The temporal response and relative proton-to-gamma ratio of radiation detectors made from natural diamond

R. Wagner, J. R. Joseph, R. Hilko, R. Harper, J. Tinsley
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引用次数: 2

Abstract

The temporal response, relative proton-to-gamma ratio, and relative sensitivity of photoconductive detectors made in identical physical geometries from natural Class IIa diamond and from neutron-irradiated GaAs were measured. The temporal response of the diamond detectors varied from 145 to 360 ps FWHM for a 30 ps, 16 MeV end-point bremsstrahlung pulse. This response compares to 103 ps FWHM for the GaAs detectors. Proton-to-gamma ratios for the diamond detectors were three times those of the GaAs detectors. The relative sensitivities of the diamond detectors, compared with those in the GaAs detectors, were 0.5 to 0.7. The leakage current of the diamond detectors was at least three orders of magnitude lower than those in the GaAs devices. The temporal response of neutron-irradiated diamond detector was 90 ps FWHM, a significant improvement in speed over natural diamond.<>
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天然金刚石辐射探测器的时间响应和相对质子-伽马比
测量了由天然IIa级金刚石和中子辐照GaAs制成的具有相同物理几何形状的光导探测器的时间响应、相对质子-伽马比和相对灵敏度。对于30 ps、16 MeV的端点轫致辐射脉冲,金刚石探测器的时间响应变化范围为145 ~ 360 ps FWHM。该响应与GaAs探测器的103 ps FWHM相比。金刚石探测器的质子与伽马比值是砷化镓探测器的三倍。与砷化镓探测器相比,金刚石探测器的相对灵敏度为0.5 ~ 0.7。金刚石探测器的漏电流比砷化镓器件的漏电流至少低3个数量级。中子辐照金刚石探测器的时间响应为90 ps FWHM,速度比天然金刚石有显著提高。
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