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X-ray and gamma-ray spectroscopy with segmented CdZnTe detectors

机译:具有分段CDZNTE探测器的X射线和伽马射线光谱

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Two methods are presented for obtaining excellent spectroscopic performance and good photo-peak efficiencies for CdZnTe coarsely segmented pad and strip detectors. The `correlation method' utilizes the correlation between the signals in the planar and segmented electrodes. This correlation provides an indication of the point of interaction. Application of a correction which is based on this correlation generates spectra with a resolution of 1.4% FWHM at 356 keV for pad detectors. Furthermore, for strip detectors this method yields improved spectra and an increase of more than 35% in photo-peak efficiencies at 140.5 keV. The `compensation method' involves tuning the degree of electron trapping to compensate for the almost completely trapped holes. Contrary to planar detectors, for segmented detectors the compensation condition yields induced charge signals which are 80% of the maximum signal. Using this method we obtained a spectrum with energy resolution of 3.5% FWHM at 122 keV and a peak-to-valley ratio of approximately 100:1.
机译:提出了两种方法,用于获得Cdznte粗地分段垫和条带探测器的优异的光谱性能和良好的光峰效率。 “相关方法”利用平面和分段电极中的信号之间的相关性。这种相关性提供了相互作用点的指示。基于该相关性的校正的应用产生的光谱,分辨率为1.4%FWHM,在356keV的焊盘检测器中。此外,对于条带探测器,该方法产生改善的光谱,在140.5keV的光峰效率下增加了35%以上的35%。 “补偿方法”涉及调整电子捕获程度以补偿几乎完全捕获的孔。与平面探测器相反,对于分段检测器,补偿条件产生诱导的电荷信号,其为最大信号的80%。使用该方法,我们在122keV处获得3.5%FWHM的能量分辨率的光谱,峰 - 谷比约为100:1。

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