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大阪大学ILE的激光驱动中子源与核共振吸收成像:综述

Laser-driven neutron source and nuclear resonance absorption imaging at ILE, Osaka University: review.

作者信息

Mima Kunioki, Yogo Akifumi, Mirfayzi Seyed R, Lan Zechen, Arikawa Yasunobu, Abe Yuki, Nishimura Hiroaki

出版信息

Appl Opt. 2022 Mar 20;61(9):2398-2405. doi: 10.1364/AO.444628.

Abstract

Here, we present an overview on the recent progress in the development of the laser-driven neutron source (LDNS) and nuclear resonance absorption (NRA) imaging at the Institute of Laser Engineering (ILE), Osaka University. The LDNS is unique because the number of neutrons per micro pulse is very large, and the source size and the pulse width are small. Consequently, extensive research and development of LDNSs is going on around the world. In this paper, a typical neutron generation process by the laser-driven ion beam, called the pitcher-catcher scheme, is described. The characteristics of the LDNS are compared with those of the accelerator-driven neutron source (ADNS), and unique application of the LDNS, such as NRA imaging, is presented. In the LDNS, NRA imaging is possible with a relatively short beam line in comparison with that of the ADNS since the neutron pulse width and the source size of the LDNS are small. Future prospects in research and development of NRA imaging with the LDNS at ILE Osaka University are also described.

摘要

在此,我们概述了大阪大学激光工程研究所(ILE)在激光驱动中子源(LDNS)开发和核共振吸收(NRA)成像方面的最新进展。LDNS具有独特性,因为每个微脉冲中的中子数量非常大,且源尺寸和脉冲宽度很小。因此,世界各地都在广泛开展LDNS的研发工作。本文描述了一种由激光驱动离子束产生中子的典型过程,即投手-捕手方案。将LDNS的特性与加速器驱动中子源(ADNS)的特性进行了比较,并介绍了LDNS的独特应用,如NRA成像。在LDNS中,由于其中子脉冲宽度和源尺寸较小,与ADNS相比,使用相对较短的束线就可以进行NRA成像。还描述了大阪大学ILE利用LDNS进行NRA成像的未来研发前景。

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