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用于硅薄膜太阳能电池光吸收的周期失配正弦双界面光栅

Period-mismatched sine dual-interface grating for optical absorption in silicon thin-film solar cells.

作者信息

Zheng Hongmei, Yu Yingchun, Wu Rui, Wu Sheng, Chen Shunhua, Chen Ke

出版信息

Appl Opt. 2020 Nov 20;59(33):10330-10338. doi: 10.1364/AO.408812.

Abstract

Crystalline silicon thin-film solar cells with period-mismatched sine dual-interface gratings are proposed. Several structural parameters of the front and rear gratings, such as heights, periods, and duty ratios, are optimized using the finite-difference time-domain method. The mechanisms of absorption enhancement are also illustrated by analyzing the optical and electrical performance in thin-film solar cells with different grating arrangements. Numerical results indicate that the period-mismatched sine dual-interface grating structure shows obvious improvement in absorption efficiency and is more suitable for grating structures with small period. The short-circuit current density of the period-mismatched dual-interface sine grating structure is improved to 18.89/, an increase of 41.39% as compared with the planar structure. The research findings can be utilized to guide the design of grating structures for thin-film solar cells.

摘要

提出了具有周期失配正弦双界面光栅的晶体硅薄膜太阳能电池。利用时域有限差分法对前后光栅的几个结构参数,如高度、周期和占空比进行了优化。通过分析不同光栅排列的薄膜太阳能电池的光学和电学性能,也阐述了吸收增强的机制。数值结果表明,周期失配正弦双界面光栅结构在吸收效率上有明显提高,更适合于小周期的光栅结构。周期失配双界面正弦光栅结构的短路电流密度提高到18.89 mA/cm²,与平面结构相比增加了41.39%。这些研究结果可用于指导薄膜太阳能电池光栅结构的设计。

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