• DocumentCode
    1763325
  • Title

    Boron-Coated Straw Detectors for Backpack Monitors

  • Author

    Lacy, J.L. ; Athanasiades, A. ; Martin, C.S. ; Liang Sun ; Vazquez-Flores, G.J.

  • Author_Institution
    Proportional Technol., Inc., Houston, TX, USA
  • Volume
    60
  • Issue
    2
  • fYear
    2013
  • fDate
    41365
  • Firstpage
    1111
  • Lastpage
    1117
  • Abstract
    The limited inventory and minute natural abundance of 3He gas on Earth necessitate the adoption of new technologies for the detection of neutrons, especially in homeland security applications, where large volume deployments are required. We investigate the neutron detection efficiency of a backpack radiation detector based on an unmoderated array of boron-coated straws (BCS). A neutron module was configured that would be light and small enough to fit inside a regular-sized backpack. The module consisted of 36 tubes, arranged in two rows, for a total number of BCS detectors equal to 36 × 7=252. The overall dimensions of the neutron module were 3.18 cm × 26.7 cm × 38.1 cm, and its weight was 1.62 kg (3.57 lbs). The module was fitted immediately inside the back side of the backpack. The detectors are thus very close to the torso of the operator, which, together with a plastic scintillator for gamma detection, act as moderators for high-energy neutrons. In order to maintain a low weight, no other moderating material was installed inside the backpack. The weight of the pack containing both neutron and gamma detector panels, along with foam packing, electronics, and battery, was 5.36 kg (11.8 lbs). The compact dimensions of the design afforded use of a computer style backpack of minimal dimension providing significant additional operational advantages. The testing results indicate that, through use of high-density straw cluster detectors, the proposed design meets both neutron and gamma response government requirements for backpack monitors.
  • Keywords
    boron; gamma-ray detection; national security; neutron detection; position sensitive particle detectors; solid scintillation detectors; B; BCS detector; Earth 3He gas limited inventory; Earth 3He gas minute natural abundance; He; additional operational advantages; backpack back side; backpack monitors; backpack radiation detector; boron-coated straw detectors; computer style backpack; design compact dimensions; foam battery; foam electronics; foam packing; gamma detection; gamma detector panel; gamma response government requirement; high-density straw cluster detectors; high-energy neutron moderator; homeland security applications; large volume deployments; minimal dimension; moderating material; neutron detection efficiency; neutron detector panel; neutron module overall dimensions; neutron response government requirement; operator torso; pack weight; plastic scintillator; regular-sized backpack; technology adoption; testing results; unmoderated array; Detectors; Electron tubes; Monitoring; Neutrons; Phantoms; Sensitivity; Testing; Backpack radiation detector; boron-coated straws; neutron/gamma source detection; radiation detectors;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2013.2245915
  • Filename
    6482278