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Highly Efficient Light-Trapping Structure Design Inspired By Natural Evolution

机译:受自然进化启发的高效光陷阱结构设计

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摘要

Recent advances in nanophotonic light trapping open up the new gateway to enhance the absorption of solar energy beyond the so called Yablonovitch Limit. It addresses the urgent needs in developing low cost thin-film solar photovoltaic technologies. However, current design strategy mainly relies on the parametric approach that is subject to the predefined topological design concepts based on physical intuition. Incapable of dealing with the topological variation severely constrains the design of optimal light trapping structure. Inspired by natural evolution process, here we report a design framework driven by topology optimization based on genetic algorithms to achieve a highly efficient light trapping structure. It has been demonstrated that the optimal light trapping structures obtained in this study exhibit more than 3-fold increase over the Yablonovitch Limit with the broadband absorption efficiency of 48.1%, beyond the reach of intuitive designs.
机译:纳米光子捕光技术的最新进展开辟了新的途径,以提高对太阳能的吸收,使其超越所谓的Yablonovitch极限。它满足了开发低成本薄膜太阳能光伏技术的紧迫需求。但是,当前的设计策略主要依靠基于物理直觉的,受预定义拓扑设计概念约束的参数方法。无法处理拓扑变化严重限制了最佳光捕获结构的设计。受自然进化过程的启发,我们在此报告一种设计框架,该框架由基于遗传算法的拓扑优化驱动,以实现高效的光捕获结构。已经证明,在这项研究中获得的最佳光捕获结构比Yablonovitch极限具有超过3倍的增长,宽带吸收效率为48.1%,这超出了直观设计的范围。

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