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Design and implementation of novel thin film position-sensitive detectors (TFPSDs) based on photoconductive effect

机译:基于光电导效应的新型薄膜位置敏感探测器(TFPSDs)的设计与实现

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摘要

In this paper, novel, very simple and low-cost thin film position sensitive detectors (TFPSDs) which employ indium tin oxide (ITO)-cadmium sulfide (CdS)-Au structures are presented. Different from the existed PSDs those based on lateral photovoltage effect, the proposed sensor is operated in principle of photoconductive effect. CdS film is chosen as the photosensitive layer since its excellent photoconductive property, low cost and suitable for depositing on different type substrates with large areas. In the present study, CdS films are deposited on silicon substrates by using rf magnetron sputtering at room temperature. After that, the prepared CdS films were annealed at different temperatures for 50 min in N-2 ambient and a rigorous analysis was presented on the surface topography, and photoconductive properties by scanning electron microscopy and semiconductor characteristics analyzer. The test results shows that the film annealed at 400 A degrees C has the best photoconductive property. Moreover, the finite-element method was used to study the relationship between the Aluminium (Al) electrode shape and the linearity of PSD. Three different type PSDs (quadrilateral, rectangular-shaped and pillow-shaped) were designed and simulated. The simulation results indicate that the quadrilateral electrode is suitable for large-area PSDs, whereas the rectangular-shaped and pillow-shaped electrodes can be used to realize small-area PSDs. The measurement results shows that the non-linearities of three type PSDs with dimensions of 10 x 10 mm are respectively 2.106, 3.594, and 3.55 %, which verify the conclusion deduced from the simulation results.
机译:本文提出了一种新颖,非常简单且低成本的薄膜位置敏感检测器(TFPSDs),该检测器采用了氧化铟锡(ITO)-硫化镉(CdS)-Au结构。与现有的基于横向光电压效应的PSD不同,该传感器的工作原理是光导效应。选择CdS膜作为光敏层,是因为其优异的光电导性能,低成本以及适合在大面积的不同类型衬底上沉积。在本研究中,在室温下通过使用射频磁控溅射将CdS膜沉积在硅基板上。之后,将制备的CdS薄膜在N-2环境中于不同温度下退火50分钟,并对表面形貌进行严格分析,并通过扫描电子显微镜和半导体特性分析仪对光电导性能进行了分析。试验结果表明,在400℃退火的薄膜具有最佳的光电导性能。此外,使用有限元方法研究铝(Al)电极形状与PSD线性之间的关系。设计并仿真了三种不同类型的PSD(四边形,矩形和枕形)。仿真结果表明,四边形电极适用于大面积PSD,而矩形和枕形电极可用于实现小面积PSD。测量结果表明,尺寸为10 x 10 mm的三种类型PSD的非线性分别为2.106、3.594和3.55%,这验证了从仿真结果得出的结论。

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