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非对称双曲介质中的全吸收

Total absorption in asymmetric hyperbolic media.

作者信息

Nefedov Igor S, Valagiannopoulos Constantinos A, Hashemi Seed M, Nefedov Evgeny I

机构信息

Aalto University, Department of Radio Science and Engineering, SMARAD Center of Excellence, P.O. Box 13000, FI-00076 Aalto, Finland.

出版信息

Sci Rep. 2013;3:2662. doi: 10.1038/srep02662.

Abstract

Finite-thickness slabs of hyperbolic media with tilted optical axes exhibit asymmetry properties for waves propagating upward and downward with respect to slab interfaces. Under certain conditions, asymmetric hyperbolic media acquire extreme permittivity parameters and the difference between upward and downward propagating waves becomes very large. Furthermore, both waves can be perfectly matched with the free space; such a feature makes possible the development of optically ultra thin perfect absorbers. The proposed approach is unified and allows the use of different -negative materials. Of particular interest is the asymmetric hyperbolic medium, made of silicon nanowires, since it can be directly applicable to solar cell systems.

摘要

具有倾斜光轴的双曲介质有限厚度平板对于相对于平板界面向上和向下传播的波表现出不对称特性。在某些条件下,非对称双曲介质会获得极端的介电常数参数,并且向上和向下传播的波之间的差异会变得非常大。此外,这两种波都可以与自由空间完美匹配;这样的特性使得光学超薄完美吸收体的开发成为可能。所提出的方法是统一的,并且允许使用不同的负折射率材料。特别令人感兴趣的是由硅纳米线制成的非对称双曲介质,因为它可以直接应用于太阳能电池系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64d0/3773620/adf6b1ebe162/srep02662-f1.jpg

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