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A modeling method to calibrate the interaction depth in 3-D position sensitive CdZnTe gamma-ray spectrometers

机译:一种校准三维位置敏感Cdznte伽马射线光谱仪校准相互作用深度的建模方法

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The gamma ray interaction depth in 3-D position sensitive CdZnTc detectors is currently determined by the pulse height ratio of the cathode signal to the anode pixel signal (C/A ratio). In experiments with our 3-D CdZnTe detectors, the photopeak area as a function of the C/A ratio deviates from the expected exponential attenuation with depth. This indicates that the C/A ratio is not proportional to the true interaction depth. This paper proposes a method to calibrate the measured C/A ratio to the interaction depth by modeling the signals from the cathode and anode pixels. Knowing the detector's mobility-lifetime products of the electrons and holes from measurements, the expected pulse heights of the signals from the cathode and anode pixels can be calculated for different interaction depths. The relationship between the C/A ratios and the interaction depths can then be determined and used as the calibration. The calculation for our 3-D CdZnTe detectors shows that an 8% error in depth determination is incurred without the calibration.
机译:3-D位置敏感CDZNTC检测器中的伽马射线相互作用深度当前由阴极信号与阳极像素信号(C / A比率)的脉冲高度比确定。在使用我们的3-D Cdznte探测器的实验中,作为C / A的函数的PhotoPak面积偏离预期的指数衰减。这表明C / A比率与真正的交互深度没有成比例。本文提出了一种方法来通过从阴极和阳极像素建模信号来校准测量的C / A比与相互作用深度的方法。从测量中了解电子和孔的移动性寿命乘积,可以计算来自阴极和阳极像素的信号的预期脉冲高度,以针对不同的相互作用深度来计算。然后可以确定C / A比率和相互作用深度之间的关系并用作校准。我们的3-D Cdznte探测器的计算表明,在没有校准的情况下会产生8%的深度测定误差。

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