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红外全介质克尔超表面

Infrared all-dielectric Kerker metasurfaces.

作者信息

Fan Kebin, Shadrivov Ilya V, Miroshnichenko Andrey E, Padilla Willie J

出版信息

Opt Express. 2021 Mar 29;29(7):10518-10526. doi: 10.1364/OE.421187.

Abstract

The unidirectional scattering of electromagnetic waves in the backward and forward direction, termed Kerkers' first and second conditions, respectively, is a prominent feature of sub-wavelength particles, which also has been found recently in all-dielectric metasurfaces. Here we formulate the exact polarizability requirements necessary to achieve both Kerker conditions simultaneously with dipole terms only and demonstrate its equivalence to so-called "invisible metasurfaces". We further describe the perfect absorption mechanism in all-dielectric metasurfaces through development of an extended Kerker formalism. The phenomena of both invisibility and perfect absorption is shown in a 2D hexagonal array of cylindrical resonators, where only the resonator height is modified to switch between the two states. The developed framework provides critical insight into the range of scattering response possible with all-dielectric metasurfaces, providing a methodology for studying exotic electromagnetic phenomena.

摘要

电磁波分别在向后和向前方向的单向散射,分别称为克尔克第一和第二条件,是亚波长粒子的一个显著特征,最近在全介质超表面中也被发现。在这里,我们仅用偶极项来阐述同时实现两个克尔克条件所需的精确极化率要求,并证明其与所谓的“隐形超表面”等效。我们通过发展扩展的克尔克形式理论,进一步描述了全介质超表面中的完美吸收机制。隐形和完美吸收现象在二维六角形圆柱谐振器阵列中得到展示,其中仅通过修改谐振器高度来在两种状态之间切换。所发展的框架为全介质超表面可能的散射响应范围提供了关键见解,为研究奇异电磁现象提供了一种方法。

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