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A scattering model for nano-textured interfaces and its application in opto-electrical simulations of thin-film silicon solar cells

机译:纳米纹理界面的散射模型及其在薄膜硅太阳能电池光电模拟中的应用

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摘要

We present a scattering model based on the scalar scattering theory that allows estimating far field scattering properties in both transmission and reflection for nano-textured interfaces. We first discuss the theoretical formulation of the scattering model and validate it for nano-textures with different morphologies. Second, we combine the scattering model with the opto-electric asa simulation software and evaluate this combination by simulating and measuring the external parameters and the external quantum efficiency of solar cells with different interface morphologies. This validation shows that the scattering model is able to predict the influence of nano-textured interfaces on the solar cell performance. The scattering model presented in this manuscript can support designing nano-textured interfaces with optimized morphologies.
机译:我们提出了一种基于标量散射理论的散射模型,该模型可以估算纳米纹理界面在透射和反射中的远场散射特性。我们首先讨论散射模型的理论公式,并针对具有不同形态的纳米纹理进行验证。其次,我们将散射模型与光电模拟软件相结合,并通过模拟和测量具有不同界面形态的太阳能电池的外部参数和外部量子效率来评估这种结合。该验证表明,散射模型能够预测纳米纹理界面对太阳能电池性能的影响。本手稿中的散射模型可以支持设计具有优化形态的纳米纹理界面。

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