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集成液晶增强的高超表面中的电光调制

Electro-Optical Modulation in High Metasurface Enhanced with Liquid Crystal Integration.

作者信息

Kanyang Ruoying, Fang Cizhe, Yang Qiyu, Shao Yao, Han Genquan, Liu Yan, Hao Yue

机构信息

Emerging Device and Chip Laboratory, Hangzhou Institute of Technology, Xidian University, Hangzhou 311200, China.

Wide Bandgap Semiconductor Technology Disciplines State Key Laboratory, School of Microelectronics, Xidian University, Xi'an 710071, China.

出版信息

Nanomaterials (Basel). 2022 Sep 13;12(18):3179. doi: 10.3390/nano12183179.

Abstract

Electro-optical tuning metasurfaces are particularly attractive since they open up routes for dynamic reconfiguration. The electro-optic (EO) modulation strength essentially depends on the sensitivity to the EO-induced refractive index changes. In this paper, lithium niobate (LiNbO) metasurfaces integrated with liquid crystals (LCs) are theoretically investigated. Cylinder arrays are proposed to support quasi-bound states in the continuum (quasi-BICs). The quasi-BIC resonances can significantly enhance the lifetime of photons and the local field, contributing to the EO-refractive index changes. By integrating metasurfaces with LCs, the combined influence of the LC reorientation and the Pockels electro-optic effect of LiNbO is leveraged to tune the transmitted wavelength and phase spectrum around the quasi-BIC wavelength, resulting in an outstanding tuning sensitivity up to Δ/Δ ≈ 0.6 nm/V and relieving the need of high voltage. Furthermore, the proposed structure can alleviate the negative influence of sidewall tilt on device performance. The results presented in this work can foster wide application and prospects for the implementation of tunable displays, light detection and ranging (LiDAR), and spatial light modulators (SLMs).

摘要

电光调谐超表面尤其具有吸引力,因为它们为动态重构开辟了途径。电光(EO)调制强度本质上取决于对电光诱导的折射率变化的敏感度。本文对集成了液晶(LC)的铌酸锂(LiNbO)超表面进行了理论研究。提出了圆柱阵列来支持连续统中的准束缚态(准BIC)。准BIC共振可以显著提高光子寿命和局部场,有助于电光折射率变化。通过将超表面与液晶集成,利用液晶重新取向和铌酸锂的普克尔电光效应的综合影响来调谐准BIC波长附近的透射波长和相位谱,从而产生高达Δ/Δ≈0.6 nm/V的出色调谐灵敏度,并减少了对高电压的需求。此外,所提出的结构可以减轻侧壁倾斜对器件性能的负面影响。这项工作中呈现的结果可以促进可调谐显示器、光探测与测距(LiDAR)以及空间光调制器(SLM)的广泛应用和发展前景。

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