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首页> 外文期刊>Superlattices and microstructures >Performance enhancement of Pt/TiO_2/Si UV-photodetector by optimizing light trapping capability and interdigitated electrodes geometry
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Performance enhancement of Pt/TiO_2/Si UV-photodetector by optimizing light trapping capability and interdigitated electrodes geometry

机译:通过优化光捕获能力和叉指电极的几何形状来增强Pt / TiO_2 / Si紫外光电探测器的性能

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摘要

This paper presents a hybrid approach based on an analytical and metaheuristic investigation to study the impact of the interdigitated electrodes engineering on both speed and optical performance of an Interdigitated Metal-Semiconductor-Metal Ultraviolet Photo-detector (IMSM-UV-PD). In this context, analytical models regarding the speed and optical performance have been developed and validated by experimental results, where a good agreement has been recorded. Moreover, the developed analytical models have been used as objective functions to determine the optimized design parameters, including the interdigit configuration effect, via a Multi-Objective Genetic Algorithm (MOGA). The ultimate goal of the proposed hybrid approach is to identify the optimal design parameters associated with the maximum of electrical and optical device performance. The optimized IMSM-PD not only reveals superior performance in terms of photocurrent and response time, but also illustrates higher optical reliability against the optical losses due to the active area shadowing effects. The advantages offered by the proposed design methodology suggest the possibility to overcome the most challenging problem with the communication speed and power requirements of the UV optical interconnect: high derived current and commutation speed in the UV receiver.
机译:本文提出了一种基于分析和元启发式研究的混合方法,以研究叉指电极工程对叉指金属-半导体-金属紫外光电探测器(IMSM-UV-PD)的速度和光学性能的影响。在这种情况下,已经开发了关于速度和光学性能的分析模型,并通过实验结果进行了验证,并记录了良好的协议。此外,已开发的分析模型已被用作目标函数,以通过多目标遗传算法(MOGA)确定优化的设计参数,包括手指间的配置效果。提出的混合方法的最终目标是确定与最大的电气和光学设备性能相关的最佳设计参数。经过优化的IMSM-PD不仅在光电流和响应时间方面表现出卓越的性能,而且还展示了针对因有源区阴影效应而导致的光损耗的更高光学可靠性。所提出的设计方法所提供的优点表明,有可能克服UV光学互连的通信速度和功率要求中最具挑战性的问题:UV接收器中的高导出电流和换向速度。

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