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Absorbance enhancement of thin film solar cells with front double dielectric and back metallic grating

机译:正面双电介质和背面金属光栅增强薄膜太阳能电池的吸光度

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摘要

We present finite difference time domain (FDTD) and rigorous coupled-wave analysis (RCWA) simulations to analyze the optical absorption enhancement of thin film solar cells (TFSCs) employing front double dielectric and back plasmonic grating structures. Simulation results show that the combination of a subwavelength aperture and a double nano-structured dielectric grating with back triangle metallic grating results in an enhancement in total optical absorption. The absorption of the planar structure is enhanced thanks to an increase of the optical path length of the red and near-infrared photons, causing a proportional enhancement of the absorption in this spectral range. 90.85% Average harvesting (on TE and TM) can be achieved by the optimized structure in the spectrum range from 300 to 1100 nm. The designed SC has high integrated absorption and is weakly dependent on incident angle, which should be useful for application in film photovoltaics, photodetectors and infrared imaging.
机译:我们提出了时域有限差分(FDTD)和严格耦合波分析(RCWA)仿真,以分析采用前双电介质和后等离子体激元光栅结构的薄膜太阳能电池(TFSC)的光吸收增强。仿真结果表明,亚波长孔径和双纳米结构介电光栅与后三角金属光栅的结合导致总光吸收的提高。平面结构的吸收由于红色和近红外光子的光路长度增加而增强,从而在该光谱范围内导致吸收成比例的增强。通过优化结构在300至1100 nm的光谱范围内,可以实现90.85%的平均收获量(在TE和TM上)。设计的SC具有高的集成吸收,并且几乎不依赖于入射角,这对于在薄膜光伏,光电探测器和红外成像中的应用应该是有用的。

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