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利用三角形掺杂纳米棱镜的全硅超表面实现的超宽带中红外超级吸收器。

Ultra-broadband MIR super absorber using all silicon metasurface of triangular doped nanoprisms.

作者信息

Abdelsalam Mostafa, Swillam Mohamed A

机构信息

Department of Physics, School of Sciences and Engineering, The American University in Cairo, New Cairo, Egypt.

出版信息

Sci Rep. 2022 Aug 31;12(1):14802. doi: 10.1038/s41598-022-18817-1.

Abstract

Thermo-electric generation offers to be a solid candidate for both dealing with the temperature problems of photo-voltaic cells and increasing its total output power. However, it requires an efficient broadband absorber to harness the power found in the near and mid-infrared regions. In this work, we discuss a new structure of nanoprisms that are made of doped silicon that acts as an ultra-broadband absorber in both regions. We also discuss the effect of the doping concentration. Additionally, we study the effect of a pure silicon thin film on top of the prisms. Finally, we're able to find an optimized structure that can absorb 92.6% of the input power from 1 to [Formula: see text]m.

摘要

热电发电有望成为解决光伏电池温度问题并提高其总输出功率的可靠候选方案。然而,它需要一种高效的宽带吸收器来利用近红外和中红外区域的能量。在这项工作中,我们讨论了一种由掺杂硅制成的纳米棱镜新结构,该结构在这两个区域都可作为超宽带吸收器。我们还讨论了掺杂浓度的影响。此外,我们研究了棱镜顶部纯硅薄膜的影响。最后,我们找到了一种优化结构,该结构能够吸收1至[公式:见原文]微米范围内92.6%的输入功率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ea8/9433398/3eadc35295a9/41598_2022_18817_Fig1_HTML.jpg

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