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Measurement of energetic charged particles produced in fusion materials with 14MeV neutron irradiation

机译:用14MeV中子辐照测量聚变材料中产生的高能带电粒子

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摘要

For the evaluation of the damages, nuclear heating, and also tritium inventory in the fusion materials, the precise information of the energetic charged particles produced in the materials by nuclear reactions is important. Fusion neutronics source in Japan Atomic Engineering research Association, JAERI/FNS, has started the measurements of the double differential cross-sections (DDXs) and the angular differential cross-sections (ADXs) for the candidate materials of fusion reactors using the collimated D-T neutron beam system and the precise results of the DDXs and ADXs for the ~9Be(n,αx) and ~9Be(n,t) reactions have been obtained. Also, from the comparison of the evaluated nuclear data for the beryllium, it was found that the calculated DDX of ~9Be(n,α) above about 3 MeV was underestimated and the total ~9Be(n,t) cross-section obtained with the measurement of the DDX and ADX was in good agreement with the evaluated nuclear data. In the following sections, the details of the measurement methods for the charged particles and the obtained DDX and ADX for the beryllium are described.
机译:为了评估聚变材料中的损伤,核加热以及tri的存量,通过核反应在材料中产生的高能带电粒子的精确信息非常重要。日本原子工程研究协会JAERI / FNS的聚变中子学源已经开始使用准直DT中子测量聚变反应堆候选材料的双微分截面(DDX)和角微分截面(ADX)。光束系统以及DDX和ADX对〜9Be(n,αx)和〜9Be(n,t)反应的精确结果。同样,从对铍的评估核数据的比较中发现,低出大约3 MeV的〜9Be(n,α)的DDX计算值被低估了,并且获得的总〜9Be(n,t)截面为DDX和ADX的测量值与评估的核数据非常吻合。在以下各节中,将详细介绍带电粒子的测量方法以及所获得的铍的DDX和ADX的测量方法。

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