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Enhanced Light Trapping in Thin Film Solar Cells Using a Plasmonic Fishnet Structure

机译:使用等离子鱼网结构增强薄膜太阳能电池的光阱

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Incorporating plasmonic structures into the back spacer layer of thin film solar cells (TFSCs) is an efficient way to improve their performance. The fishnet structure is used to enhance light trapping. Unlike other previously suggested discrete plasmonic particles, the fishnet is an electrically connected wire mesh that does not result in light field localization, which leads to high absorption losses. The design was verified experimentally. A silver fishnet structure was fabricated using electron beam lithography (EBL) and thermal evaporation. The final fabricated structure optically resembles a TFSC. The results predicted by numerical simulations were reproduced experimentally on a fabricated sample. We show that light absorption in the a-Si absorber layer is enhanced by a factor of 10.6 at the design wavelength of 690 nm due to the presence of the fishnet structure. Furthermore, the total absorption over all wavelengths was increased by a factor of 3.2. The short-circuit current of the TFSC was increased by 30% as a result of including the fishnet.
机译:将等离子体激元结构并入薄膜太阳能电池(TFSC)的背面隔离层是提高其性能的有效方法。鱼网结构用于增强光捕获。不同于其他先前建议的离散等离激元粒子,鱼网是一种电连接的丝网,不会导致光场定位,从而导致高吸收损耗。该设计已通过实验验证。使用电子束光刻(EBL)和热蒸发来制造银鱼网结构。最终制造的结构在光学上类似于TFSC。通过数值模拟预测的结果在已加工的样品上进行了实验再现。我们表明,由于存在鱼网结构,在690 ofnm的设计波长下,a-Si吸收层中的光吸收提高了10.6倍。此外,所有波长的总吸收增加了3.2倍。由于包含了渔网,TFSC的短路电流增加了30%。

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