computing

Software and Computing phone meeting

-00-00
Thursday, 1 January 1970
, at 00:00 (GMT), duration : 00:00
TimeTalkPresenter
12:00Embedding focus - progress overview ( 00:15 ) 0 filesOlga Barannikova (UIC)
12:15SSD Fast Simulator ( 00:10 ) 1 fileJoseph Vanfossen (KSU)
12:25Xrootd, ROOT 5.12 patching ( 00:05 ) 0 filesPavel Jakl (NPI-AS)
12:30AOB ( 00:10 ) 0 filesAll (All)
12:40News from the front ( 00:15 ) 0 filesJim Sowinski (IUCF)

Software and Computing phone meeting

-00-00
Thursday, 1 January 1970
, at 00:00 (GMT), duration : 00:00
TimeTalkPresenter
12:00BBC ADC Signatures of SpaceCharge azimuthal anisotropy ( 00:15 ) 0 filesG. Van Buren (BNL)
12:15Error fitting with Sti, status report ( 00:10 ) 1 fileVictor Perevoztchikov (BNL)
12:25SVT development task list ( 00:10 ) 0 filesJ. Lauret (BNL)
12:35Institution disk space - policy reminder, the BNL case ( 00:10 ) 0 filesAll (All)
12:45Year7 geometry readiness ( 00:10 ) 0 filesMaxim Potekhin (BNL)
12:55AOB ( 00:05 ) 0 filesAll (All)

Software and Computing phone meeting

-00-00
Thursday, 1 January 1970
, at 00:00 (GMT), duration : 00:00
TimeTalkPresenter
12:00SVT+SSD alignement progress overview ( 00:15 ) 1 fileYuri Fisyak (BNL)
12:15T0/Drift Velocity studies ( 00:15 ) 1 fileIvan Kotov (OSU)
12:30Drift Velocity parametrization ( 00:15 ) 1 fileVladimir Rykov (OSU)
12:45Geometry readiness for Y7 & R&D detector naming ( 00:10 ) 0 filesMaxim Potekhin (BNL)
12:55AOB ( 00:05 ) 0 filesAll (All)

Peter J., Jan 4, 2007

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Hi GPC and PAs,

Here are some first comments on the paper draft:

(i) physics intro, 1st para: I find the physics intro to be a bit confusing. I looked briefly at refs [6,7] (Brodsky et al and Collins). Within my distinctly limited understanding of them I don't think the last sentence of the first paragraph is accurate, and the main physics point of interest in this measurement is missed.

Residual and Pull plots (HowTo)

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Sti has a nice utility for providing Pull and residual plots for all detectors. The chain option is "StiPulls". The resulting ntuple is written to the .tag.root file.

Among other things, the ntuple stores the (position of the hit - position of the track) in the variables ending in "Pull". It should be noted that the variable contains this difference (or residual), and NOT the difference scaled by the error. This is left for the user. There are several branches of the pulls tree; one for global tracks, one for primary tracks, and one filled only during the outside-in pass of tracking.

Floating Grid Wire Studies

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Distortions in TPC data (track residuals) are seen in 2004-2006 data which are hypothesized to come from a floating Gating Grid wire. Notes from a meeting of TPC experts regarding the topic held in October 2006 can be found

Caveats, issues, special cases and possible problems

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Shortcut links

QA Status (OBSOLETE)

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The full list of STAR embedding requests (Since August, 2010):
http://drupal.star.bnl.gov/STAR/starsimrequest

Migrating drupal to a new node

Ideally, Drupal would be installed under a generic alias name. But if this is not done, there are a hand full of places you need to alter for a full migration.

Work Planned (OBSOLETE)

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Based on:

LSF job manager

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LSF job manager code below is from globus 2.4.3.

SGE Job Manager

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SGE job manager code was developed by the UK Grid eScience. It is provided as-is for quick code inspection. The version below is as integrated in VDT 1.5.2 (post OSG 0.4.1). Please, note that the version below includes patches provided by the RHIC/STAR VO. Consult SGE Job Manager patch for more information.

Condor Job Manager

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Condor job manager code is provided as-is for quick code inspection. The version below is from the OSG 0.4.1 software stack.

# Globus::GRAM::JobManager::condor package

Job Managers

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Several job managers are available as part of any OSG/VDT/Globus deploymenets. They may restrict access to keywords fundamental to job control and efficiency or may not even work.
The pages here will documents the needed changes or features.

Previous results - May 2002

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This document is intended to provide all the information available for previous productions such that results for Quality Control studies and Productions Cross checks. Part of quality control studies include identification of missing/dead detector areas, distance of closest approach distributions (dca), and fit points distributions(Nfit). As part of production cross checks, some results in centrality dependance and efficiency are shown

Problems found and solved

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Hit Level

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At the hit level, this is the documentation:

* StEmbedHitsMaker.C

* doEmbedHits.C

* ScanHits.C

* PlotHits.C

See below the links for these macros

Jobs Done

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P05id

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P05id Cu+Cu Embedding

Hit level check-up : At the Hit level the results look in good agreement.
  • Missing/Dead Areas (PiMinus): The next graphs show dead sectors  for embeded data and real data as well.
  • Hits-P05id_200cucu-PiMinus_hitsXYeast_p2.gif
    Hits-P05id_200cucu-PiMinus_hitsXYwest_p2.gif

    BBC Scaler Signatures of SpaceCharge azimuthal anisotropy

    Under:

    In my azimuthal sDCA studies, I observed static and dynamic azimuthal asymmetries in the CuCu200 data. One suggested possible way to avoid this in upcoming heavy ion runs is to see if there are any online scalers which could be used to give feedback to C-AD as to whether backgrounds at STAR are acceptable in terms of TPC ionization distortions. Towards this end, I have begun a study of whether the BBC scalers might be useful in this regard.

    It is important to understand some things about the BBC geometry. Ideally, the large outer tiles are closer to the TPC and more likely represent information relevant to what is happening in the TPC. We would most likely want to implement scalers for these in an upcoming heavy ion run. Unfortunately, in the past we have only taken scaler data for the smaller inner tiles, which are at much smaller radii than the TPC. I show below a schematic I have made of the BBC geometry and PMT layout with respect to a view from the west side of the IR (looking east).

    I have arranged the following plots similarly to my azimuthal sDCA studies. First, some terminology. I define NRate (normalized rate) to be the rate of a given PMT's scaler divided by the sum of all 16 inner tile PMT scalers. If I did not normalize the rates in this manner, we would primarily see the simple effect that the rates fluctuate with the luminosity, falling off methodically as the fills progress and lose their luminosity. Secondly, because of the arrangement of PMTs in the BBCs, I have excluded those PMTs which cover two tiles. This means I have 8 useful PMTs on the outer ring of small tiles, and 6 in the inner ring.

    In the plots below, the first row shows the <NRate> (mean normalized rate) value for each phi bin. In the subsequent rows, I plot NRate-< NRate> versus day (with each phi bin offset) to see what's happening on sub-day time scales, and versus day in a colored 2D graph to see what's happening on larger time scales. There are two sets of plots: the first is all the CuCu200 BBC scaler data I have, and the second is only for days 37-44 (runs 6037039-6044001) to provide more direct comparison with the CuCu200 data in the sDCA studies.

    Additional comments below the plots.

    CuCu200 (all days I have)

    I have data primarily for the RFF running, and just a couple days into the FF running.

     

    2005 CuCu 200 Small outer tiles east Small outer tiles west Small inner tiles east Small inner tiles west
    <NRate>
    NRate - <NRate> vs. day
    NRate - <NRate> vs. day

     

    CuCu200 (days37-44)

    Runs 6037039-6044001.

     

    days 37-44 Small outer tiles east Small outer tiles west Small inner tiles east Small inner tiles west
    <NRate>
    NRate - <NRate> vs. day
    NRate - <NRate> vs. day

    The outer small east tile scalers show a very strong signal at phi just below pi. This corresponds to the same azimuthal region for which we have seen other signatures of backgrounds. Additionally, visible dynamic fluctuations appear at the same region in phi for the same outer small east tile scalers. Interestingly, the signs are not as strong on the west side. Also, the inner small tile scalers show a smaller static signature, and almost no noticeable dynamic signatures. Another perhaps interesting note is that the <NRate> values are almost identical for the full dataset and for the days 37-44 subset.

    The preliminary conclusion is that there is useful information in the BBC scalers, even the small tile scalers, on backgrounds which may affect ionization within the TPC.

     


    Gene Van Buren