光电纳米结构的设计,不同太阳能电池的优化能力

A. Ghahremani, A. Fathy
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引用次数: 0

摘要

用于光学器件的CAD工具的开发正在进行中,包括多物理场工具。以前,像“RCWA”这样的工具被用于周期结构分析的衍射模式,而FDTD通常被用作分析时域场传播的通用数值方法,以研究光学环形谐振器等设备的电磁能的传输、反射和吸收。同时,对于光源,必须分析半导体物理,电子/空穴对的产生和重组以及光子的产生效率,如激光,led,光电二极管和太阳能电池中连接电流和光的光子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of opto-electronic nano-structures, capability for optimization of different solar cells
Development of CAD tools for optical devices is under way to include multi-physics tools. Previously, tools like “RCWA” was used for the diffraction mode of periodic structure analysis, while FDTD is typically used as a general numerical method for analyzing field propagation in the time domain to investigate transmission, reflection, and absorption of electromagnetic energy for devices like optical ring resonators. Meanwhile, for sources it is essential to analyze the semiconductor physics, generation and recombination of electron/hole pairs and the photons generation efficiency linking current to light like in lasers, LEDs, photodiodes, and solar cells.
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