• DocumentCode
    2001121
  • Title

    Design of pulse and trigger simulator electronic board for AMS experiment

  • Author

    Cindolo, Federico ; Son, D. ; Park-Kyungpook, Il

  • Author_Institution
    Ist. Nazionale di Fisica Nucl., Bologna, Italy
  • fYear
    1999
  • fDate
    1999
  • Firstpage
    564
  • Abstract
    The Alpha Magnetic Spectrometer (AMS) is a space borne particle physics experiment designed to search for and measure, with a much greater sensitivity than heretofore possible, various unusual types of matter. The apparent absence of antimatter (antihelium, anticarbon, etc.) in the universe is one of the great puzzles in particle physics. Theories (based on CP-violation, Baryon-number-violation, the Standard Model, and Grand Unification) which predict either the existence of antimatter in segregated domains or the total absence of antimatter are highly speculative. These theories have no foundation in experimental data. The AMS experiment has been approved and is under way in order to search for antimatter in cosmic radiation with a sensitivity of 103 to 105 times better than existing measurements, sufficiently sensitive to provide data needed to address these particle physics issues. AMS has two missions in space. The first mission was a ten day flight on the space shuttle Discovery. This shuttle mission has been completed with about 100 hours of dedicated data taking time, in June 1998, on the NASA STS-91 mission. The analysis of the data taken in space is currently in progress. We have designed and implemented the Signal and Trigger Simulator (SiTSi) board which allows the Time of Flight system to be tested and calibrated in stand-alone mode, and integrated with the AMS for the shuttle mission STS-91
  • Keywords
    calibration; cosmic ray apparatus; particle spectrometers; pulse circuits; trigger circuits; AMS experiment; Alpha Magnetic Spectrometer; Time of Flight system; antimatter; cosmic radiation; space borne particle physics experiment; trigger simulator electronic board; Aerospace simulation; Data analysis; Extraterrestrial measurements; NASA; Particle measurements; Predictive models; Signal design; Space missions; Space shuttles; Spectroscopy;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Real Time Conference, 1999. Santa Fe 1999. 11th IEEE NPSS
  • Conference_Location
    Sante Fe, NM
  • Print_ISBN
    0-7803-5463-X
  • Type

    conf

  • DOI
    10.1109/RTCON.1999.842700
  • Filename
    842700