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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Photonic crystal structures for light trapping in thin-film Si solar cells: Modeling, process and optimizations
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Photonic crystal structures for light trapping in thin-film Si solar cells: Modeling, process and optimizations

机译:用于薄膜硅太阳能电池中光捕获的光子晶体结构:建模,过程和优化

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摘要

In this paper, we present our efforts on studying light trapping in thin-film silicon solar cells using photonic crystal (PC) based structures. Specifically, we propose a photonic backside texture combining periodic gratings and a distributed Bragg reflector (DBR). The mechanisms of this integrated photonic design are theoretically studied and compared with conventional PCs. We experimentally fabricate the texture using lithographic and self-assembled method on thin-film single crystalline Si (c-Si) and microcrystalline Si (μc-Si) cells. We analyze the effects of the photonic textures on different cells and demonstrate the performance improvements. A numerical method is developed to explore the optimal multiscale textured surface and investigate light trapping limits in the wave optics regime. Using a detailed balance analysis, we show that it is possible to reach over 20% efficiency for 1.5 μm Si cells through optimal device design and fabrication.
机译:在本文中,我们介绍了我们在基于光子晶体(PC)的结构中研究薄膜硅太阳能电池中的光陷阱的工作。具体来说,我们提出了一种光子背面纹理,它结合了周期性光栅和分布式布拉格反射器(DBR)。从理论上研究了这种集成光子设计的机制,并将其与常规PC进行了比较。我们通过光刻和自组装方法在薄膜单晶硅(c-Si)和微晶硅(μc-Si)电池上实验性地制造纹理。我们分析了光子纹理对不同细胞的影响,并证明了性能的提高。开发了一种数值方法来探索最佳的多尺度纹理表面并研究波动光学范围内的光捕获极限。使用详细的平衡分析,我们表明,通过最佳的器件设计和制造,对于1.5μm硅电池,有可能达到20%以上的效率。

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