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Photonic quasicrystal nanopatterned silicon thin film for photovoltaic applications

机译:用于光伏应用的光子准晶体纳米图案化硅薄膜

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摘要

In this paper, the authors numerically studied the optical properties of a silicon photonic quasicrystal (PQC) nanohole array for photovoltaic applications. With the same active layer thickness, the ultimate efficiency of a solar cell integrated with an optimized PQC nanohole array can be enhanced by 9.01% and 1.40% compared to that with an ordered square lattice of a nanohole array and a random nanohole array, respectively. The absorptance enhancement is mainly due to the higher-order rotational symmetry in PQC structures, which leads to the presence of additional resonant modes, the broadening of existing modes and the reduction of surface reflectance. The angular response for both transverse-electric and transverse-magnetic modes are also analyzed in detail.
机译:在本文中,作者对用于光伏应用的硅光子准晶体(PQC)纳米孔阵列的光学特性进行了数值研究。在相同的有源层厚度下,与优化的PQC纳米孔阵列集成的太阳能电池的最终效率相比,与纳米孔阵列和无规纳米孔阵列的有序方格分别提高了9.01%和1.40%。吸收率的提高主要归因于PQC结构中的高阶旋转对称性,这导致了附加共振模式的存在,现有模式的拓宽和表面反射率的降低。还详细分析了横向电磁模式和横向电磁模式的角度响应。

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