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测量反应堆快中子注量率的电流型宽禁带半导体探测器设计
引用本文:苏春磊,欧阳晓平,李达,刘洋,宋晓靓,余小任,欧阳潇.测量反应堆快中子注量率的电流型宽禁带半导体探测器设计[J].原子能科学技术,2014,48(12):2359-2363.
作者姓名:苏春磊  欧阳晓平  李达  刘洋  宋晓靓  余小任  欧阳潇
作者单位:1.西北核技术研究所,陕西 西安710024;2.华北电力大学 核科学与工程学院,北京102206;3.中国科学院 苏州纳米技术与纳米仿生研究所,江苏 苏州215125
基金项目:国家自然科学基金资助项目(11175142)
摘    要:为解决强流混合场快中子注量率实时测量的难题,本文基于反冲质子法,以耐辐照性能强、噪声低的半绝缘型(SI)GaN半导体材料为基础,采用带石墨平衡体及聚乙烯转换靶的并联结构,设计补偿式电流型探测器的方案,有效地降低了γ射线灵敏度。利用该探测器测量了西安脉冲堆1#径向孔道内混合场的快中子注量率,其结果与已有测量结果符合较好,验证了该方案的可行性。

关 键 词:中子、γ混合场  反冲质子法  宽禁带半导体  快中子注量率  补偿电流并联结构

Design of Current Mode Wide-band Semicondutor Detector for Reactor Fast Neutron Fluence Rate Measurement
SU Chun-lei,OUYANG Xiao-ping,LI Da,LIU Yang,SONG Xiao-jing,YU Xiao-ren,OUYANG Xiao.Design of Current Mode Wide-band Semicondutor Detector for Reactor Fast Neutron Fluence Rate Measurement[J].Atomic Energy Science and Technology,2014,48(12):2359-2363.
Authors:SU Chun-lei  OUYANG Xiao-ping  LI Da  LIU Yang  SONG Xiao-jing  YU Xiao-ren  OUYANG Xiao
Affiliation:1.Northwest Institute of Nuclear Technology, Xi’an 710024, China;2.School of Nuclear Science and Engineering, North China Electric Power University, Beijing 102206, China;3.Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, Suzhou 215125, China
Abstract:In order to solve the problem of fast neutron fluence rate real-time measurement in intense neutron-gamma mixed field, a new neutron fluence rate measurement scheme based on recoil proton method and semi-insulating (SI) GaN detector was proposed. The compensation current parallel structure with graphite balancer and polyethyene converting target for fast neutron fluence rate detection, which effectively reduced the interference of γ ray and improved detection sensitivity of neutron radiation, was used in this scheme. This fast neutron fluence rate measurement scheme was implemented in the mixed field of Xi’an Pulsed Reactor 1# radial channel, and the results show consistency with previous measurement results and the validity of the scheme.
Keywords:neutron-gamma mixed field  recoil proton method  wide-band semiconductor  fast neutron fluence rate  compensation current parallel structure
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