Single pi (e=50GeV) scan of ECAL+HCAL

>>> click on thumbnail to get a full-size plot



Simulation details:
- 50k events - no field
- no vertex smearing
- no Triggers


Plotted in this row is the SimHits energy collected in R=0.3 : EM, HAD and EM+HAD without HO
Plots ====>>> Em component >>> Had component (no HO) >>> Total energy (Em+Had) >>>



Plotted in this row is the number of Digis per each subdetector


Plotted in this row is the HCAL subdetectors RecHits energy (mostly noise with single-pion contributin on the right side
Plots ====>>> HB >>> HE >>> HO >>> HF


Plotted in this row is the RecHits timing vs energy
Plots ====>>> HB >>> HE >>> HF


Plotted in this row is the RecHits energy collected in R=0.3 : EM, HAD and EM+HAD without HO
Plots ====>>> Em component >>> Had component (no HO) >>> Total energy (Em+Had) >>> Ratio of Had component


Plotted in this row is log_10(Chi2)
Plots ====>>> HB/HE log_10(Chi2) 1D inclusive >>> HB/HE log_10(Chi2) vs energy profile


Plotted in the row below is EM, HAD, EM+HAD for
ONE single CaloTower in the event, which is closest to the MC direction of the pion
Also added is a plot of the single CaloTower scale ratio (new / previous). The idea is to avoid any clustering (which masks transition) and to pinpoint each ieta ring in the most simplified and clear way.

Plots ====>>> Em component >>> Had component (no HO) >>> Total energy (Em+Had) >>> Ratio of total energy


Number of CaloTowers in HB, HE and HF (separately)