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首页> 外文期刊>Applied optics >Enhanced absorptance of the assembly structure incorporating germanium nanorods and two-dimensional silicon gratings for photovoltaics
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Enhanced absorptance of the assembly structure incorporating germanium nanorods and two-dimensional silicon gratings for photovoltaics

机译:结合锗纳米棒和二维硅光栅的光伏组件结构的吸收率提高

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摘要

This paper proposes an assembly structure incorporating two-dimensional silicon gratings and germanium nanorods applied to photovoltaic absorbers. The absorptance of the assembly structure is numerically investigated using the finite-difference time-domain method. The results demonstrate that such a structure can greatly improve the absorptance and conversion efficiency compared to the gratings or nanowires in the 300-1100 nm wavelength region. The average spectral absorptance of such a structure reaches up to 0.983, even closes in to unity in some wave regions, which is mainly attributed to the guided mode resonance and Fabry-Perot resonance identified by analyzing the electromagnetic field and power dissipation. The effects of different diameters and lengths of the nanorod component, as well as the widths and depths of the grating component, on the absorptance are further examined. It is found that the absorptance of the assembly structure is insensitive to the incident angle of less than 30 degrees for both TM and TE waves. The photovoltaic absorbers with such a structure can yield an ideal conversion efficiency as high as 47.9%, which shows great potential for applying the assembly structure to photovoltaic absorbers. (C) 2016 Optical Society of America
机译:本文提出了一种装配结构,该结构将二维硅光栅和锗纳米棒应用于光伏吸收器。使用时域有限差分法对装配结构的吸收率进行了数值研究。结果表明,与300-1100 nm波长范围内的光栅或纳米线相比,这种结构可以大大提高吸收率和转换效率。这种结构的平均光谱吸收率高达0.983,甚至在某些波区域内接近统一,这主要归因于通过分析电磁场和功率耗散确定的导模共振和Fabry-Perot共振。进一步研究了纳米棒组分的不同直径和长度以及光栅组分的宽度和深度对吸收率的影响。发现对于TM波和TE波,组装结构的吸收率对于小于30度的入射角都不敏感。具有这种结构的光伏吸收器可以产生高达47.9%的理想转换效率,这显示出将组装结构应用于光伏吸收器的巨大潜力。 (C)2016美国眼镜学会

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