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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Silicon complex grating with different groove depths as an absorber for solar cells
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Silicon complex grating with different groove depths as an absorber for solar cells

机译:具有不同凹槽深度的硅复合光栅作为太阳能电池的吸收剂

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摘要

A kind of concave silicon complex grating based on the superposition of multiple simple silicon gratings with different groove depths (ridge heights) is proposed for a potential application as an absorber for solar cells in the visible and near-infrared wavelength regions. For simple binary gratings, the associated absorptance peak is narrowband and direction sensitive. This study demonstrates that these drawbacks can be remedied by using this kind of concave complex grating with different groove depths, which can tailor radiative properties in the whole of the interested spectral range by making full use of the microcavity resonance effect to enhance absorption. A parametric study is carried out to evaluate the influences of filling ratio, incident angle and groove depth on the spectral absorptance of a silicon grating. And an efficient way of searching for the optimal profiles for the complex gratings is employed. The orthogonal array from the Taguchi method benefits the optimization of structure depths, periods, and filling ratios among thousands of combinations. The average spectral absorptance of the optimized structure is above 0.94 within wavelength region from 0.3 to 1.1. μm for the silicon complex grating with two groove depths, which suggests that the proposed structure can be well suitable for solar absorber applications. All numerical results are obtained from validated programs based on the rigorous coupled-wave analysis (RCWA) method.
机译:提出了一种基于具有不同凹槽深度(脊高)的多个简单硅光栅的叠加的凹面硅复合光栅,作为在可见光和近红外波长区域中作为太阳能电池吸收剂的潜在应用。对于简单的二元光栅,相关的吸收率峰值是窄带且对方向敏感。这项研究表明,通过使用这种具有不同凹槽深度的凹面复杂光栅可以弥补这些缺陷,该光栅可以通过充分利用微腔共振效应来增强吸收,从而在整个感兴趣的光谱范围内调整辐射特性。进行了参数研究,以评估填充率,入射角和凹槽深度对硅光栅光谱吸收率的影响。并采用了一种搜索复杂​​光栅最佳轮廓的有效方法。 Taguchi方法的正交阵列有利于优化数千种组合中的结构深度,周期和填充率。在0.3到1.1的波长范围内,优化结构的平均光谱吸收率高于0.94。具有两个凹槽深度的硅复合光栅的μm,这表明所提出的结构非常适合太阳能吸收器应用。所有数值结果都是基于严格的耦合波分析(RCWA)方法从经过验证的程序中获得的。

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