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Response function measurement of layered type CVD single crystal diamond radiation detectors for 14 MeV neutrons

机译:14 MeV中子的分层型CVD单晶金刚石辐射探测器的响应函数测量

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摘要

Response function measurement of layered-type chemical vapor deposition single crystal diamond radiation detectors for 14 MeV neutrons was carried out. The detector had a layered structure that was composed of a boron-doped diamond layer of 0.5 µm in thickness and a nondoped diamond layer of 20 µm on an inexpensive high pressure and high temperature-type Ib diamond substrate. The detector had energy resolution of 2.6% for 5.5 MeVα particles. This experiment was mainly carried out in order to understand the present status of the detector as a 14 MeV neutron spectrometer and an extent of charge trapping. As result, a peak caused by the 12C(n,α0)9Be reactions was clearly observed; the best energy resolution of 6% as for a synthetic diamond radiation detector was achieved. Detection efficiency was 3.2×10(–7) counts/unit neutron fluence. However, taking the energy resolution for α particles, etc., into account, the energy resolution for 14 MeV neutrons was not so high. Further improvement based on better crystal growth is indispensable.
机译:对14 MeV中子进行了分层化学气相沉积单晶金刚石辐射探测器的响应函数测量。该检测器具有层状结构,该层状结构由厚度为0.5 µm的掺硼金刚石层和20 µm的非掺杂金刚石层组成,该层位于廉价的高压高温Ib金刚石基板上。该检测器对5.5MeVα粒子的能量分辨率为2.6%。进行该实验主要是为了了解14 MeV中子能谱仪的检测器现状和电荷捕获程度。结果,清楚地观察到由12C(n,α0)9Be反应引起的峰。达到了合成金刚石辐射探测器的6%的最佳能量分辨率。检测效率为3.2×10(–7)计数/单位中子注量。但是,考虑到α粒子等的能量分辨率,14 MeV中子的能量分辨率不是很高。基于更好的晶体生长,进一步的改进是必不可少的。

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