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Possibilities of Applying Geometric Optics for Calculations of Nano- and Microstructures in Photovoltaic Devices

机译:应用几何光学施加光伏器件中纳米和微观结构计算的可能性

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摘要

The optical characteristics used in the photovoltaics of nano- and microstructure, evaluated using electromagnetic radiation transfer computation software, mismatch with data obtained at high estimated times. The ability to apply the geometric optics approximations is shown for this purpose. Relevant computations using a 3D ROKS-RG programming tool (the Monte Carlo method) are performed for various experimental results on the optical parameters of nano- and microstructures available in the scientific literature. Given that surface roughness exists as a byproduct of etching during the preparation of structures, the theory is found to satisfactorily agree with experiment. Moreover, most of the radiation is absorbed on account of the surface roughness of substrates, which is expected to induce a nonuniform charge carrier distribution over the structure height and may be among the reasons for the insufficiently high efficiency of solar elements with radial p-n geometry.
机译:使用电磁辐射转移计算软件评估的纳米和微结构的光伏电压中使用的光学特性,使用高估时获得的数据不匹配。 为此目的示出了应用几何光学近似的能力。 使用3D ROKS-RG编程工具(Monte Carlo方法)的相关计算对于科学文献中可用的纳米和微结构的光学参数对各种实验结果进行了各种实验结果。 鉴于在制备结构期间蚀刻的表面粗糙度存在,该理论被发现令人满意地同意实验。 此外,由于基板的表面粗糙度,大多数辐射被吸收,这预期在结构高度上引起不均匀的电荷载体分布,并且可以是具有径向P-N几何的太阳能元件效率不足的原因之一。

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