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Ultralight-Trapping Filters With Volume Reflection Holograms

机译:具有音量反射全息图的超轻捕获过滤器

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Light trapping is a useful approach for increasing the absorption of thin film photovoltaic (PV) cells. Simple light trapping can be achieved by incorporating a scattering layer on the top and bottom surface of cells and can increase absorption by a factor of 4n~2. Recently, ultralight trapping using Rugate and 1-D photonic bandgap filters have been proposed to increase light trapping by a factor of 4n~2/sin~2θ, where θ is half of the acceptance angle. In this paper, we present the design of a holographic ultra-light trapping filter. The holographic filter can be implemented in large areas at a low cost, which makes it scalable for PV applications. A design is presented that increases the optical path length for near bandgap wavelengths in a thin-film silicon PV cell. The optical path length enhancement is converted to electrical output using the PC-1D simulation software. The short-circuit current for a 10-μm-thick silicon PV cell increases by nearly 14.7% relative to a cell without light trapping.
机译:光捕获是一种有用的方法,用于增加薄膜光伏(PV)细胞的吸收。通过在细胞的顶部和底表面上掺入散射层可以实现简单的光捕集,并且可以增加4N〜2的吸收。最近,已经提出了使用粗糙化和1-D光子带隙过滤器的超轻捕获,以增加光捕获的光度为4n〜2 / sin〜2θ,其中θ是接受角的一半。在本文中,我们介绍了全息超光捕获过滤器的设计。全息滤波器可以以低成本的大区域实现,这使得PV应用可扩展。提出了一种改变薄膜硅PV电池中的近带隙波长的光路长度的设计。使用PC-1D仿真软件将光路长度增强转换为电输出。对于10μm厚的硅PV电池的短路电流相对于没有光捕获的电池增加近14.7%。

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