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Role of Optimized Grooves Surface-Textured Front Glass in Improving TiO2 Thin-Film UV Photodetector Performance

机译:优化的沟槽表面纹理前玻璃在改善TiO 2 薄膜紫外光电探测器性能中的作用

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摘要

In this paper, the impact of the surface-textured front glass on the absorption of TiO2/glass thin-film ultraviolet (UV) photodetector is investigated, in order to achieve the dual role of increasing the scattering of UV-light as well as reducing the refracting UV-light in the glass. The efficient control of these phenomena may lead to more electric field confinement and UV-light trapping in TiO2 absorber layer. Moreover, semianalytical modeling combined with particle swarm optimization is carried out for studying and enhancing the metal–semiconductor–metal photodetector optical and electrical performances. The results obtained from our semianalytical investigation are validated by comparison with the experimental data. It is found that the absorbance increases significantly by about 51% in optimized design over the planar structure, which is expected to improve the photodetector figures of merit. In this context, photodetector with optimized grooves texturization exhibits a 341% improvement, in terms of responsivity, in comparison with the planar structure and 275% improvement with respect to the textured device without optimization. The obtained results make the proposed design methodology a promising alternative for high-performance optoelectronic applications.
机译:本文研究了表面纹理化的前玻璃对TiO2 /玻璃薄膜紫外(UV)光电探测器吸收的影响,以达到增加和分散紫外线的双重作用。玻璃中的折射紫外线。对这些现象的有效控制可能导致更多的电场限制和TiO2吸收层中的紫外线捕获。此外,进行了半分析建模与粒子群优化相结合,以研究和增强金属-半导体-金属光电探测器的光学和电气性能。通过与实验数据进行比较,可以验证从我们的半分析研究中获得的结果。已经发现,在优化设计中,相对于平面结构,吸光度显着增加了约51%,这有望改善光电探测器的品质因数。在这种情况下,与平面结构相比,具有优化的凹槽纹理化的光电探测器在响应度方面表现出341%的改进,而相对于未经优化的纹理化设备则表现出275%的改进。获得的结果使所提出的设计方法成为高性能光电应用的有希望的替代方法。

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