科技报告详细信息
Ion-induced gammas for photofission interrogation of HEU.
Doyle, Barney Lee ; Antolak, Arlyn J. ; Morse, Daniel H. ; Provencio, Paula Polyak
Sandia National Laboratories
关键词: Fission;    Photons;    Probability;    Photofission;    43 Particle Accelerators;   
DOI  :  10.2172/878586
RP-ID  :  SAND2006-0995
RP-ID  :  AC04-94AL85000
RP-ID  :  878586
美国|英语
来源: UNT Digital Library
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【 摘 要 】

High-energy photons and neutrons can be used to actively interrogate for heavily shielded special nuclear material (SNM), such as HEU (highly enriched uranium), by detecting prompt and/or delayed induced fission signatures. In this work, we explore the underlying physics for a new type of photon source that generates high fluxes of mono-energetic gamma-rays from low-energy (<500 keV) proton-induced nuclear reactions. The characteristic energies (4- to 18-MeV) of the gamma-rays coincide with the peak of the photonuclear cross section. The source could be designed to produce gamma-rays of certain selected energies, thereby improving the probability of detecting shielded HEU or providing a capability to determine enrichment inside sealed containers. The fundamental physics of such an interrogation source were studied in this LDRD through scaled ion accelerator experiments and radiation transport modeling. The data were used to assess gamma and neutron yields, background, and photofission-induced signal levels from several (p,{gamma}) target materials under consideration.

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