首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Simulation of Coplanar Proximity Charge Sensing Electrodes in CZT Detectors
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Simulation of Coplanar Proximity Charge Sensing Electrodes in CZT Detectors

机译:CZT检测器中共面近距离电极的仿真

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The concept of applying proximity charge sensing electrodes to semiconductor radiation detectors is a novel technique that has distinct advantages over directly deposited electrodes. This paper evaluates the application of proximity charge sensing onto a CdZnTe (CZT) semiconductor crystal using ANSYS Maxwell simulation software to calculate the weighting potential across the detector depth, the weighting potential across the detector width, and the electric field (E) generated inside the detector volume for multiple designs. To accomplish this goal, several variables are studied in the simulated designs: (1) a high resistivity thin-film material that is applied to the detector proximity surface from the anode side, (2) an appropriate metal that acts as an Ohmic contact to dissipate generated charges on the CZT anode side, and finally (3) an insulating layer (dielectric) to isolate the CZT detector body from the proximity electrodes. The results of the generated weighting potentials for both directly deposited electrodes and proximity-sensing electrodes, having the same electrode width and pitch, have been quantitatively compared using a figure ofmerit (FOM). The FOM compares the weighting potential created by each simulated design for weighting potential uniformity and weighting potential similarity.
机译:将接近电荷感测电极施加到半导体辐射检测器的概念是一种新颖的技术,其在直接沉积的电极上具有不同的优点。本文使用ANSYS MAXWELL仿真软件评估接近电荷感应在CDZNTE(CZT)半导体晶体上的应用来计算探测器深度,横跨探测器宽度的加权电位,以及在内部产生的电场(e)的加权电位。多种设计的探测器。为了实现这一目标,在模拟设计中研究了几种变量:(1)高电阻率薄膜材料,其从阳极侧施加到检测器接近表面,(2)作为欧姆接触的适当金属。消耗CZT阳极侧的产生电荷,最后(3)绝缘层(电介质),以将CZT检测器主体与接近电极隔离。使用ofmerit(FOM)的图定量地比较了具有相同电极宽度和间距的直接沉积电极和接近感测电极的产生加权电位的结果。 FOM将每个模拟设计产生的加权电位进行比较,以加权潜在的均匀性和加权潜在的相似性。

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