Predictive capability of material screening by fast neutron activation analysis using laser-driven neutron sources

Author:

Abe Y.12ORCID,Nakao A.2,Arikawa Y.2ORCID,Morace A.2ORCID,Mori T.2ORCID,Lan Z.2,Wei T.2ORCID,Asano S.2,Minami T.1ORCID,Kuramitsu Y.12ORCID,Habara H.12ORCID,Shiraga H.2,Fujioka S.2ORCID,Nakai M.2ORCID,Yogo A.2ORCID

Affiliation:

1. Graduate School of Engineering, Osaka University, Osaka 565-0871, Japan

2. Institute of Laser Engineering, Osaka University, Osaka 565-0871, Japan

Abstract

Bright, short-pulsed neutron beams from laser-driven neutron sources (LANSs) provide a new perspective on material screening via fast neutron activation analysis (FNAA). FNAA is a nondestructive technique for determining material elemental composition based on nuclear excitation by fast neutron bombardment and subsequent spectral analysis of prompt γ-rays emitted by the active nuclei. Our recent experiments and simulations have shown that activation analysis can be used in practice with modest neutron fluences on the order of 105 n/cm2, which is available with current laser technology. In addition, time-resolved γ-ray measurements combined with picosecond neutron probes from LANSs are effective in mitigating the issue of spectral interference between elements, enabling highly accurate screening of complex samples containing many elements. This paper describes the predictive capability of LANS-based activation analysis based on experimental demonstrations and spectral calculations with Monte Carlo simulations.

Funder

Japan Society for the Promotion of Science

Adaptable and Seamless Technology Transfer Program Through Target-Driven R&D

Precursory Research for Embryonic Science and Technology

Publisher

AIP Publishing

Subject

Instrumentation

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