Exploring the parameter space of broadband all-dielectric liquid crystal tunable metasurfaces in the visible

H. Cai, J. A. Dolan, L. Delalande, J. Pablo, P. Nealey, D. López
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Abstract

Metasurfaces infiltrated with liquid crystals have become a particularly promising means of tuning their optical properties, due to liquid crystals’ large and broadband optical anisotropy. In order to fully explore the parameter space of broadband all-dielectric liquid crystal tunable metasurfaces in the visible, we undertake a comprehensive study based on TiO2 nanoresonator superarrays, sweeping geometric parameters (i.e. disc radius and disc-to-disc gap). We demonstrate both electrical and thermal switching, and visualize the resonance change caused by either the orientation or phase change of liquid crystal, which provides a practical library for the rational design of liquid crystal tunable metasurfaces.
探索宽带全介质液晶可调谐超表面的参数空间
由于液晶具有大而宽的光学各向异性,渗透液晶的超表面已成为一种特别有前途的调谐光学特性的手段。为了充分探索宽带全介质液晶可调谐超表面在可见光下的参数空间,我们基于TiO2纳米谐振器超阵列,扫描几何参数(即圆盘半径和圆盘间隙)进行了全面的研究。我们演示了电开关和热开关,并可视化了液晶取向或相位变化引起的共振变化,为合理设计液晶可调谐超表面提供了实用的库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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