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Growth and characterization of single crystal CVD diamond film based nuclear detectors

机译:基于单晶CVD金刚石膜的核探测器的生长和表征

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摘要

The deposition conditions and the detection properties of a homoepitaxial diamond film, grown by microwave Chemical Vapor Deposition (CVD) on a HPHT single crystal substrate are reported. The charge collection spectrum, measured under irradiation with a triple ~(239)Pu ~(241)Am ~(244)Cm source emitting 5.16, 5.48 and 5.80 MeV a-particles respectively, shows three clearly resolved peaks with an energy resolution of about 1.1 percent. Both the charge collection efficiency and the energy resolution reach saturation values when the applied voltage exceeds 60 V, suggesting 100 percent collection efficiency. The detector was also tested with 14.8 and 14.1 MeV neutrons. The obtained collection spectra show a well separated ~(12)C(n,alpha_0)~(9)Be reaction peak with an energy spread of 0.5 MeV for 14.8 MeV neutrons and 0.3 MeV for 14.1 MeV neutrons, which are fully compatible with the energy spread of the incident neutrons.
机译:报告了通过微波化学气相沉积(CVD)在HPHT单晶衬底上生长的同质外延金刚石膜的沉积条件和检测特性。在分别发射5.16、5.48和5.80 MeVα粒子的三重〜(239)Pu〜(241)Am〜(244)Cm源辐射下测量的电荷收集光谱显示了三个清晰分辨的峰,能量分辨率约为1.1%。当施加的电压超过60 V时,电荷收集效率和能量分辨率都达到饱和值,表明收集效率为100%。还用14.8和14.1 MeV中子对探测器进行了测试。所获得的收集光谱显示了一个良好分离的〜(12)C(n,alpha_0)〜(9)Be反应峰,其中14.8 MeV中子的能量传播为0.5 MeV,14.1 MeV中子的能量传播为0.3 MeV,与入射中子的能量扩散。

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