EEMC Timing Curves -New

 EEMC Timing Curves

 

Run Number     ESMD         ETOW

Public talk

After giving public talks for RHIC as part of the BNL Speakers Bureau from 2000-2006, I accumulated a lot of material into the talks.

EEMC Timing Curves Tower by Tower

 EEMC Timing Curves Tower by Tower

 

ongoing ana of Ws for run 11

Unresolved/unasigned

Run11 ETOW timing curves (and vs. Run 10)

Results from the Run 11 timing scan for ETOW are in the attached .pdf below.

The analysis and curves are from Seema's blog posting;

Revised EEMC Timing Curves

In my earlier blog entry on EEMC timing curves, x-axis labels were not correct for mapmt timing curves!

Preliminary EEMC Timing Curves by crate

Introduction

Runs taken for EEMC timing :

Relative Luminosity - III

averaged 3 parameters of the gain curve

Based on the gain curves from LED runs 12016005~12016034( with DX current= 145A and STAR magnet on at full field B polarity), we calculated averaged 3 parameters that will be used in the beginning

Inputs to 24-bit scalers at start of run-11

Proposed map of inputs for 6 24-bit scalerboards at the start of run-11.

Relative Luminosity Studies - VII

 See attached files.

nSigma Cut Study for lambda1520 in Run5 CuCu 200GeV

dEdx nSigma cut efficiency study

NsigmaStudy2.pdf is presentation slide.

Lambda1520_Nsigma15Pro20Free.pdf is fit result without fixing parameters.

Gain Changes for FMS high voltage changes

 Hi,

I have looked at Run 12025138. The ADC distributions are listed below.

Radiation Monitoring

Speaker : Howard M.


Talk time : 08:50, Duration : 00:20

2011 WWND Gluon polarization talk

BTOW Timing for 2011

I attach the timing curves for each crate in the BTOW subsystem. The red line in each graph represents the centroid of the gaussian fit to the data, while the red line is the default setting.

Fine Tuning the 2009 SMD Calibration Scale

1. Preliminaries

Update 1/26/11

Figure 1 shows the eta-phi distribution of the higher energy tower in pion candidates from data with decays into non-adjacent towers and reconstructed invariant mass between .1 and .4 GeV.  Fi

single electron embedding in 200 GeV Au+Au collisions taken in year 2010

Request TypeStandard Embedding request (particle in real events)
Description

particle: electron

pT: 0-2 GeV/c  flat pT

eta: |eta|<1.2 flat eta

trigger id: 260001,260011,260021,260031

production lib: SL10k

5% of the multiplicity tracks embedded.

Vz:|Vz| < 50 cm

Events:500Kafter the trigger and vertex cut

 

General Information
Request ID2011401
Priority: EC0
Priority: pwgNormal
StatusClosed
Physics Working GroupLight Flavor Spectra
Requested byruanlj
Contact email(s)ruanlj@rcf.rhic.bnl.gov, jzhao@lbl.gov
Contact phone(s)
PWG email(s)lfspectra-hn@www.star.bnl.gov
Assigned Deputy:
Assigned Helper: Not assigned
Global Simulation Settings
Request type:Standard Embedding request (particle in real events)
Number of events500000 = 500 K
Magnetic Field---- SELECT MAGFIELD ----
Collision Typeauau 200GeV
Centrality---- SELECT CENTRALITY ----
BFC tags
Production---- SELECT PRODUCTION TAG ----
Geometry: simu---- SELECT GEOMETRY ----
Geometry: reco---- SELECT GEOMETRY ----
Library---- SELECT STAR LIBRARY ----
Vertex option---- SELECT VERTEX OPTION ----
Pileup optionNo
Detector Set
Data Sources
Real Data
File lookup
Single Particle MC
ParticleElectron
Particle settingsFlat in Pt
Particles per event5
Vertex Z, cm-50 < Vertex < 50
Gaussian sigma in X,Y,Z (cm), if applicable0, 0, 0
Vertex offset: x, mm0
Vertex offset: y, mm0
Φ (phi), radian0 < Φ < 6.29
η (eta)-1.2 < η < 1.2
Pt, GeV0 < Pt < 2

Modifying FMS voltages and gains (update)

Disclaimer: As of this date, the code is still 'in progress' and subject to change. Any information on bugs encountered, or additional features desired, are welcome.