06 } //Combined
182 };
183
184 Double_t VBTFWorkingPoint80[4][2] = {
185 {0.09 , 0.04 }, //TrkIso
186 {0.07 , 0.05 }, //ECALIso
187 {0.10 , 0.025 }, //HCALIso
188 {0.07, 0.06 } //Combined
189 };
190
191 Double_t VBTFWorkingPoint70[4][2] = {
192 {0.05 , 0.025 }, //TrkIso
193 {0.06 , 0.025 }, //ECALIso
194 {0.03 , 0.020 }, //HCALIso
195 {0.04, 0.030 } //Combined
196 };
197
198 switch (isoType) {
199 case kVBTFWorkingPoint95Iso:
200 memcpy(fIsoCuts,VBTFWorkingPoint95,sizeof(fIsoCuts));
201 break;
202 case kVBTFWorkingPoint90Iso:
203 memcpy(fIsoCuts,VBTFWorkingPoint90,sizeof(fIsoCuts));
204 break;
205 case kVBTFWorkingPoint85Iso:
206 memcpy(fIsoCuts,VBTFWorkingPoint85,sizeof(fIsoCuts));
207 break;
208 case kVBTFWorkingPoint80Iso:
209 memcpy(fIsoCuts,VBTFWorkingPoint80,sizeof(fIsoCuts));
210 break;
211 case kVBTFWorkingPoint70Iso:
212 memcpy(fIsoCuts,VBTFWorkingPoint70,sizeof(fIsoCuts));
213 break;
214 default:
215 memset(fIsoCuts,0,sizeof(fIsoCuts));
216 break;
217 }
218
219 Double_t trkIso = ele->TrackIsolationDr03() / ele->Pt();
220 Double_t ecalIso = ele->EcalRecHitIsoDr03() / ele->Pt();
221 Double_t hcalIso = ele->HcalTowerSumEtDr03() / ele->Pt();
222 Double_t combinedIso = ele->TrackIsolationDr03() + ele->EcalRecHitIsoDr03() + ele->HcalTowerSumEtDr03();
223 if(ele->IsEB()) combinedIso = ele->TrackIsolationDr03() + TMath::Max(ele->EcalRecHitIsoDr03() - 1.0, 0.0) + ele->HcalTowerSumEtDr03();
224 combinedIso = combinedIso / ele->Pt();
225
226 Int_t eb = 1;
227 if (ele->IsEB())
228 eb = 0;
229
230 if(useCombineIso == kFALSE){
231 if (trkIso>fIsoCuts[0][eb])
232 pass = kFALSE;
233 if (ecalIso>fIsoCuts[1][eb])
234 pass = kFALSE;
235 if (hcalIso>fIsoCuts[2][eb])
236 pass = kFALSE;
237 }
238 else {
239 if (combinedIso>fIsoCuts[3][eb])
240 pass = kFALSE;
241 }
242
243 return pass;
244 }
245
246
247 //--------------------------------------------------------------------------------------------------
248 Bool_t ElectronTools::PassConversionFilter(const Electron *ele,
249 const DecayParticleCol *conversions,
250 Bool_t WrongHitsRequirement)
251 {
252 Bool_t isGoodConversion = kFALSE;
253
254 for (UInt_t ifc=0; ifc<conversions->GetEntries(); ifc++) {
255 Bool_t ConversionMatchFound = kFALSE;
256 for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
257 const Track *trk = dynamic_cast<const ChargedParticle*>
258 (conversions->At(ifc)->Daughter(d))->Trk();
259 if (ele->GsfTrk() == trk) {
260 ConversionMatchFound = kTRUE;
261 break;
262 }
263 }
264
265 // if match between the e-track and one of the conversion legs
266 if (ConversionMatchFound == kTRUE){
267 isGoodConversion = (conversions->At(ifc)->Prob() > 1e-6) &&
268 (conversions->At(ifc)->Lxy() > 0) &&
269 (conversions->At(ifc)->Lz() > 0) &&
270 (conversions->At(ifc)->Position().Rho() > 2.0);
271
272 if (isGoodConversion == kTRUE) {
273 for (UInt_t d=0; d<conversions->At(ifc)->NDaughters(); d++) {
274 const Track *trk = dynamic_cast<const ChargedParticle*>
275 (conversions->At(ifc)->Daughter(d))->Trk();
276 if (trk) {
277 // These requirements are not used for the GSF track
278 if (!(trk->NHits() >= 3 && trk->Prob() > 1e-6) && trk!=ele->GsfTrk())
279 isGoodConversion = kFALSE;
280 const StableData *sd = dynamic_cast<const StableData*>
281 (conversions->At(ifc)->DaughterDat(d));
282 if (WrongHitsRequirement && sd->NWrongHits() != 0)
283 isGoodConversion = kFALSE;
284 } else {
285 isGoodConversion = kFALSE;
286 }
287 }
288 }
289 }
290
291 if (isGoodConversion == kTRUE) break;
292
293 } // loop over all conversions
294
295 return !isGoodConversion;
296 }
297
298 //--------------------------------------------------------------------------------------------------
299 Bool_t ElectronTools::PassD0Cut(const Electron *ele, const VertexCol *vertices, Double_t fD0Cut,
300 Bool_t fReverseD0Cut)
301 {
302 Bool_t d0cut = kFALSE;
303 // d0 cut
304 Double_t d0_real = 99999;
305 for(UInt_t i0 = 0; i0 < vertices->GetEntries(); i0++) {
306 if(vertices->At(i0)->NTracks() > 0){
307 Double_t pD0 = ele->GsfTrk()->D0Corrected(*vertices->At(i0));
308 d0_real = TMath::Abs(pD0);
309 break;
310 }
311 }
312 if(d0_real < fD0Cut) d0cut = kTRUE;
313
314 if (fReverseD0Cut == kTRUE &&
315 d0cut == kFALSE && d0_real < 0.05)
316 d0cut = kTRUE;
317 else if(fReverseD0Cut == kTRUE)
318 d0cut = kFALSE;
319
320 return d0cut;
321 }
322
323 //--------------------------------------------------------------------------------------------------
324 Bool_t ElectronTools::PassD0Cut(const Electron *ele, const BeamSpotCol *beamspots, Double_t fD0Cut,
325 Bool_t fReverseD0Cut)
326 {
327 Bool_t d0cut = kFALSE;
328 // d0 cut
329 Double_t d0_real = 99999;
330 for(UInt_t i0 = 0; i0 < beamspots->GetEntries(); i0++) {
331 Double_t pD0 = ele->GsfTrk()->D0Corrected(*beamspots->At(i0));
332 if(TMath::Abs(pD0) < TMath::Abs(d0_real)) d0_real = TMath::Abs(pD0);
333 }
334 if(d0_real < fD0Cut) d0cut = kTRUE;
335
336 if (fReverseD0Cut == kTRUE &&
337 d0cut == kFALSE && d0_real < 0.05)
338 d0cut = kTRUE;
339 else if(fReverseD0Cut == kTRUE)
340 d0cut = kFALSE;
341
342 return d0cut;
343 }
344
345 //--------------------------------------------------------------------------------------------------
346 Bool_t ElectronTools::PassChargeFilter(const Electron *ele)
347 {
348 Bool_t passChargeFilter = kTRUE;
349 if(ele->TrackerTrk() &&
350 ele->TrackerTrk()->Charge() != ele->Charge()) passChargeFilter = kFALSE;
351
352 return passChargeFilter;
353 }
354
355 //--------------------------------------------------------------------------------------------------
356 Bool_t ElectronTools::PassSpikeRemovalFilter(const Electron *ele)
357 {
358 Bool_t passSpikeRemovalFilter = kTRUE;
359 if(ele->SCluster() &&
360 ele->SCluster()->Seed()->Energy() > 5.0 &&
361 ele->SCluster()->Seed()->EMax() / ele->SCluster()->Seed()->E3x3() > 0.95
362 ) {
363 passSpikeRemovalFilter = kFALSE;
364 }
365
366 // For Now Only use the EMax/E3x3 prescription.
367 // if(ele->SCluster()->Seed()->Energy() > 5.0 &&
368 // (1 - (ele->SCluster()->Seed()->E1x3() + ele->SCluster()->Seed()->E3x1() - 2*ele->SCluster()->Seed()->EMax())) > 0.95
369 // ) {
370 // passSpikeRemovalFilter = kFALSE;
371 // }
372
373 return passSpikeRemovalFilter;
374 }
375
376 Bool_t ElectronTools::PassTriggerMatching(const Electron *ele, const TriggerObjectCol *trigobjs)
377 {
378
379 for (UInt_t i=0; i<trigobjs->GetEntries(); ++i) {
380 const TriggerObject *trigobj = trigobjs->At(i);
381 if (trigobj->TriggerType()==TriggerObject::TriggerCluster || trigobj->TriggerType()==TriggerObject::TriggerElectron || trigobj->TriggerType()==TriggerObject::TriggerPhoton) {
382 if (MathUtils::DeltaR(ele->SCluster(),trigobj)<0.3) {
383 return kTRUE;
384 }
385 }
386 }
387
388 return kFALSE;
389
390
391 }
392
393 //--------------------------------------------------------------------------------------------------
394 Int_t ElectronTools::Classify(const Electron *ele) {
395
396 double eta = ele->AbsEta();
397 double eOverP = ele->ESuperClusterOverP();
398 double fBrem = ele->FBrem();
399
400 int cat = -1;
401 if (ele->IsEB()) {
402 if ((fBrem >= 0.12) and (eOverP > 0.9) and (eOverP < 1.2))
403 cat = 0;
404 else if (((eta > .445 and eta < .45 ) or
405 (eta > .79 and eta < .81 ) or
406 (eta > 1.137 and eta < 1.157 ) or
407 (eta > 1.47285 and eta < 1.4744)))
408 cat = 6;
409 else if (ele->IsTrackerDriven() and !ele->IsEcalDriven())
410 cat = 8;
411 else if (fBrem < 0.12)
412 cat = 1;
413 else
414 cat = 2;
415 } else {
416 if ((fBrem >= 0.2) and (eOverP > 0.82) and (eOverP < 1.22))
417 cat = 3;
418 else if (eta > 1.5 and eta < 1.58)
419 cat = 7;
420 else if (ele->IsTrackerDriven() and !ele->IsEcalDriven())
421 cat = 8;
422 else if (fBrem < 0.2)
423 cat = 4;
424 else
425 cat = 5;
426 }
427
428 return cat;
429 }
430
431 //--------------------------------------------------------------------------------------------------
432 Int_t ElectronTools::PassTightId(const Electron *ele, const VertexCol *vertices,
433 const DecayParticleCol *conversions, const Int_t typeCuts){
434
435 Double_t scEt = ele->SCluster()->Et();
436 Double_t eOverP = ele->ESuperClusterOverP();
437
438 Double_t fBrem = ele->FBrem();
439 Double_t hOverE = ele->HadronicOverEm();
440 Double_t sigmaee = ele->CoviEtaiEta();
441 Double_t deltaPhiIn = TMath::Abs(ele->DeltaPhiSuperClusterTrackAtVtx());
442 Double_t deltaEtaIn = TMath::Abs(ele->DeltaEtaSuperClusterTrackAtVtx());
443 Double_t eSeedOverPin = ele->ESeedClusterOverPIn();
444
445 Int_t mishits = ele->BestTrk()->NExpectedHitsInner();
446 Double_t tkIso = ele->TrackIsolationDr03();
447 Double_t ecalIso = ele->EcalRecHitIsoDr04();
448 Double_t ecalIsoPed = (ele->IsEB())?std::max(0.,ecalIso-1.):ecalIso;
449 Double_t hcalIso = ele->HcalTowerSumEtDr04();
450 Double_t hcalIso1 = ele->HcalDepth1TowerSumEtDr04();
451 Double_t hcalIso2 = ele->HcalDepth2TowerSumEtDr04();
452 Double_t e25Max = ele->E25Max();
453 Double_t e15 = ele->E15();
454 Double_t e55 = ele->E55();
455 Double_t e25Maxoe55 = e25Max/e55;
456 Double_t e15oe55 = e15/e55;
457
458 int cat = Classify(ele);
459 int eb;
460
461 if (ele->IsEB())
462 eb = 0;
463 else
464 eb = 1;
465
466 Int_t result = 0.;
467
468 Int_t bin = 0;
469
470 Double_t WantBin = kFALSE;
471 if(WantBin) {
472 if (scEt < 20.)
473 bin = 2;
474 else if (scEt > 30.)
475 bin = 0;
476 else
477 bin = 1;
478 }
479
480 if (fBrem > 0)
481 eSeedOverPin = eSeedOverPin + fBrem;
482
483 if(typeCuts == 3 || typeCuts == 4){
484 // Loose robust cuts
485 Double_t robustlooseEleIDCuts[52] = {
486 0.05, 0.0103, 0.8, 0.00688, -1, -1, 7.33, 4.68, 9999., 9999., 9999.,9999., 9999.,9999., 9999., 9999.,9999., 9999., 0.000, -9999., 9999., 9999., 9999, -1, 0, 0,
487 0.0389, 0.0307, 0.7, 0.00944, -1, -1, 7.76, 3.09, 2.23, 9999., 9999.,9999., 9999.,9999., 9999., 9999.,9999., 9999., 0.000, -9999., 9999., 9999., 9999, -1, 0, 0
488 };
489 // Tight robust cuts
490 Double_t robusttightEleIDCuts[52] = {
491 0.0201, 0.0102, 0.0211, 0.00606, -1, -1, 2.34, 3.24, 4.51, 9999., 9999.,9999., 9999.,9999., 9999., 9999.,9999., 9999., 0.000, -9999., 9999., 9999., 9999, -1, 0, 0,
492 0.00253, 0.0291, 0.022, 0.0032, -1, -1, 0.826, 2.7, 0.255, 9999., 9999.,9999., 9999.,9999., 9999., 9999.,9999., 9999., 0.000, -9999., 9999., 9999., 9999, -1, 0, 0
493 };
494 Double_t cut[52];
495 if (typeCuts == 3) {
496 memcpy(cut ,robustlooseEleIDCuts ,sizeof(cut));
497 }
498 else {
499 memcpy(cut ,robusttightEleIDCuts ,sizeof(cut));
500 }
501
502 if ((tkIso > cut[26*eb+6]) || (ecalIso > cut[26*eb+7]) || (hcalIso > cut[26*eb+8]) || (hcalIso1 > cut[26*eb+9]) || (hcalIso2 > cut[26*eb+10]) ||
503 (tkIso/ele->Pt() > cut[26*eb+11]) || (ecalIso/ele->Pt() > cut[26*eb+12]) || (hcalIso/ele->Pt() > cut[26*eb+13]) ||
504 ((tkIso+ecalIso+hcalIso)>cut[26*eb+14]) || (((tkIso+ecalIso+hcalIso)/ ele->Pt()) > cut[26*eb+15]) ||
505 ((tkIso+ecalIsoPed+hcalIso)>cut[26*eb+16]) || (((tkIso+ecalIsoPed+hcalIso)/ ele->Pt()) > cut[26*eb+17]) )
506 result = 0.;
507 else
508 result = 2.;
509
510 if (hOverE > cut[26*eb+0])
511 return result;
512
513 if (sigmaee > cut[26*eb+1])
514 return result;
515
516 if (fabs(deltaPhiIn) > cut[26*eb+2])
517 return result;
518
519 if (fabs(deltaEtaIn) > cut[26*eb+3])
520 return result;
521
522 if (e25Maxoe55 < cut[26*eb+4] && e15oe55 < cut[26*eb+5])
523 return result;
524 // some extra electron id cuts
525 if (sigmaee < cut[26*eb+18]) // inverted sigmaee cut - spike removal related
526 return result;
527
528 if ( eOverP < cut[26*eb+19] || eOverP > cut[26*eb+20]) // lower and upper cut in E/P
529 return result;
530
531 result = result + 1;
532
533 Bool_t passD0cut = PassD0Cut(ele, vertices, cut[26*eb+21], kFALSE);
534 if (!passD0cut)
535 return result;
536
537 if (mishits > cut[26*eb+22]) // expected missing hits
538 return result;
539
540 Bool_t passConvVeto = PassConversionFilter(ele, conversions, kTRUE);
541 if (passConvVeto == kFALSE)
542 return result;
543
544 result += 4;
545 }
546 else if(typeCuts == 0 || typeCuts == 1 || typeCuts == 2){
547 // Loose cuts
548 Double_t cutdcotdistLoose[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
549 };
550 Double_t cutdetainLoose[9] = {1.30e-02, 5.95e-03, 3.10e-02, 1.68e-02, 8.44e-03, 1.70e-02, 1.55e-02, 5.13e-02, 1.61e-02
551 };
552 Double_t cutdphiinLoose[9] = {7.51e-02, 3.30e-01, 4.20e-01, 9.86e-02, 2.84e-01, 3.28e-01, 3.77e-01, 4.32e-01, 3.74e-01
553 };
554 Double_t cuteseedopcorLoose[9] = {6.31e-01, 3.02e-01, 3.04e-01, 8.10e-01, 2.23e-01, 5.03e-01, 2.78e-01, 3.10e-01, 4.69e-01
555 };
556 Double_t cutetLoose[9] = {0., 0., 0., 0., 0., 0., 0., 0., 0.
557 };
558 Double_t cutfmishitsLoose[9] = {4.50e+00, 1.50e+00, 1.50e+00, 2.50e+00, 2.50e+00, 1.50e+00, 2.50e+00, 4.50e+00, 5.00e-01
559 };
560 Double_t cuthoeLoose[9] = {2.47e-01, 7.78e-02, 1.49e-01, 3.82e-01, 4.70e-02, 1.12e-01, 1.16e+00, 5.04e+00, 1.35e+00
561 };
562 Double_t cutip_gsfLoose[9] = {0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02
563 };
564 Double_t cutiso_sumLoose[9] = {0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1
565 };
566 Double_t cutiso_sumoetLoose[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
567 };
568 Double_t cutseeLoose[9] = {1.92e-02, 1.31e-02, 2.53e-02, 5.27e-02, 3.29e-02, 4.19e-02, 2.65e-02, 6.58e-02, 1.38e-01
569 };
570
571 // Medium cuts
572 Double_t cutdcotdistMedium[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
573 };
574 Double_t cutdetainMedium[9] = {1.19e-02, 4.20e-03, 1.07e-02, 1.49e-02, 6.56e-03, 1.19e-02, 1.16e-02, 5.13e-02, 6.37e-03
575 };
576 Double_t cutdphiinMedium[9] = {7.51e-02, 2.93e-01, 3.58e-01, 9.53e-02, 1.62e-01, 2.99e-01, 2.76e-01, 4.32e-01, 2.57e-01
577 };
578 Double_t cuteseedopcorMedium[9] = {6.31e-01, 8.14e-01, 7.60e-01, 8.18e-01, 7.56e-01, 5.35e-01, 6.20e-01, 7.88e-01, 8.85e-01
579 };
580 Double_t cutetMedium[9] = {0., 0., 0., 0., 0., 0., 0., 0., 0.
581 };
582 Double_t cutfmishitsMedium[9] = {1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 2.50e+00, 1.50e+00, 5.00e-01
583 };
584 Double_t cuthoeMedium[9] = {2.46e-01, 6.80e-02, 1.35e-01, 3.73e-01, 2.33e-02, 5.58e-02, 8.80e-01, 5.04e+00, 3.78e-02
585 };
586 Double_t cutip_gsfMedium[9] = {0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02
587 };
588 Double_t cutiso_sumMedium[9] = {0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1
589 };
590 Double_t cutiso_sumoetMedium[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
591 };
592 Double_t cutseeMedium[9] = {1.92e-02, 1.13e-02, 1.47e-02, 3.84e-02, 3.05e-02, 3.36e-02, 1.35e-02, 5.05e-02, 2.79e-02
593 };
594
595 // Tight cuts
596 Double_t cutdcotdistTight[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
597 };
598 Double_t cutdetainTight[9] = {9.28e-03, 3.56e-03, 7.16e-03, 1.31e-02, 5.81e-03, 9.79e-03, 1.15e-02, 1.66e-02, 3.19e-03
599 };
600 Double_t cutdphiinTight[9] = {4.66e-02, 7.80e-02, 2.64e-01, 4.42e-02, 3.20e-02, 2.37e-01, 8.25e-02, 2.07e-01, 5.39e-02
601 };
602 Double_t cuteseedopcorTight[9] = {6.48e-01, 8.97e-01, 8.91e-01, 8.39e-01, 8.35e-01, 6.49e-01, 6.76e-01, 8.70e-01, 9.91e-01
603 };
604 Double_t cutetTight[9] = {0., 0., 0., 0., 0., 0., 0., 0., 0.
605 };
606 Double_t cutfmishitsTight[9] = {1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 1.50e+00, 5.00e-01, 2.50e+00, 5.00e-01, 5.00e-01
607 };
608 Double_t cuthoeTight[9] = {9.94e-02, 5.61e-02, 1.05e-01, 9.73e-02, 1.81e-02, 3.06e-02, 5.57e-01, 5.04e+00, 1.06e-03
609 };
610 Double_t cutip_gsfTight[9] = {0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02, 0.02
611 };
612 Double_t cutiso_sumTight[9] = {0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1, 0.1
613 };
614 Double_t cutiso_sumoetTight[9] = {9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999., 9999.
615 };
616 Double_t cutseeTight[9] = {1.56e-02, 1.07e-02, 1.23e-02, 3.35e-02, 2.98e-02, 3.06e-02, 1.07e-02, 3.79e-02, 1.01e-02
617 };
618
619 Double_t cutdcotdist[9];
620 Double_t cutdetain[9];
621 Double_t cutdphiin[9];
622 Double_t cuteseedopcor[9];
623 Double_t cutet[9];
624 Double_t cutfmishits[9];
625 Double_t cuthoe[9];
626 Double_t cutip_gsf[9];
627 Double_t cutiso_sum[9];
628 Double_t cutiso_sumoet[9];
629 Double_t cutsee[9];
630 if (typeCuts == 0) {
631 memcpy(cutdcotdist ,cutdcotdistLoose ,sizeof(cutdcotdistLoose));
632 memcpy(cutdetain ,cutdetainLoose ,sizeof(cutdetainLoose));
633 memcpy(cutdphiin ,cutdphiinLoose ,sizeof(cutdphiinLoose));
634 memcpy(cuteseedopcor,cuteseedopcorLoose,sizeof(cuteseedopcorLoose));
635 memcpy(cutet ,cutetLoose ,sizeof(cutetLoose));
636 memcpy(cutfmishits ,cutfmishitsLoose ,sizeof(cutfmishitsLoose));
637 memcpy(cuthoe ,cuthoeLoose ,sizeof(cuthoeLoose));
638 memcpy(cutip_gsf ,cutip_gsfLoose ,sizeof(cutip_gsfLoose));
639 memcpy(cutiso_sum ,cutiso_sumLoose ,sizeof(cutiso_sumLoose));
640 memcpy(cutiso_sumoet,cutiso_sumoetLoose,sizeof(cutiso_sumoetLoose));
641 memcpy(cutsee ,cutseeLoose ,sizeof(cutseeLoose));
642 }
643 else if(typeCuts == 1) {
644 memcpy(cutdcotdist ,cutdcotdistMedium ,sizeof(cutdcotdistMedium));
645 memcpy(cutdetain ,cutdetainMedium ,sizeof(cutdetainMedium));
646 memcpy(cutdphiin ,cutdphiinMedium ,sizeof(cutdphiinMedium));
647 memcpy(cuteseedopcor,cuteseedopcorMedium,sizeof(cuteseedopcorMedium));
648 memcpy(cutet ,cutetMedium ,sizeof(cutetMedium));
649 memcpy(cutfmishits ,cutfmishitsMedium ,sizeof(cutfmishitsMedium));
650 memcpy(cuthoe ,cuthoeMedium ,sizeof(cuthoeMedium));
651 memcpy(cutip_gsf ,cutip_gsfMedium ,sizeof(cutip_gsfMedium));
652 memcpy(cutiso_sum ,cutiso_sumMedium ,sizeof(cutiso_sumMedium));
653 memcpy(cutiso_sumoet,cutiso_sumoetMedium,sizeof(cutiso_sumoetMedium));
654 memcpy(cutsee ,cutseeMedium ,sizeof(cutseeMedium));
655 }
656 else {
657 memcpy(cutdcotdist ,cutdcotdistTight ,sizeof(cutdcotdistTight));
658 memcpy(cutdetain ,cutdetainTight ,sizeof(cutdetainTight));
659 memcpy(cutdphiin ,cutdphiinTight ,sizeof(cutdphiinTight));
660 memcpy(cuteseedopcor,cuteseedopcorTight,sizeof(cuteseedopcorTight));
661 memcpy(cutet ,cutetTight ,sizeof(cutetTight));
662 memcpy(cutfmishits ,cutfmishitsTight ,sizeof(cutfmishitsTight));
663 memcpy(cuthoe ,cuthoeTight ,sizeof(cuthoeTight));
664 memcpy(cutip_gsf ,cutip_gsfTight ,sizeof(cutip_gsfTight));
665 memcpy(cutiso_sum ,cutiso_sumTight ,sizeof(cutiso_sumTight));
666 memcpy(cutiso_sumoet,cutiso_sumoetTight,sizeof(cutiso_sumoetTight));
667 memcpy(cutsee ,cutseeTight ,sizeof(cutseeTight));
668 }
669
670 // CAREFUL, I HAVE COMMENTED OUT WHAT SANI IS DOING
671 //Double_t iso_sum = tkIso + ecalIso + hcalIso;
672 Double_t iso_sum = (ele->TrackIsolationDr03() + TMath::Max(ele->EcalRecHitIsoDr03() - 1.0, 0.0) +
673 ele->HcalTowerSumEtDr03()) / ele->Pt();
674 Double_t iso_sum_corrected = iso_sum*pow(40./scEt, 2);
675 if ((iso_sum < cutiso_sum[cat+bin*9]) &&
676 (iso_sum_corrected < cutiso_sumoet[cat+bin*9]))
677 result += 2;
678
679 if (fBrem > -2) {
680 if ((hOverE < cuthoe[cat+bin*9]) and
681 (sigmaee < cutsee[cat+bin*9]) and
682 (fabs(deltaPhiIn) < cutdphiin[cat+bin*9]) and
683 (fabs(deltaEtaIn) < cutdetain[cat+bin*9]) and
684 (eSeedOverPin > cuteseedopcor[cat+bin*9]) and
685 (scEt > cutet[cat+bin*9]))
686 result += 1.;
687 }
688
689 Bool_t passD0cut = PassD0Cut(ele, vertices, cutip_gsf[cat+bin*9], kFALSE);
690 if (passD0cut)
691 result += 4;
692
693 Bool_t passConvVeto = PassConversionFilter(ele, conversions, kTRUE);
694 if (mishits < cutfmishits[cat+bin*9] &&
695 passConvVeto)
696 result += 8;
697 } // classbased
698
699 return result;
700 }