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靠近零极点状态的介质纳米孔阵列超表面的光学克尔非线性

Optical Kerr nonlinearity of dielectric nanohole array metasurface in proximity to anapole state.

作者信息

Panov Andrey V

出版信息

Opt Lett. 2022 Jun 1;47(11):2866-2869. doi: 10.1364/OL.459989.

Abstract

Metasurfaces have attracted a great deal of attention from researchers due to their prominent optical properties. In particular, metasurfaces may consist of structures possessing optical anapole resonances with strong field confinement and substantially suppressed scattering. As a result, such nanostructures display enhanced nonlinear optical properties. In this paper by means of three-dimensional finite-difference time-domain simulations, the ability of anapole modes in high-index dielectric metasurfaces with circular nanopores is shown. In the vicinity of the anapole state, the effective optical Kerr nonlinearity increases by orders of magnitude. Simultaneously, the optical transmission of the metasurface can reach high values up to unity.

摘要

超表面因其卓越的光学特性而备受研究人员关注。特别是,超表面可能由具有光学无偶极共振的结构组成,这种共振具有强场限制且散射被大幅抑制。因此,此类纳米结构展现出增强的非线性光学特性。在本文中,通过三维时域有限差分模拟,展示了具有圆形纳米孔的高折射率介质超表面中无偶极模式的能力。在无偶极状态附近,有效光学克尔非线性增加了几个数量级。同时,超表面的光传输可以达到高达单位1的高值。

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