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Measurement and simulation of a Compton suppression system for safeguards application

  • Seung Kyu Lee
  • , Hee Seo
  • , Byung Hee Won
  • , Chaehun Lee
  • , Hee Sung Shin
  • , Sang Ho Na
  • , Dae Yong Song
  • , Ho Dong Kim
  • , Geun Il Park
  • , Se Hwan Park*
  • *Corresponding author for this work
  • Korea Atomic Energy Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

Plutonium (Pu) contents in spent nuclear fuels, recovered uranium (U) or uranium/transuranium (U/TRU) products must be measured in order to secure the safeguardability of a pyroprocessing facility. Self-induced X-Ray fluorescence (XRF) and gamma-ray spectroscopy are useful techniques for determining Pu-to-U ratios and Pu isotope ratios of spent fuel. Photon measurements of spent nuclear fuel by using high-resolution spectrometers such as high-purity germanium (HPGe) detectors show a large continuum background in the low-energy region, which is due in large part to Compton scattering of energetic gamma rays. This paper proposes a Compton suppression system for reducing of the Compton continuum background. In the present study, the system was configured by using an HPGe main detector and a BGO (bismuth germanate: Bi4Ge3O12) guard detector. The system performances for gamma-ray measurement and XRF were evaluated by means of Monte Carlo simulations and measurements of the radiation source. The Monte Carlo N-Particle eXtended (MCNPX) simulations were performed using the same geometry as for the experiments, and considered, for exact results, the production of secondary electrons and photons. As a performance test of the Compton suppression system, the peak-to-Compton ratio, which is a figure of merit to evaluate the gamma-ray detection, was enhanced by a factor of three or more when the Compton suppression system was used.

Original languageEnglish
Pages (from-to)1738-1743
Number of pages6
JournalJournal of the Korean Physical Society
Volume67
Issue number10
DOIs
StatePublished - 2015.11.1

Keywords

  • Gamma-ray spectroscopy
  • Non-destructive assay
  • Photon measurement
  • Safeguards
  • X-ray fluorescence

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