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Broadening of Light Coupling to Waveguide Modes in Solar Cells by Disordered Grating Textures

机译:无序光栅纹理将光耦合扩展至太阳能电池的波导模式。

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We investigated the light coupling to waveguide modes in nanophotonic thin-film solar cells exhibiting a tailored disordered grating texture by rigorous optical simulations. Such disordered nanophotonic light trapping concepts have demonstrated enhanced short-circuit current density compared to ordered nanophotonic thin-film solar cells. This observation is commonly explained by a spectral broadening of the resonant light coupling to waveguide modes. In this work, we investigated the origin of this spectral broadening. We identified two basic mechanisms that lead to a spectral broadening of the light coupling to waveguide modes: (1) the broadening of the wave vector transferred by the disordered interface texture and (2) the broadening of the waveguide mode due to the distortion of the wave guiding absorber layer. Depending on the type of disorder, the contribution from each of the mechanisms varies.
机译:我们通过严格的光学模拟研究了光耦合到展现出定制的无序光栅纹理的纳米光子薄膜太阳能电池中的波导模式。与有序的纳米光子薄膜太阳能电池相比,这种无序的纳米光子光捕获概念已显示出增强的短路电流密度。通常通过耦合到波导模式的谐振光的光谱加宽来解释这种观察。在这项工作中,我们研究了这种光谱展宽的起源。我们确定了两种导致光耦合到波导模式的光谱扩展的基本机制:(1)由无序界面纹理传输的波矢量的扩展和(2)由于光的畸变而导致的波导模式的扩展。波导吸收层。根据疾病类型的不同,每种机制的贡献也不同。

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