利用脉冲形状判别和单晶 CVD 金刚石探测器同时测量快中子通量和氚产生率

M. Kobayashi, Sachiko Yoshihashi, Kunihiro Ogawa, Mitsutaka Isobe, Tsukasa Aso, Masanori Hara, S. Sangaroon, S. Tamaki, I. Murata, S. Toyama, M. Miwa, S. Matsuyama, Masaki Osakabe
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摘要

本文介绍了一种利用单晶化学气相沉积(CVD)金刚石探测器(SDD)结合氟化锂(LiF)箔,在混合辐射场内同时测量快中子能谱和氚产生率的方法。该方法包括分离具有矩形形状的脉冲,并根据脉冲宽度确定被快中子或核反应产物(包括来自氟化锂箔的反冲氚)击中的单晶金刚石(SCD)的深度位置,提取发生在单晶金刚石特定块体区域和表面区域的脉冲事件。随后,利用展开技术分析了仅由快中子诱发的特定体区脉冲的能量沉积谱,从而推导出快中子能谱。为了评估氚的产生率,分析了发生在面向锂箔的 SCD 表面的事件脉冲的能量沉积谱。通过估算仅由撞击 SCD 表面的快中子引起的能量沉积谱,并从 SCD 表面事件的能量沉积谱中减去该能量沉积谱,确定了高能离子的贡献,如 LiF 箔中 6Li(n,α)3H反应产生的反冲氚。这项研究获得的快中子通量和氚产生率与粒子输运计算结果一致,证明成功开发了一种适合聚变反应堆毯性能测试的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous measurements for fast neutron flux and tritium production rate using pulse shape discrimination and single crystal CVD diamond detector
This paper presents the development of a simultaneous measurement method for fast neutron energy spectra and tritium production rates within mixed radiation fields using a single crystal Chemical Vapor Deposition (CVD) diamond detector (SDD) combined with a lithium fluoride (LiF) foil. The method involves the separation of pulses with rectangular shapes and the determination of the depth position within the single crystal diamond (SCD) struck by fast neutrons or nuclear reaction products including recoil tritons from the LiF foil based on pulse width, extracting pulse events occurred at the specific bulk region and the surface region of the SCD. Subsequently, unfolding techniques were employed to analyse the energy deposition spectrum of pulses at the specific bulk region which are induced only by fast neutrons, allowing the deduction of the fast neutron energy spectrum. To evaluate the tritium production rate, the energy deposition spectrum of pulses from events occurring at the SCD surface facing the LiF foil was analysed. By estimating the energy deposition spectrum solely induced by fast neutrons striking the SCD surface and subtracting it from the energy deposition spectrum of events at the SCD surface, the contribution of energetic ions, such as recoil tritons generated by the 6Li(n,α)3H reaction in the LiF foil, was determined. The fast neutron flux and tritium production rate obtained through this study were consistent with particle transport calculations, demonstrating the successful development of a method suitable for performance testing of fusion reactor blankets.
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