GEn: Software and Analysis Tasks - PowerPoint PPT Presentation

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GEn: Software and Analysis Tasks

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BB required a different processing order: called for a new implementation of ... The reconstruction algorithms are in place, with plans to work to improve them. ... – PowerPoint PPT presentation

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Title: GEn: Software and Analysis Tasks


1
GEn Softwareand Analysis Tasks
  • Robert J. Feuerbach (JLab) for
  • The GEn Collaboration

2
Software Requirements of GEn
  • Special two new apparatuses (and detectors)
  • Track reconstruction from BigBite (new algorithm
    see Seamuss talk)
  • Cluster/hit identification within BigHand
  • Combine tracks from the two
  • calibration, calibration, calibration
  • Data Monitoring normal fast check of data
    quality

3
Using the Analyzer for GEn
  • Worked on our own cvs branch, with goal to
    bring the wanted features back to the trunk.
  • GenBPM new cavity BPMs (Brandon Craver)
  • GenHelicity improved (Richard Holmes)
  • Store fully-functional detectors in ROOT-file (to
    keep calibration information and have access to
    detector methods, eg nearest-neighbors
    geometry)
  • Experiment-specialized software in separate
    library (agen).
  • BB required a different processing order called
    for a new implementation of THaAnalyzer class
    (Seamus Riordan)
  • BigHand veto and scintillators, BigBite
    detectors, optics, etc.

4
ND calibration software (timing)
J.Miller (UofMD)
5
ND Calibration (contd)
Scripts by Igor Rachek and Pavel Evtushenko
6
BigHand clustering
  • Matches geometrically-close hits and places into
    a single cluster
  • Neighboring hits are required to have dtlt10ns.
  • Time of the hit closest to the target is used and
    reported as the clusters ToF.
  • Total cluster energy is calculated, as well as
    shape characteristics
  • Need to match to veto-plane as well to identify
    incident charged tracks.

7
BigHand events
8
Ongoing Analysis Tasks - Calibrations
  • Database (mySQL) to collect run conditions, beam,
    and target information (Brandon Craver)
  • ND geometry and timing calibration (Jon Miller)
  • Shower calibration (Sergey Abrahamyan)
  • BB Scintillator Calibration (Ameya Kolarkar)
  • MWDC Calibration (Brandon and Seamus Riordan)
  • BB Optics/tracking (Seamus)
  • Target polarimetry (Ameya and Aidan Kelleher)
  • Beam polarimetry (Sergey)
  • Target field direction (Arie Beck)
  • Raster corrections (Brandon)

9
Ongoing/Future Analysis Tasks
  • Neutron identification and efficiency
  • Estimate false-positive rate
  • Monte-Carlo studies of background, rescattering
    effects within the target
  • Cooking of the 3500 runs
  • Link to mySQL database
  • Use the JLab farm have scripts to ease handling
    of submission of jobs and record keeping (Nerses)
  • Thought is to process kinematics 4 first.

10
Documentation - developments
  • Used HALOG
  • private ELOG during running to track bugs and
    fixes, software tools, etc. (A.Camsonne)
  • and Wiki for post-experiment information
    collection (N.Gevorgyan)

11
Conclusions
  • Modular framework simplified development and
    permitted re-use of much of the analyzer even
    with non-standard equipment.
  • The reconstruction algorithms are in place, with
    plans to work to improve them.
  • Calibrations underway.
  • Want to have first results available by the Fall.
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