• DocumentCode
    15618
  • Title

    Simulations of Multi-Gamma Coincidences From Neutron-Induced Fission in Special Nuclear Materials

  • Author

    Kane, S. ; Gozani, T. ; King, M.J. ; Kwong, J. ; Brown, C. ; Gary, C. ; Firestone, M.I. ; Nikkel, J.A. ; McKinsey, Daniel N.

  • Author_Institution
    Purdue Technol. Center of Indianapolis, Adelphi Technol., LLC, Indianapolis, IN, USA
  • Volume
    60
  • Issue
    2
  • fYear
    2013
  • fDate
    Apr-13
  • Firstpage
    533
  • Lastpage
    538
  • Abstract
    A study is presented on the detection of illicit special nuclear materials (SNM) in cargo containers using a conceptual neutron-based inspection system with xenon-doped liquefied argon (LAr(Xe)) scintillation detectors for coincidence gamma-ray detection. For robustness, the system is envisioned to exploit all fission signatures, namely both prompt and delayed neutron and gamma emissions from fission reactions induced in SNM. However, this paper focuses exclusively on the analysis of the prompt gamma ray emissions. The inspection system probes a container using neutrons produced either by (d, D) or (d, T) in pulsed form or from an associated particle neutron generator to exploit the associated particle imaging (API) technique, thereby achieving background reduction and imaging. Simulated signal and background estimates were obtained in MCNPX (2.7) for a 2 kg sphere of enriched uranium positioned at the center of a 1m × 1m × 1m container, which is filled uniformly with wood or iron cargos at 0.1 g/cc or 0.4 g/cc. Detection time estimates are reported assuming probabilities of detection of 95% and false alarm of 0.5%.
  • Keywords
    coincidence techniques; gamma-ray detection; liquid scintillation detectors; probability; xenon; Ar:Xe; MCNPX; SNM; associated particle imaging technique; associated particle neutron generator; cargo containers; coincidence gamma-ray detection; delayed neutron emissions; enriched uranium; fission reactions; fission signatures; gamma emissions; inspection system probes; multigamma coincidences; neutron-based inspection system; neutron-induced fission; probability; prompt gamma ray emissions; special nuclear materials; wood/iron cargos; xenon-doped liquefied argon scintillation detectors; Argon; Containers; Detectors; Generators; Iron; Neutrons; Photonics; Associated Particle Imaging (API); Fission Multiplicity Detection (FMD); Liquefied Argon (LAr) scintillation detector; coincidence counting; gamma ray detection by Liquefied Argon;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2013.2248380
  • Filename
    6496301