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Revisited design optimization of metallic gratings for plasmonic light-trapping enhancement in thin organic solar cells

机译:再谈金属光栅的设计优化,以增强薄有机太阳能电池的等离激元光陷阱

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摘要

We revisit previous studies of metallic gratings for optical absorption enhancement in an organic solar cell with a thin active layer. Our device geometry is designed for a real solar cell with full of functional layers. Various metallic gratings calibrated to generate periodic scatterers and low reflectors for broad-band light account for increases in short circuit current density of up to 47% when compared to its flat counterpart. We found that the tapered grating has greater performance than the regular rectangular grating for transverse magnetic (TM) polarization while the latter shows better performance for transverse electric (TE) polarization. The overall metallic grating induced absorption enhancement was found at all angles of incidence. The best configuration was realized for the tapered grating-based solar cell at 25 of inclination. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们重新审视了先前的有关金属光栅的研究,以增强具有薄有源层的有机太阳能电池中的光吸收。我们的设备几何结构是为具有功能层的真实太阳能电池设计的。经过校准以产生宽带散射光的周期性散射体和低反射器的各种金属光栅,与平坦的金属光栅相比,可将短路电流密度提高多达47%。我们发现,对于横向磁(TM)极化,锥形光栅比常规矩形光栅具有更好的性能,而对于横向电(TE)极化,锥形光栅表现出更好的性能。在所有入射角都发现了整个金属光栅引起的吸收增强。对于倾斜度为25的锥形光栅基太阳能电池,实现了最佳配置。 (C)2016 Elsevier B.V.保留所有权利。

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