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ImprovedOutputFile Timing dual_readout llp
Last change on this file since 407aeba was a89c86c, checked in by Ulrike Schnoor <ulrike.schnoor@…>, 6 years ago

CLICdet card: updated jet energy correction

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1#######################################
2# CLICdet model
3# based on CLICdp-Note-2017-001
4# Ulrike Schnoor ulrike.schnoor@cern.ch
5#
6# For the intermediate energy stage of
7# CLIC: 1.5 TeV
8#
9# Jet finding with Valencia algorithm:
10# use exclusive clustering with njets
11# according to final state
12#
13#######################################
14# Order of execution of various modules
15#######################################
16
17set ExecutionPath {
18 ParticlePropagator
19
20 ChargedHadronTrackingEfficiency
21 ElectronTrackingEfficiency
22 MuonTrackingEfficiency
23
24 ChargedHadronMomentumSmearing
25 ElectronMomentumSmearing
26 MuonMomentumSmearing
27
28 TrackMerger
29
30 ECal
31 HCal
32
33 Calorimeter
34 EFlowMerger
35
36
37 PhotonEfficiency
38 PhotonIsolation
39
40 ElectronFilter
41 ElectronEfficiency
42 ElectronIsolation
43
44 ChargedHadronFilter
45
46 MuonEfficiency
47 MuonIsolation
48
49 EFlowFilter
50
51 NeutrinoFilter
52 GenJetFinder
53 FastJetFinderKt
54 FastJetFinderVLC_R05_N2
55 FastJetFinderVLC_R05_N3
56 FastJetFinderVLC_R05_N4
57 FastJetFinderVLC_R05_N5
58 FastJetFinderVLC_R05_N6
59 FastJetFinderVLC_R07_N2
60 FastJetFinderVLC_R07_N3
61 FastJetFinderVLC_R07_N4
62 FastJetFinderVLC_R07_N5
63 FastJetFinderVLC_R07_N6
64 FastJetFinderVLC_R10_N2
65 FastJetFinderVLC_R10_N3
66 FastJetFinderVLC_R10_N4
67 FastJetFinderVLC_R10_N5
68 FastJetFinderVLC_R10_N6
69 FastJetFinderVLC_R12_N2
70 FastJetFinderVLC_R12_N3
71 FastJetFinderVLC_R12_N4
72 FastJetFinderVLC_R12_N5
73 FastJetFinderVLC_R12_N6
74 FastJetFinderVLC_R15_N2
75 FastJetFinderVLC_R15_N3
76 FastJetFinderVLC_R15_N4
77 FastJetFinderVLC_R15_N5
78 FastJetFinderVLC_R15_N6
79
80 FastJetFinderVLC_R05_inclusive
81 FastJetFinderVLC_R07_inclusive
82 FastJetFinderVLC_R10_inclusive
83 FastJetFinderVLC_R12_inclusive
84 FastJetFinderVLC_R15_inclusive
85
86
87 MissingET
88 GenMissingET
89
90
91 JetMomentumSmearing_VLCR05N2
92 JetMomentumSmearing_VLCR05N3
93 JetMomentumSmearing_VLCR05N4
94 JetMomentumSmearing_VLCR05N5
95 JetMomentumSmearing_VLCR05N6
96 JetMomentumSmearing_VLCR05_inclusive
97 JetMomentumSmearing_VLCR07N2
98 JetMomentumSmearing_VLCR07N3
99 JetMomentumSmearing_VLCR07N4
100 JetMomentumSmearing_VLCR07N5
101 JetMomentumSmearing_VLCR07N6
102 JetMomentumSmearing_VLCR07_inclusive
103 JetMomentumSmearing_VLCR10N2
104 JetMomentumSmearing_VLCR10N3
105 JetMomentumSmearing_VLCR10N4
106 JetMomentumSmearing_VLCR10N5
107 JetMomentumSmearing_VLCR10N6
108 JetMomentumSmearing_VLCR10_inclusive
109 JetMomentumSmearing_VLCR12N2
110 JetMomentumSmearing_VLCR12N3
111 JetMomentumSmearing_VLCR12N4
112 JetMomentumSmearing_VLCR12N5
113 JetMomentumSmearing_VLCR12N6
114 JetMomentumSmearing_VLCR12_inclusive
115 JetMomentumSmearing_VLCR15N2
116 JetMomentumSmearing_VLCR15N3
117 JetMomentumSmearing_VLCR15N4
118 JetMomentumSmearing_VLCR15N5
119 JetMomentumSmearing_VLCR15N6
120 JetMomentumSmearing_VLCR15_inclusive
121
122
123
124
125 JetFlavorAssociation_R05N2
126 JetFlavorAssociation_R05N3
127 JetFlavorAssociation_R05N4
128 JetFlavorAssociation_R05N5
129 JetFlavorAssociation_R05N6
130
131 JetFlavorAssociation_R07N2
132 JetFlavorAssociation_R07N3
133 JetFlavorAssociation_R07N4
134 JetFlavorAssociation_R07N5
135 JetFlavorAssociation_R07N6
136
137 JetFlavorAssociation_R10N2
138 JetFlavorAssociation_R10N3
139 JetFlavorAssociation_R10N4
140 JetFlavorAssociation_R10N5
141 JetFlavorAssociation_R10N6
142
143 JetFlavorAssociation_R12N2
144 JetFlavorAssociation_R12N3
145 JetFlavorAssociation_R12N4
146 JetFlavorAssociation_R12N5
147 JetFlavorAssociation_R12N6
148
149 JetFlavorAssociation_R15N2
150 JetFlavorAssociation_R15N3
151 JetFlavorAssociation_R15N4
152 JetFlavorAssociation_R15N5
153 JetFlavorAssociation_R15N6
154
155 JetFlavorAssociation_R05_inclusive
156 JetFlavorAssociation_R07_inclusive
157 JetFlavorAssociation_R10_inclusive
158 JetFlavorAssociation_R12_inclusive
159 JetFlavorAssociation_R15_inclusive
160
161
162 BTaggingWP50_R05N2
163 BTaggingWP70_R05N2
164 BTaggingWP90_R05N2
165 BTaggingWP50_R05N3
166 BTaggingWP70_R05N3
167 BTaggingWP90_R05N3
168 BTaggingWP50_R05N4
169 BTaggingWP70_R05N4
170 BTaggingWP90_R05N4
171 BTaggingWP50_R05N5
172 BTaggingWP70_R05N5
173 BTaggingWP90_R05N5
174 BTaggingWP50_R05N6
175 BTaggingWP70_R05N6
176 BTaggingWP90_R05N6
177 BTaggingWP50_R07N2
178 BTaggingWP70_R07N2
179 BTaggingWP90_R07N2
180 BTaggingWP50_R07N3
181 BTaggingWP70_R07N3
182 BTaggingWP90_R07N3
183 BTaggingWP50_R07N4
184 BTaggingWP70_R07N4
185 BTaggingWP90_R07N4
186 BTaggingWP50_R07N5
187 BTaggingWP70_R07N5
188 BTaggingWP90_R07N5
189 BTaggingWP50_R07N6
190 BTaggingWP70_R07N6
191 BTaggingWP90_R07N6
192 BTaggingWP50_R10N2
193 BTaggingWP70_R10N2
194 BTaggingWP90_R10N2
195 BTaggingWP50_R10N3
196 BTaggingWP70_R10N3
197 BTaggingWP90_R10N3
198 BTaggingWP50_R10N4
199 BTaggingWP70_R10N4
200 BTaggingWP90_R10N4
201 BTaggingWP50_R10N5
202 BTaggingWP70_R10N5
203 BTaggingWP90_R10N5
204 BTaggingWP50_R10N6
205 BTaggingWP70_R10N6
206 BTaggingWP90_R10N6
207 BTaggingWP50_R12N2
208 BTaggingWP70_R12N2
209 BTaggingWP90_R12N2
210 BTaggingWP50_R12N3
211 BTaggingWP70_R12N3
212 BTaggingWP90_R12N3
213 BTaggingWP50_R12N4
214 BTaggingWP70_R12N4
215 BTaggingWP90_R12N4
216 BTaggingWP50_R12N5
217 BTaggingWP70_R12N5
218 BTaggingWP90_R12N5
219 BTaggingWP50_R12N6
220 BTaggingWP70_R12N6
221 BTaggingWP90_R12N6
222 BTaggingWP50_R15N2
223 BTaggingWP70_R15N2
224 BTaggingWP90_R15N2
225 BTaggingWP50_R15N3
226 BTaggingWP70_R15N3
227 BTaggingWP90_R15N3
228 BTaggingWP50_R15N4
229 BTaggingWP70_R15N4
230 BTaggingWP90_R15N4
231 BTaggingWP50_R15N5
232 BTaggingWP70_R15N5
233 BTaggingWP90_R15N5
234 BTaggingWP50_R15N6
235 BTaggingWP70_R15N6
236 BTaggingWP90_R15N6
237 BTaggingWP50_R05_inclusive
238 BTaggingWP70_R05_inclusive
239 BTaggingWP90_R05_inclusive
240 BTaggingWP50_R07_inclusive
241 BTaggingWP70_R07_inclusive
242 BTaggingWP90_R07_inclusive
243 BTaggingWP50_R10_inclusive
244 BTaggingWP70_R10_inclusive
245 BTaggingWP90_R10_inclusive
246 BTaggingWP50_R12_inclusive
247 BTaggingWP70_R12_inclusive
248 BTaggingWP90_R12_inclusive
249 BTaggingWP50_R15_inclusive
250 BTaggingWP70_R15_inclusive
251 BTaggingWP90_R15_inclusive
252
253
254 TauTagging_R05N2
255 TauTagging_R05N3
256 TauTagging_R05N4
257 TauTagging_R05N5
258 TauTagging_R05N6
259 TauTagging_R07N2
260 TauTagging_R07N3
261 TauTagging_R07N4
262 TauTagging_R07N5
263 TauTagging_R07N6
264 TauTagging_R10N2
265 TauTagging_R10N3
266 TauTagging_R10N4
267 TauTagging_R10N5
268 TauTagging_R10N6
269 TauTagging_R12N2
270 TauTagging_R12N3
271 TauTagging_R12N4
272 TauTagging_R12N5
273 TauTagging_R12N6
274 TauTagging_R15N2
275 TauTagging_R15N3
276 TauTagging_R15N4
277 TauTagging_R15N5
278 TauTagging_R15N6
279
280 TauTagging_R05_inclusive
281 TauTagging_R07_inclusive
282 TauTagging_R10_inclusive
283 TauTagging_R12_inclusive
284 TauTagging_R15_inclusive
285
286
287
288 ScalarHT
289
290
291 TreeWriter
292}
293
294#################################
295# Propagate particles in cylinder
296#################################
297
298module ParticlePropagator ParticlePropagator {
299 set InputArray Delphes/stableParticles
300
301 set OutputArray stableParticles
302 set ChargedHadronOutputArray chargedHadrons
303 set ElectronOutputArray electrons
304 set MuonOutputArray muons
305
306 # radius of the magnetic field coverage in the calorimeter, in m
307 set Radius 1.5
308 # half-length of the magnetic field coverage in the calorimeter, in m
309 set HalfLength 2.31
310
311 # magnetic field, in T
312 set Bz 4.0
313}
314
315####################################
316# Charged hadron tracking efficiency
317####################################
318
319module Efficiency ChargedHadronTrackingEfficiency {
320 set InputArray ParticlePropagator/chargedHadrons
321 set OutputArray chargedHadrons
322 # Current full simulation with CLICdet provides for pions:
323
324 set EfficiencyFormula {
325 (abs(eta) > 2.54) * (0.000) +
326 (energy >= 80) * (abs(eta) < 2.54) * (1.000) +
327 (energy < 80 && energy >= 3) * (abs(eta) <=2.54 && abs(eta) > 2.34) * (0.994) +
328 (energy < 80 && energy >= 3) * (abs(eta) <= 2.34) * (1.000) +
329 (energy < 3) * (abs(eta) <= 2.54 && abs(eta) > 0.55 ) * (0.000) +
330 (energy < 3) * (abs(eta) <= 0.55 ) * (1.000)
331 }
332}
333
334##############################
335# Electron tracking efficiency
336##############################
337
338module Efficiency ElectronTrackingEfficiency {
339 set InputArray ParticlePropagator/electrons
340 set OutputArray electrons
341
342
343 # Current full simulation with CLICdet provides for electrons:
344 set EfficiencyFormula {
345 (pt <= 1) * (0.000) +
346 (abs(eta) > 2.54) * (0.000) +
347 (energy >= 80) * (abs(eta) <= 2.54 && abs(eta) > 2.44 ) * (0.993) +
348 (energy >= 80) * (abs(eta) <= 2.44 && abs(eta) > 2.34 ) * (0.997) +
349 (energy >= 80) * (abs(eta) <= 2.34 ) * (1.000) +
350 (energy < 80 && energy >= 5) * (abs(eta) <= 2.54 && abs(eta) > 2.17 ) * (0.998) +
351 (energy < 80 && energy >= 5) * (abs(eta) <= 2.17) * (1.000) +
352 (energy < 5) * (abs(eta) > 2.34 ) * (0.000) +
353 (energy < 5) * (abs(eta) <= 2.34 && abs(eta) > 0.76 ) * (0.997) +
354 (energy < 5) * (abs(eta) <= 0.76) * (0.999)
355 }
356}
357
358##########################
359# Muon tracking efficiency
360##########################
361
362module Efficiency MuonTrackingEfficiency {
363 set InputArray ParticlePropagator/muons
364 set OutputArray muons
365
366 # Current full simulation with CLICdet provides for muons:
367 set EfficiencyFormula {
368 (pt < 1) * (0.000) +
369 (abs(eta) > 2.54) * (0.000) +
370 (abs(eta) <= 2.54 && abs(eta) > 2.44 ) * (energy >= 80) * (0.994) +
371 (abs(eta) <= 2.54 && abs(eta) > 2.44 ) * (energy >= 5 && energy < 80) * (0.996) +
372 (abs(eta) <= 2.54 && abs(eta) > 2.44 ) * (energy < 5 ) * (0.996) +
373 (abs(eta) <= 2.44 ) * (energy >= 5 ) * (1.000) +
374 (abs(eta) <= 2.44 && abs(eta) > 2.25 ) * (energy < 5 && pt >=1 ) * (0.999) +
375 (abs(eta) <= 2.25 ) * (energy >= 1) * (1.000)
376
377
378 }
379}
380
381########################################
382# Momentum resolution for charged tracks
383########################################
384
385module MomentumSmearing ChargedHadronMomentumSmearing {
386 set InputArray ChargedHadronTrackingEfficiency/chargedHadrons
387 set OutputArray chargedHadrons
388
389
390 # Resolution given in dpT/pT.
391 # CLICdet internal studies
392 set ResolutionFormula {
393 (abs(eta) < 2.66 && abs(eta) >= 1.74 ) * 2 * sqrt( 8.56036e-05^2 * pt^2 +0.0148987^2 ) +
394 (abs(eta) < 1.74 && abs(eta) >= 1.32 ) * 1.5 * sqrt( 8.56036e-05^2 * pt^2 +0.0148987^2 ) +
395 (abs(eta) < 1.32 && abs(eta) >= 0.76 ) * sqrt( 1.12382e-05^2 * pt^2 +0.00391722^2 ) +
396 (abs(eta) < 0.76 && abs(eta) >= 0.36 ) * sqrt( 1.16768e-05^2 * pt^2 +0.00255204^2 ) +
397 (abs(eta) < 0.36 && abs(eta) >= 0.18 ) * sqrt( 1.28327e-05^2 * pt^2 +0.00220587^2 ) +
398 (abs(eta) < 0.18) * sqrt( 1.32845e-05^2 * pt^2 +0.00209325^2 )
399
400 }
401}
402
403###################################
404# Momentum resolution for electrons
405###################################
406
407module MomentumSmearing ElectronMomentumSmearing {
408 set InputArray ElectronTrackingEfficiency/electrons
409 set OutputArray electrons
410
411 # Resolution given in dpT/pT.
412 # CLICdet internal studies
413 set ResolutionFormula {
414 (abs(eta) < 2.66 && abs(eta) >= 1.74 ) * 2 * sqrt( 8.62283e-05^2 * pt^2 + 0.0177556^2 ) +
415 (abs(eta) < 1.74 && abs(eta) >= 1.32 ) * 1.5 * sqrt( 8.62283e-05^2 * pt^2 + 0.0177556^2 ) +
416 (abs(eta) < 1.32 && abs(eta) >= 0.76 ) * sqrt( 1.0915e-05 ^2 * pt^2 + 0.00663766^2 ) +
417 (abs(eta) < 0.76 && abs(eta) >= 0.36 ) * sqrt( 1.15518e-05^2 * pt^2 + 0.00398644^2 ) +
418 (abs(eta) < 0.36 && abs(eta) >= 0.18 ) * sqrt( 1.3307e-05 ^2 * pt^2 + 0.00317807^2 ) +
419 (abs(eta) < 0.18) * sqrt( 1.40722e-05^2 * pt^2 + 0.00292138^2 )
420
421 }
422}
423
424###############################
425# Momentum resolution for muons
426###############################
427
428module MomentumSmearing MuonMomentumSmearing {
429 set InputArray MuonTrackingEfficiency/muons
430 set OutputArray muons
431
432 # Resolution given in dpT/pT.
433
434 # CLICdet internal studies
435 set ResolutionFormula {
436
437 (abs(eta) < 2.66 && abs(eta) >= 1.74 ) * 2 * sqrt(4.57439e-05^2 * pt^2 + 0.0149328^2 ) +
438 (abs(eta) < 1.74 && abs(eta) >= 1.32 ) * 1.5 * sqrt(4.57439e-05^2 * pt^2 + 0.0149328^2 ) +
439 (abs(eta) < 1.32 && abs(eta) >= 0.76 ) * sqrt(9.81626e-06^2 * pt^2 + 0.00379895^2 ) +
440 (abs(eta) < 0.76 && abs(eta) >= 0.36 ) * sqrt(1.1959e-05^2 * pt^2 + 0.00242417^2 ) +
441 (abs(eta) < 0.36 && abs(eta) >= 0.18 ) * sqrt(1.20149e-05^2 * pt^2 + 0.00219291^2 ) +
442 (abs(eta) < 0.18) * sqrt(1.29686e-05^2 * pt^2 + 0.0020392^2 )
443
444 }
445}
446
447##############
448# Track merger
449##############
450
451module Merger TrackMerger {
452 # add InputArray InputArray
453 add InputArray ChargedHadronMomentumSmearing/chargedHadrons
454 add InputArray ElectronMomentumSmearing/electrons
455 add InputArray MuonMomentumSmearing/muons
456 set OutputArray tracks
457}
458
459#############
460# ECAL
461#############
462
463module SimpleCalorimeter ECal {
464 set ParticleInputArray ParticlePropagator/stableParticles
465 set TrackInputArray TrackMerger/tracks
466
467 set TowerOutputArray ecalTowers
468 set EFlowTrackOutputArray eflowTracks
469 set EFlowTowerOutputArray eflowPhotons
470
471 set IsEcal true
472
473 set EnergyMin 0.5
474 set EnergySignificanceMin 1.0
475
476 set SmearTowerCenter true
477
478 set pi [expr {acos(-1)}]
479
480 # lists of the edges of each tower in eta and phi
481 # each list starts with the lower edge of the first tower
482 # the list ends with the higher edged of the last tower
483
484 #ECAL barrel: dphi = 0.2 degree, deta=0.003 towers up to |eta| <=1.2
485 #ECAL endcaps: dphi = 0.8 degree, deta=0.02 towers up to |eta| <=2.5
486 #ECAL plug: dphi = 1 degree, deta = 0.02 up to |eta| <=3
487 #ECAL cell sizes always 5x5 mm^2
488
489 #barrel:
490 #dphi = 0.2 degree towers up to eta <=1.2
491 set PhiBins {}
492 for {set i -900} {$i <= 900} {incr i} {
493 add PhiBins [expr {$i * $pi/900.0 }]
494 }
495 # 0.003 unit (5x5 mm^2) in eta up to eta <=1.2
496 for {set i -400} {$i <=400} {incr i} {
497 set eta [expr {$i * 0.003}]
498 add EtaPhiBins $eta $PhiBins
499 }
500
501 #endcaps:
502 #dphi = 0.8 degree towers for 1.2 < eta <=2.5
503 set PhiBins {}
504 for {set i -225} {$i <= 225} {incr i} {
505 add PhiBins [expr {$i * $pi/225.}]
506 }
507 #deta=0.02 units for 1.2 < |eta| <=2.5
508 #first, from -2.5 to -1.2, there will be (1.3/0.02=)65 segments
509 for {set i 1} {$i <=66} {incr i} {
510 set eta [expr {-2.52 + $i * 0.02}]
511 add EtaPhiBins $eta $PhiBins
512 }
513 #same for 1.2 to 2.5
514 for {set i 1} {$i <=66} {incr i} {
515 set eta [expr {1.18 + $i*0.02}]
516 add EtaPhiBins $eta $PhiBins
517 }
518
519 #plug:
520 #dphi = 1 degree for 2.5 < eta <=3
521 set PhiBins {}
522 for {set i -180} {$i <= 180} {incr i} {
523 add PhiBins [expr {$i * $pi/180.}]
524 }
525 # deta = 0.02 for 2.5 < |eta| <=3
526 # from -3 to -2.5, there will be 25 segments
527 for {set i 1} {$i <= 26} {incr i} {
528 set eta [expr {-3.02 + $i * 0.02}]
529 add EtaPhiBins $eta $PhiBins
530 }
531 #same for 2.5 to 3
532 for {set i 1} {$i <= 26} {incr i} {
533 set eta [expr {2.48 + $i*0.02}]
534 add EtaPhiBins $eta $PhiBins
535 }
536
537
538
539 # default energy fractions {abs(PDG code)} {fraction of energy deposited in ECAL}
540
541 add EnergyFraction {0} {0.0}
542 # energy fractions for e, gamma and pi0
543 add EnergyFraction {11} {1.0}
544 add EnergyFraction {22} {1.0}
545 add EnergyFraction {111} {1.0}
546 # energy fractions for muon, neutrinos and neutralinos
547 add EnergyFraction {12} {0.0}
548 add EnergyFraction {13} {0.0}
549 add EnergyFraction {14} {0.0}
550 add EnergyFraction {16} {0.0}
551 add EnergyFraction {1000022} {0.0}
552 add EnergyFraction {1000023} {0.0}
553 add EnergyFraction {1000025} {0.0}
554 add EnergyFraction {1000035} {0.0}
555 add EnergyFraction {1000045} {0.0}
556 # energy fractions for K0short and Lambda
557 add EnergyFraction {310} {0.3}
558 add EnergyFraction {3122} {0.3}
559
560 # set ECalResolutionFormula {resolution formula as a function of eta and energy}
561 set ResolutionFormula {
562 (abs(eta) <= 0.78 ) * sqrt(energy^2*0.01^2 + energy*0.156^2)+
563 (abs(eta) > 0.78 && abs(eta) <=0.83 ) * sqrt( energy^0.01^2 + energy*0.175^2 ) +
564 (abs(eta) <= 3 && abs(eta) > 0.83) * sqrt( energy^2*0.01^2 + energy*0.151^2 )}
565}
566
567#############
568# HCAL
569#############
570
571module SimpleCalorimeter HCal {
572 set ParticleInputArray ParticlePropagator/stableParticles
573 set TrackInputArray ECal/eflowTracks
574
575 set TowerOutputArray hcalTowers
576 set EFlowTrackOutputArray eflowTracks
577 set EFlowTowerOutputArray eflowNeutralHadrons
578
579 set IsEcal false
580
581 set EnergyMin 1.0
582 set EnergySignificanceMin 1.0
583
584 set SmearTowerCenter true
585
586 set pi [expr {acos(-1)}]
587
588 # lists of the edges of each tower in eta and phi
589 # each list starts with the lower edge of the first tower
590 # the list ends with the higher edged of the last tower
591
592
593 #HCAL barrel: dphi = 1 degree, deta= 0.02 towers up to |eta| <=0.8
594 #HCAL ring: dphi = 1 degree, deta= 0.02 towers up to |eta| <=0.9
595 #HCAL endcaps: dphi = 6 degree, deta = 0.1 up to |eta| <=3.5
596 #HCAL cell sizes always 30x30 mm^2
597
598 #barrel and ring:
599 #dphi = 1 degree up to |eta| <=0.9
600 set PhiBins {}
601 for {set i -180} {$i <=180} {incr i} {
602 add PhiBins [expr {$i * $pi/180.0}]
603 }
604 #deta= 0.02 towers up to |eta| <=0.9
605 for {set i -45} {$i <=45} {incr i} {
606 set eta [expr {$i * 0.02}]
607 add EtaPhiBins $eta $PhiBins
608 }
609
610 #endcaps:
611 # dphi = 6 degree
612 set PhiBins {}
613 for {set i -30} {$i <=30} {incr i} {
614 add PhiBins [expr {$i * $pi/30.0}]
615 }
616 # deta =0.1 for 0.9 < |eta| <=3.0
617 #for -3.0 to -0.9, 21 segments
618 for {set i 1} {$i <=22} {incr i} {
619 set eta [expr {-3.1 + $i * 0.1}]
620 add EtaPhiBins $eta $PhiBins
621 }
622 #same for 0.9 to 3.0
623 for {set i 1} {$i <=22} {incr i} {
624 set eta [expr {0.8 + $i * 0.1 }]
625 add EtaPhiBins $eta $PhiBins
626 }
627
628 # default energy fractions {abs(PDG code)} {Fecal Fhcal}
629 add EnergyFraction {0} {1.0}
630 # energy fractions for e, gamma and pi0
631 add EnergyFraction {11} {0.0}
632 add EnergyFraction {22} {0.0}
633 add EnergyFraction {111} {0.0}
634 # energy fractions for muon, neutrinos and neutralinos
635 add EnergyFraction {12} {0.0}
636 add EnergyFraction {13} {0.0}
637 add EnergyFraction {14} {0.0}
638 add EnergyFraction {16} {0.0}
639 add EnergyFraction {1000022} {0.0}
640 add EnergyFraction {1000023} {0.0}
641 add EnergyFraction {1000025} {0.0}
642 add EnergyFraction {1000035} {0.0}
643 add EnergyFraction {1000045} {0.0}
644 # energy fractions for K0short and Lambda
645 add EnergyFraction {310} {0.7}
646 add EnergyFraction {3122} {0.7}
647
648 # set HCalResolutionFormula {resolution formula as a function of eta and energy}
649 #CLICdet internal studies
650 set ResolutionFormula {
651 (abs(eta)<= 0.3) * sqrt(1.38^2 + energy*0.308^2 + energy^2*0.050^2) +
652 (abs(eta)<= 0.78 && abs(eta) > 0.3) * sqrt(1.25^2 + energy*0.322^2 + energy^2*0.048^2) +
653 (abs(eta)<=1.099 && abs(eta) > 0.78) * sqrt( 1.159^2 + energy*0.341^2 + energy^2*0.049^2 ) +
654 (abs(eta)<=3 && abs(eta)> 1.099) * sqrt( 1.09^2 + energy*0.319^2 + energy^2*0.052^2 )
655 }
656
657}
658
659#################
660# Electron filter
661#################
662
663module PdgCodeFilter ElectronFilter {
664 set InputArray HCal/eflowTracks
665 set OutputArray electrons
666 set Invert true
667 add PdgCode {11}
668 add PdgCode {-11}
669}
670
671######################
672# ChargedHadronFilter
673######################
674
675module PdgCodeFilter ChargedHadronFilter {
676 set InputArray HCal/eflowTracks
677 set OutputArray chargedHadrons
678
679 add PdgCode {11}
680 add PdgCode {-11}
681 add PdgCode {13}
682 add PdgCode {-13}
683}
684
685
686
687###################################################
688# Tower Merger (in case not using e-flow algorithm)
689###################################################
690
691module Merger Calorimeter {
692 # add InputArray InputArray
693 add InputArray ECal/ecalTowers
694 add InputArray HCal/hcalTowers
695 set OutputArray towers
696}
697
698
699####################
700# Energy flow merger
701####################
702
703module Merger EFlowMerger {
704 # add InputArray InputArray
705 add InputArray HCal/eflowTracks
706 add InputArray ECal/eflowPhotons
707 add InputArray HCal/eflowNeutralHadrons
708 set OutputArray eflow
709}
710
711
712###################
713# Photon efficiency
714###################
715
716module Efficiency PhotonEfficiency {
717 set InputArray ECal/eflowPhotons
718 set OutputArray photons
719
720 # set EfficiencyFormula {efficiency formula as a function of eta and pt}
721
722 # efficiency formula for photons
723 # current full simulation of CLICdet yields:
724 set EfficiencyFormula {
725 (energy < 2.0 ) * (0.000) +
726 (energy >= 2.0) * (abs(eta) < 0.7)*(0.94) +
727 (energy >= 2.0) * (abs(eta) >=0.7 && abs(eta) <=3.0) * (0.9) }
728
729}
730
731##################
732# Photon isolation
733##################
734
735module Isolation PhotonIsolation {
736 set CandidateInputArray PhotonEfficiency/photons
737 set IsolationInputArray EFlowMerger/eflow
738
739 set OutputArray photons
740
741 set DeltaRMax 0.5
742
743 set PTMin 0.5
744
745 set PTRatioMax 0.12
746}
747
748#####################
749# Electron efficiency
750#####################
751
752module Efficiency ElectronEfficiency {
753 set InputArray ElectronFilter/electrons
754 set OutputArray electrons
755
756 # set EfficiencyFormula {efficiency formula as a function of eta and pt}
757
758 set EfficiencyFormula {
759 (energy < 3.0) * ( 0.00 ) +
760 ( energy >=3 && energy < 8 ) * (abs(eta) > 1.95) * (0.58 ) +
761 ( energy >=3 && energy < 8 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.7 ) +
762 ( energy >=3 && energy < 8 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.6 ) +
763 ( energy >=3 && energy < 8 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.7 ) +
764 ( energy >=3 && energy < 8 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.8 ) +
765 ( energy >=3 && energy < 8 ) * (abs(eta) <= 0.69) * (0.84 ) +
766 ( energy >=8 && energy < 13 ) * (abs(eta) > 1.95) * ( 0.6 ) +
767 ( energy >=8 && energy < 13 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.76 ) +
768 ( energy >=8 && energy < 13 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.67 ) +
769 ( energy >=8 && energy < 13 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.78 ) +
770 ( energy >=8 && energy < 13 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.86 ) +
771 ( energy >=8 && energy < 13 ) * (abs(eta) <= 0.69) * ( 0.88 ) +
772 ( energy >=13 && energy < 18 ) * (abs(eta) > 1.95) * ( 0.6 ) +
773 ( energy >=13 && energy < 18 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.8 ) +
774 ( energy >=13 && energy < 18 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.68 ) +
775 ( energy >=13 && energy < 18 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.84 ) +
776 ( energy >=13 && energy < 18 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.88 ) +
777 ( energy >=13 && energy < 18 ) * (abs(eta) <= 0.69) * ( 0.9 ) +
778 ( energy >=18 && energy < 23 ) * (abs(eta) > 1.95) * (0.64 ) +
779 ( energy >=18 && energy < 23 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * (0.82 ) +
780 ( energy >=18 && energy < 23 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.7 ) +
781 ( energy >=18 && energy < 23 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * (0.84 ) +
782 ( energy >=18 && energy < 23 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.9 ) +
783 ( energy >=18 && energy < 23 ) * (abs(eta) <= 0.69) * (0.92 ) +
784 ( energy >= 23 && energy < 28 ) * (abs(eta) > 1.95) * (0.64 ) +
785 ( energy >= 23 && energy < 28 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * (0.86 ) +
786 ( energy >= 23 && energy < 28 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * (0.74 ) +
787 ( energy >= 23 && energy < 28 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * (0.87 ) +
788 ( energy >= 23 && energy < 28 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * (0.91 ) +
789 ( energy >= 23 && energy < 28 ) * (abs(eta) <= 0.69) * (0.94 ) +
790 ( energy >=28 && energy < 35 ) * (abs(eta) > 1.95) * (0.67 ) +
791 ( energy >=28 && energy < 35 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * (0.88 ) +
792 ( energy >=28 && energy < 35 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * (0.78 ) +
793 ( energy >=28 && energy < 35 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.9 ) +
794 ( energy >=28 && energy < 35 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * (0.94 ) +
795 ( energy >=28 && energy < 35 ) * (abs(eta) <= 0.69) * (0.94 ) +
796 ( energy >=35 && energy < 45 ) * (abs(eta) > 1.95) * (0.68 ) +
797 ( energy >=35 && energy < 45 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.9 ) +
798 ( energy >=35 && energy < 45 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * (0.86 ) +
799 ( energy >=35 && energy < 45 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * (0.92 ) +
800 ( energy >=35 && energy < 45 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * (0.94 ) +
801 ( energy >=35 && energy < 45 ) * (abs(eta) <= 0.69) * (0.96 ) +
802 ( energy >=45 && energy < 80 ) * (abs(eta) > 1.95) * ( 0.7 ) +
803 ( energy >=45 && energy < 80 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.92 ) +
804 ( energy >=45 && energy < 80 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.8 ) +
805 ( energy >=45 && energy < 80 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.94 ) +
806 ( energy >=45 && energy < 80 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.96 ) +
807 ( energy >=45 && energy < 80 ) * (abs(eta) <= 0.69) * ( 0.97 ) +
808 ( energy >=80 && energy < 200 ) * (abs(eta) > 1.95) * (0.68 ) +
809 ( energy >=80 && energy < 200 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * (0.96 ) +
810 ( energy >=80 && energy < 200 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * (0.84 ) +
811 ( energy >=80 && energy < 200 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * (0.94 ) +
812 ( energy >=80 && energy < 200 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * (0.98 ) +
813 ( energy >=80 && energy < 200 ) * (abs(eta) <= 0.69) * (0.98 ) +
814 ( energy >=200 && energy < 400 ) * (abs(eta) > 1.95) * ( 0.68 ) +
815 ( energy >=200 && energy < 400 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * ( 0.97 ) +
816 ( energy >=200 && energy < 400 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * ( 0.86 ) +
817 ( energy >=200 && energy < 400 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * ( 0.96 ) +
818 ( energy >=200 && energy < 400 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * ( 0.98 ) +
819 ( energy >=200 && energy < 400 ) * (abs(eta) <= 0.69) * ( 0.98 ) +
820 ( energy >=400 ) * (abs(eta) > 1.95) * (0.68 ) +
821 ( energy >=400 ) * (abs(eta) <= 1.95 && abs(eta) > 1.22) * (0.96 ) +
822 ( energy >=400 ) * (abs(eta) <= 1.22 && abs(eta) > 1.1 ) * (0.82 ) +
823 ( energy >=400 ) * (abs(eta) <= 1.1 && abs(eta) > 0.91 ) * (0.96 ) +
824 ( energy >=400 ) * (abs(eta) <= 0.91 && abs(eta) > 0.69) * (0.98 ) +
825 ( energy >=400 ) * (abs(eta) <= 0.69) * (0.98 )
826 }
827}
828
829####################
830# Electron isolation
831####################
832
833module Isolation ElectronIsolation {
834 set CandidateInputArray ElectronEfficiency/electrons
835 set IsolationInputArray EFlowMerger/eflow
836
837 set OutputArray electrons
838
839 set DeltaRMax 0.5
840
841 set PTMin 0.5
842
843 set PTRatioMax 0.12
844}
845
846#################
847# Muon efficiency
848#################
849
850module Efficiency MuonEfficiency {
851 set InputArray MuonMomentumSmearing/muons
852 set OutputArray muons
853
854 # set EfficiencyFormula {efficiency as a function of eta and pt}
855
856 # efficiency formula for muons
857 # current full simulation of CLICdet yields:
858
859
860
861 set EfficiencyFormula {
862 (energy < 2.0 ) * (0.00) +
863 (energy>=2.0) * (0.999)
864 }
865}
866
867################
868# Muon isolation
869################
870
871module Isolation MuonIsolation {
872 set CandidateInputArray MuonEfficiency/muons
873 set IsolationInputArray EFlowMerger/eflow
874
875 set OutputArray muons
876
877 set DeltaRMax 0.5
878
879 set PTMin 0.5
880
881 set PTRatioMax 0.25
882}
883
884
885
886###################
887# Missing ET merger
888###################
889
890module Merger MissingET {
891 # add InputArray InputArray
892 add InputArray EFlowMerger/eflow
893 set MomentumOutputArray momentum
894}
895
896
897##################
898# Scalar HT merger
899##################
900
901module Merger ScalarHT {
902 # add InputArray InputArray
903 add InputArray EFlowMerger/eflow
904 set EnergyOutputArray energy
905}
906######################
907# EFlowFilter (UniqueObjectFinder)
908######################
909module UniqueObjectFinder EFlowFilter {
910 add InputArray PhotonIsolation/photons photons
911 add InputArray ElectronIsolation/electrons electrons
912 add InputArray MuonIsolation/muons muons
913 add InputArray EFlowMerger/eflow eflow
914}
915
916#################
917# Neutrino Filter
918#################
919
920module PdgCodeFilter NeutrinoFilter {
921
922 set InputArray Delphes/stableParticles
923 set OutputArray filteredParticles
924
925 set PTMin 0.0
926
927 add PdgCode {12}
928 add PdgCode {14}
929 add PdgCode {16}
930 add PdgCode {-12}
931 add PdgCode {-14}
932 add PdgCode {-16}
933
934}
935
936
937#####################
938# MC truth jet finder
939#####################
940
941module FastJetFinder GenJetFinder {
942 set InputArray NeutrinoFilter/filteredParticles
943
944 set OutputArray jets
945
946 # algorithm: 1 CDFJetClu, 2 MidPoint, 3 SIScone, 4 kt, 5 Cambridge/Aachen, 6 antikt, 7 anti-kt with winner-take-all axis (for N-subjettiness), 8 N-jettiness, 9 Valencia
947 set JetAlgorithm 9
948 set ParameterR 0.5
949
950 set JetPTMin 20.0
951}
952
953#########################
954# Gen Missing ET merger
955########################
956
957module Merger GenMissingET {
958 # add InputArray InputArray
959 add InputArray NeutrinoFilter/filteredParticles
960 set MomentumOutputArray momentum
961}
962
963
964
965############
966# Jet finder
967############
968
969module FastJetFinder FastJetFinderKt {
970 # set InputArray Calorimeter/towers
971 set InputArray EFlowMerger/eflow
972
973 set OutputArray KTjets
974
975 # algorithm: 1 CDFJetClu, 2 MidPoint, 3 SIScone, 4 kt, 5 Cambridge/Aachen, 6 antikt, 7 anti-kt with winner-take-all axis (for N-subjettiness), 8 N-jettiness, 9 Valencia
976 set JetAlgorithm 4
977 set ParameterR 0.5
978
979 set JetPTMin 20.0
980}
981
982################
983# Jet finder VLC
984################
985
986
987source CLIC/CLICdet_JetReco.tcl
988
989#########################################
990# Jet Momentum Smearing to mimick overlay
991#########################################
992
993
994source CLIC/CLICdet_JetSmearing_1500.tcl
995
996
997########################
998# Jet Flavor Association
999########################
1000
1001source CLIC/CLICdet_JetFlavorAssociation.tcl
1002
1003###########
1004# b-tagging
1005###########
1006# based on CLICdp-Note-2014-002
1007
1008source CLIC/CLICdet_BTagging.tcl
1009
1010
1011#############
1012# tau-tagging
1013#############
1014# based on LCD-2010-009
1015
1016source CLIC/CLICdet_TauTagging.tcl
1017
1018
1019
1020##################
1021# ROOT tree writer
1022##################
1023
1024module TreeWriter TreeWriter {
1025 # add Branch InputArray BranchName BranchClass
1026 add Branch Delphes/allParticles Particle GenParticle
1027
1028 add Branch GenJetFinder/jets GenJet Jet
1029
1030 add Branch FastJetFinderKt/KTjets KTjet Jet
1031 add Branch FastJetFinderVLC_R05_N2/VLCjetsR05N2 VLCjetR05N2 Jet
1032 add Branch FastJetFinderVLC_R05_N3/VLCjetsR05N3 VLCjetR05N3 Jet
1033 add Branch FastJetFinderVLC_R05_N4/VLCjetsR05N4 VLCjetR05N4 Jet
1034 add Branch FastJetFinderVLC_R05_N5/VLCjetsR05N5 VLCjetR05N5 Jet
1035 add Branch FastJetFinderVLC_R05_N6/VLCjetsR05N6 VLCjetR05N6 Jet
1036
1037 add Branch FastJetFinderVLC_R07_N2/VLCjetsR07N2 VLCjetR07N2 Jet
1038 add Branch FastJetFinderVLC_R07_N3/VLCjetsR07N3 VLCjetR07N3 Jet
1039 add Branch FastJetFinderVLC_R07_N4/VLCjetsR07N4 VLCjetR07N4 Jet
1040 add Branch FastJetFinderVLC_R07_N5/VLCjetsR07N5 VLCjetR07N5 Jet
1041 add Branch FastJetFinderVLC_R07_N6/VLCjetsR07N6 VLCjetR07N6 Jet
1042
1043 add Branch FastJetFinderVLC_R10_N2/VLCjetsR10N2 VLCjetR10N2 Jet
1044 add Branch FastJetFinderVLC_R10_N3/VLCjetsR10N3 VLCjetR10N3 Jet
1045 add Branch FastJetFinderVLC_R10_N4/VLCjetsR10N4 VLCjetR10N4 Jet
1046 add Branch FastJetFinderVLC_R10_N5/VLCjetsR10N5 VLCjetR10N5 Jet
1047 add Branch FastJetFinderVLC_R10_N6/VLCjetsR10N6 VLCjetR10N6 Jet
1048
1049 add Branch FastJetFinderVLC_R12_N2/VLCjetsR12N2 VLCjetR12N2 Jet
1050 add Branch FastJetFinderVLC_R12_N3/VLCjetsR12N3 VLCjetR12N3 Jet
1051 add Branch FastJetFinderVLC_R12_N4/VLCjetsR12N4 VLCjetR12N4 Jet
1052 add Branch FastJetFinderVLC_R12_N5/VLCjetsR12N5 VLCjetR12N5 Jet
1053 add Branch FastJetFinderVLC_R12_N6/VLCjetsR12N6 VLCjetR12N6 Jet
1054
1055 add Branch FastJetFinderVLC_R15_N2/VLCjetsR15N2 VLCjetR15N2 Jet
1056 add Branch FastJetFinderVLC_R15_N3/VLCjetsR15N3 VLCjetR15N3 Jet
1057 add Branch FastJetFinderVLC_R15_N4/VLCjetsR15N4 VLCjetR15N4 Jet
1058 add Branch FastJetFinderVLC_R15_N5/VLCjetsR15N5 VLCjetR15N5 Jet
1059 add Branch FastJetFinderVLC_R15_N6/VLCjetsR15N6 VLCjetR15N6 Jet
1060
1061 add Branch FastJetFinderVLC_R05_inclusive/VLCjetsR05_inclusive VLCjetR05_inclusive Jet
1062 add Branch FastJetFinderVLC_R07_inclusive/VLCjetsR07_inclusive VLCjetR07_inclusive Jet
1063 add Branch FastJetFinderVLC_R10_inclusive/VLCjetsR10_inclusive VLCjetR10_inclusive Jet
1064 add Branch FastJetFinderVLC_R12_inclusive/VLCjetsR12_inclusive VLCjetR12_inclusive Jet
1065 add Branch FastJetFinderVLC_R15_inclusive/VLCjetsR15_inclusive VLCjetR15_inclusive Jet
1066
1067
1068
1069
1070 ###with jet energy smearing and jet energy scaling
1071 add Branch JetMomentumSmearing_VLCR05N2/JER_VLCjetsR05N2 JER_VLCjetR05N2 Jet
1072 add Branch JetMomentumSmearing_VLCR05N3/JER_VLCjetsR05N3 JER_VLCjetR05N3 Jet
1073 add Branch JetMomentumSmearing_VLCR05N4/JER_VLCjetsR05N4 JER_VLCjetR05N4 Jet
1074 add Branch JetMomentumSmearing_VLCR05N5/JER_VLCjetsR05N5 JER_VLCjetR05N5 Jet
1075 add Branch JetMomentumSmearing_VLCR05N6/JER_VLCjetsR05N6 JER_VLCjetR05N6 Jet
1076
1077 add Branch JetMomentumSmearing_VLCR07N2/JER_VLCjetsR07N2 JER_VLCjetR07N2 Jet
1078 add Branch JetMomentumSmearing_VLCR07N3/JER_VLCjetsR07N3 JER_VLCjetR07N3 Jet
1079 add Branch JetMomentumSmearing_VLCR07N4/JER_VLCjetsR07N4 JER_VLCjetR07N4 Jet
1080 add Branch JetMomentumSmearing_VLCR07N5/JER_VLCjetsR07N5 JER_VLCjetR07N5 Jet
1081 add Branch JetMomentumSmearing_VLCR07N6/JER_VLCjetsR07N6 JER_VLCjetR07N6 Jet
1082
1083 add Branch JetMomentumSmearing_VLCR10N2/JER_VLCjetsR10N2 JER_VLCjetR10N2 Jet
1084 add Branch JetMomentumSmearing_VLCR10N3/JER_VLCjetsR10N3 JER_VLCjetR10N3 Jet
1085 add Branch JetMomentumSmearing_VLCR10N4/JER_VLCjetsR10N4 JER_VLCjetR10N4 Jet
1086 add Branch JetMomentumSmearing_VLCR10N5/JER_VLCjetsR10N5 JER_VLCjetR10N5 Jet
1087 add Branch JetMomentumSmearing_VLCR10N6/JER_VLCjetsR10N6 JER_VLCjetR10N6 Jet
1088
1089 add Branch JetMomentumSmearing_VLCR12N2/JER_VLCjetsR12N2 JER_VLCjetR12N2 Jet
1090 add Branch JetMomentumSmearing_VLCR12N3/JER_VLCjetsR12N3 JER_VLCjetR12N3 Jet
1091 add Branch JetMomentumSmearing_VLCR12N4/JER_VLCjetsR12N4 JER_VLCjetR12N4 Jet
1092 add Branch JetMomentumSmearing_VLCR12N5/JER_VLCjetsR12N5 JER_VLCjetR12N5 Jet
1093 add Branch JetMomentumSmearing_VLCR12N6/JER_VLCjetsR12N6 JER_VLCjetR12N6 Jet
1094
1095 add Branch JetMomentumSmearing_VLCR15N2/JER_VLCjetsR15N2 JER_VLCjetR15N2 Jet
1096 add Branch JetMomentumSmearing_VLCR15N3/JER_VLCjetsR15N3 JER_VLCjetR15N3 Jet
1097 add Branch JetMomentumSmearing_VLCR15N4/JER_VLCjetsR15N4 JER_VLCjetR15N4 Jet
1098 add Branch JetMomentumSmearing_VLCR15N5/JER_VLCjetsR15N5 JER_VLCjetR15N5 Jet
1099 add Branch JetMomentumSmearing_VLCR15N6/JER_VLCjetsR15N6 JER_VLCjetR15N6 Jet
1100
1101 add Branch JetMomentumSmearing_VLCR05_inclusive/JER_VLCjetsR05_inclusive JER_VLCjetR05_inclusive Jet
1102 add Branch JetMomentumSmearing_VLCR07_inclusive/JER_VLCjetsR07_inclusive JER_VLCjetR07_inclusive Jet
1103 add Branch JetMomentumSmearing_VLCR10_inclusive/JER_VLCjetsR10_inclusive JER_VLCjetR10_inclusive Jet
1104 add Branch JetMomentumSmearing_VLCR12_inclusive/JER_VLCjetsR12_inclusive JER_VLCjetR12_inclusive Jet
1105 add Branch JetMomentumSmearing_VLCR15_inclusive/JER_VLCjetsR15_inclusive JER_VLCjetR15_inclusive Jet
1106
1107 ####
1108
1109 add Branch GenMissingET/momentum GenMissingET MissingET
1110
1111 add Branch TrackMerger/tracks Track Track
1112 add Branch Calorimeter/towers Tower Tower
1113
1114 add Branch HCal/eflowTracks EFlowTrack Track
1115 add Branch ECal/eflowPhotons EFlowPhoton Tower
1116 add Branch HCal/eflowNeutralHadrons EFlowNeutralHadron Tower
1117
1118 add Branch EFlowFilter/photons Photon Photon
1119 add Branch EFlowFilter/electrons Electron Electron
1120 add Branch EFlowFilter/muons Muon Muon
1121
1122 add Branch MissingET/momentum MissingET MissingET
1123 add Branch ScalarHT/energy ScalarHT ScalarHT
1124}
1125
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