Contents:
- First Result with IsoTrack_3x3 response correction
- Results with Merged response correction
- Energy in 3x3 , MIP, w/o HO
- Energy in 3x3 , MIP, with HO
- Energy in 3x3 , HCAL + ECAL , w/o HO
- Energy in 3x3 , HCAL + ECAL , with HO
- Energy in 3x3 , HCAL , w/o HO (RMS/E)
- Energy in 3x3 , HCAL , with HO (RMS/E)
- "Banana" plots for HB ieta.le.14
- Energy spectrum, 3x3, MIP, HB w/o HO, ieta.le.14
- Energy spectrum, 3x3, MIP, HB with HO, ieta.le.14
- Energy spectrum, 3x3, MIP, with vs w/o HO, ieta.le.14 and HBvsHO profiles
- Energy spectrum, 3x3, MIP, HE, ieta 17-22
- Phi material effect in HB (ieta .le. 14)
- Full eta range with Merged response correction
First Result with IsoTrack_3x3 response correction
Response correction for iEta up to 19 is checked.
http://cmsdoc.cern.ch/~anastass/isoTrkP50/calibConst_IsoTrk_3x3.txt
Used sample : pi E=50
GeV.
3x3 cluster centered on maximum
RecHit in HCAL. 3x3 cluster is calculated based on iEta (same definition for 10 deg. towers in HE, which means that there 3x3 is practically 3x1)
Results with Merged response correction
Response corrections from
IsoTracs and di-Jets
/afs/cern.ch/user/a/anastass/public/html/calibDepths/calibConst_testMerged.txt
Semples used:
pi, E= 10,50,100,300
GeV, magnet field ON
/castor/cern.ch/user/a/abdullin/single_pi_full/
3x3 cluster centered on maximum Tower (different wrt first check) in HCAL.
3x3 definition for 10 deg. towers in HE:
eta: 3 towers
phi: 3 towers (10 deg each)
Additional cleaning cuts:
Ehcal/p > 0.2
ieta and iphi distance between the tower with maximum energy and the propagated
IsoTrack tower is at most 1.
MIP is ECAL energy .lt. 1.0
GeV
All plots : red - uncorrected, blue - corrected (with response correction)
Energy in 3x3 , MIP, w/o HO
- pi 10 GeV 3x3 woHO MIP:
- pi 50 GeV 3x3 woHO MIP:
- pi 100 GeV 3x3 woHO MIP:
- pi 300 GeV 3x3 woHO MIP:
Energy in 3x3 , MIP, with HO
- pi 10 GeV 3x3 w/o HO MIP:
- pi 50 GeV 3x3 w/o HO MIP:
- pi 100 GeV 3x3 w/o HO MIP:
- pi 300 GeV 3x3 w/o HO MIP:
Energy in 3x3 , HCAL + ECAL , w/o HO
- pi 10 GeV 3x3 woHO HCAL+ECAL:
- pi 50 GeV 3x3 woHO HCAL+ECAL
- pi 100 GeV 3x3 woHO HCAL+ECAL:
- pi 300 GeV 3x3 woHO HCAL+ECAL:
Energy in 3x3 , HCAL + ECAL , with HO
- pi 10 GeV 3x3 woHO HCAL+ECAL:
- pi 50 GeV 3x3 woHO HCAL+ECAL
- pi 100 GeV 3x3 woHO HCAL+ECAL:
- pi 300 GeV 3x3 woHO HCAL+ECAL:
Energy in 3x3 , HCAL , w/o HO (RMS/E)
- pi 10 GeV 3x3 woHO RMS/E:
- pi 50 GeV 3x3 woHO RMS/E:
- pi 100 GeV 3x3 woHO RMS/E:
- pi 300 GeV 3x3 woHO RMS/E:
Energy in 3x3 , HCAL , with HO (RMS/E)
- pi 10 GeV 3x3 woHO RMS/E:
- pi 50 GeV 3x3 woHO RMS/E:
- pi 100 GeV 3x3 woHO RMS/E:
- pi 300 GeV 3x3 woHO RMS/E:
"Banana" plots for HB ieta.le.14
- pi 10 GeV HCAL 3x3 vs ECAL:
- pi 50 GeV HCAL 3x3 vs ECAL:
- pi 100 GeV HCAL 3x3 vs ECAL:
- pi 300 GeV HCAL 3x3 vs ECAL:
Energy spectrum, 3x3, MIP, HB w/o HO, ieta.le.14
- pi 10 GeV 3x3 w/o HO MIP:
- pi 50 GeV 3x3 w/o HO MIP:
- pi 100 GeV 3x3 w/o HO MIP:
- pi 300 GeV 3x3 w/o HO MIP:
Energy spectrum, 3x3, MIP, HB with HO, ieta.le.14
- pi 10 GeV 3x3 with HO MIP:
- pi 50 GeV 3x3 with HO MIP:
- pi 100 GeV 3x3 with HO MIP:
- pi 300 GeV 3x3 with HO MIP:
Energy spectrum, 3x3, MIP, with vs w/o HO, ieta.le.14 and HBvsHO profiles
red: w/o HO, blue : with HO
- pi 10 GeV 3x3 MIP:
- pi 50 GeV 3x3 MIP:
- pi 100 GeV 3x3 MIP:
- pi 300 GeV 3x3 MIP:
- pi 300 GeV 3x3 MIP , 2xHO:
- pi 300 GeV 3x3 MIP, Ring 0 (ieta.le.4) HB vs HO profile:
- pi 300 GeV 3x3 MIP, Rings 1 and 2 HB vs HO profile:
Energy spectrum, 3x3, MIP, HE, ieta 17-22
- pi 10 GeV 3x3 MIP:
- pi 50 GeV 3x3 MIP:
- pi 100 GeV 3x3 MIP:
- pi 300 GeV 3x3 MIP:
Phi material effect in HB (ieta .le. 14)
- pi 10 GeV 3x3 woHO MIP:
- pi 50 GeV 3x3 woHO MIP:
- pi 100 GeV 3x3 woHO MIP:
- pi 300 GeV 3x3 woHO MIP:
Full eta range with Merged response correction
Response corrections from
IsoTracs and di-Jets
/afs/cern.ch/user/a/anastass/public/html/calibDepths/calibConst_testMerged.txt
Semples used:
pi, E= 10,50,100,300
GeV, magnet field ON
/castor/cern.ch/user/a/abdullin/single_pi_full/
Cone R= 0.4 (in eta-phi space) is used around particle direction from MC info (not propagated).
Energy in cone 0.4 , with HO , (HF with 0.7 factor)
Energy in cone 0.4 , with HO , MIP in EB and EE
- pi 300 GeV HCAL Cone 0.4, MIP:
Energy in cone 0.4 ,ECAL + HCAL with HO
- pi 300 GeV ECAL + HCAL Cone 0.4:
Energy in cone 0.4 , with HO , (HF with 1.0 factor)
Energy in cone 0.4 , with HO , MIP in EB and EE
- pi 50 GeV HCAL, Cone 0.4, MIP:
- pi 100 GeV HCAL, Cone 0.4, MIP:
- pi 300 GeV HCAL, Cone 0.4, MIP:
Energy in cone 0.4 ,ECAL + HCAL with HO
- pi 50 GeV ECAL + HCAL Cone 0.4:
- pi 100 GeV ECAL + HCAL Cone 0.4:
- pi 300 GeV ECAL + HCAL Cone 0.4: