English

Fissile material detection using neutron time-correlations from photofission

Instrumentation and Detectors 2019-02-04 v2 Nuclear Experiment Applied Physics

Abstract

The detection of special nuclear materials (SNM) in commercial cargoes is a major objective in the field of nuclear security. In this work we investigate the use of two-neutron time-correlations from photo-fission using the Prompt Neutrons from Photofission (PNPF) detectors in Passport Systems Inc.'s (PSI) Shielded Nuclear Alarm Resolution (SNAR) platform~\cite{pnpf} for the purpose of detecting \sim5~kg quantities of fissionable materials in seconds. The goal of this effort was to extend the secondary scan mode of this system to differentiate fissile materials, such as highly enriched uranium, from fissionable materials, such as low enriched and depleted uranium (LEU and DU). Experiments were performed using a variety of material samples, and data were analyzed using the variance-over-mean technique referred to as Y2FY_{2F} or Feynman-α\alpha. Results were compared to computational models to improve our ability to predict system performance for distinguishing fissile materials. Simulations were then combined with empirical formulas to generate receiver operating characteristics (ROC) curves for a variety of shielding scenarios. We show that a 10 second screening with a 200~μ\muA 9~MeV X-ray beam is sufficient to differentiate kilogram quantities of HEU from DU in various shielding scenarios in a standard cargo container.

Keywords

Cite

@article{arxiv.1812.03807,
  title  = {Fissile material detection using neutron time-correlations from photofission},
  author = {R. A. Soltz and A. Danagoulian and E. P. Hartouni and M. S. Johnson and S. A. Sheets and A. Glenn and S. E. Korbly and R. J. Ledoux},
  journal= {arXiv preprint arXiv:1812.03807},
  year   = {2019}
}

Comments

16 pages, 12 figures; keywords: fissile material, active interrogation, neutron time-correlation, photofission

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