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Effects of proton-induced radiation damage on cadmium zinc telluride pixel detectors

机译:质子辐射损伤对碲化镉锌像素探测器的影响

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Abstract: Cadmium zinc telluride (CdZnTe) is a room temperature solid state material with many properties attractive to space- borne astrophysical instrumentation. Irradiation of monolithic CdZnTe detectors with 199 MeV protons shows that proton-induced radiation damage causes an increase in electron trapping in the material. Small-pixel and strip CdZnTe detectors which rely on efficient electron collection are particularly sensitive to changes in the electron mean free path, which can result in significant changes in the spectral response. Using a charge transport model, we calculate the effects of the observed radiation damage on spectral response for pixel detectors of several geometries. A degradation in spectral response is observed which is most pronounced for small-pixel detectors. The magnitude of the effects indicate that depending on pixel size and the desire for good spectral performance annealing may be necessary to maintain good detector performance after approximately 1 - 2 years in low-earth orbit. !7
机译:摘要:碲化镉(Cdznte)是一种室温固态材料,具有许多属性,可吸引空间的天体物理仪器。用199MeV质子的单片Cdznte探测器的照射表明,质子诱导的辐射损伤导致材料中的电子捕获增加。依赖于有效电子收集的小像素和条带Cdznte检测器对电子平均自由路径的变化特别敏感,这可能导致光谱响应的显着变化。使用电荷传输模型,我们计算观察到的辐射损伤对几个几何形状的像素探测器的光谱响应的影响。观察到光谱响应的劣化,其对小像素检测器最为明显。效果的大小表明,根据像素尺寸和对良好光谱性能退火的需求,可能需要在低地轨道中大约1-2岁后保持良好的检测器性能。 !7

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