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基于具有双层超表面的奇异点的双功能传感。

Bifunctional sensing based on an exceptional point with bilayer metasurfaces.

作者信息

Li Yicheng, Deng Zhengwei, Qin Chunhua, Wan Shicheng, Lv Bo, Guan Chunying, Yang Jun, Zhang Shuang, Shi Jinhui

出版信息

Opt Express. 2023 Jan 2;31(1):492-501. doi: 10.1364/OE.478546.

Abstract

Exceptional points (EPs), the critical phase transition points of non-Hermitian parity-time (PT) systems, exhibit many novel physical properties and associated applications, such as ultra-sensitive detection of perturbations. Here, a bilayer metasurface with two orthogonally oriented split-ring resonators (SRRs) is proposed and a phase transition of the eigenpolarization states is introduced via changing the conductivity of vanadium dioxide (VO) patch integrated into the gap of one SRR. The metasurface possesses a passive PT symmetry and an EP in polarization space is observed at a certain conductivity of the VO. Two sensing schemes with the metasurface are proposed to achieve high-sensitivity sensing of temperature and refractive index in the terahertz (THz) range. The metasurface is promising for applications in THz biosensing and polarization manipulation.

摘要

例外点(EPs)是非厄米宇称时间(PT)系统的临界相变点,具有许多新颖的物理特性及相关应用,如对微扰的超灵敏检测。在此,提出了一种具有两个正交取向开口环谐振器(SRR)的双层超表面,并通过改变集成在一个SRR间隙中的二氧化钒(VO)贴片的电导率来引入本征极化态的相变。该超表面具有无源PT对称性,且在VO的特定电导率下可观测到极化空间中的一个例外点。提出了两种利用该超表面的传感方案,以实现太赫兹(THz)波段温度和折射率的高灵敏度传感。该超表面在太赫兹生物传感和极化操纵方面具有应用前景。

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