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Investigation of the Spectral Improvement of a Capacitive Frisch-grid CdZnTe Detector by Using Infrared Stimulation

机译:红外刺激下电容式Frisch-grid CdZnTe检测器光谱改善的研究

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摘要

A capacitive Frisch-grid CdZnTe detector with different lengths of the Frisch rings has been fabricated, and the influence of infrared (IR) stimulation on the spectral performance of the detector has been investigated. IR stimulation at a wavelength (940 nm), close to the absorption edge of the CdZnTe, was found to improve the detector’s spectral performance significantly. IR radiation was noted to influence the detector’s sensitivity, changing the equilibrium between free and trapped carriers and improving the charge collection. The degree of improvement was different for detectors with different lengths of the Frisch rings and depended on the weighting potential distribution and the IR illumination intensity. For example, improvement was obtained in the energy resolution (FWHM) at 662 keV from 3.3% without illumination to 2.3% with a low intensity (120 μW) of IR illumination for the capacitive Frisch-grid CdZnTe detector with an 8-mm-long Frisch ring. Good energy resolution could be obtained even at low operating voltages.
机译:制作了具有不同长度的弗里施环的电容式弗里施网格CdZnTe检测器,并研究了红外(IR)刺激对检测器光谱性能的影响。发现在接近CdZnTe吸收边缘的波长(940 nm)处的IR刺激可以显着改善检测器的光谱性能。红外辐射会影响检测器的灵敏度,改变自由载流子和捕获载流子之间的平衡并改善电荷收集。对于具有不同弗里施环长度的检测器,改进程度是不同的,并且取决于加权电位分布和IR照明强度。例如,对于8毫米长的电容式Frisch-grid CdZnTe检测器,在662 keV处的能量分辨率(FWHM)从3.3%的无照度提高到2.3%的低强度(120μW)IR照度的改善。弗里施环。即使在低工作电压下也可以获得良好的能量分辨率。

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