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太赫兹超表面中基于耦合的连续谱中的多个束缚态及光栅辅助的介电常数反演

Coupling-Based Multiple Bound States in the Continuum and Grating-Assisted Permittivity Retrieval in the Terahertz Metasurface.

作者信息

Cui Zijian, Wang Yue, Sun Guangcheng, Chen Wenshuo, Zhang Xiang, Zhang Kuang, Wang Xinmei

机构信息

Key Laboratory of Ultrafast Photoelectric Technology and Terahertz Science in Shaanxi, Xi'an University of Technology, 710048 Xi'an, China.

Department of Microwave Engineering, Harbin Institute of Technology, 150001 Harbin, China.

出版信息

ACS Appl Mater Interfaces. 2024 Feb 14;16(6):7631-7639. doi: 10.1021/acsami.3c18207. Epub 2024 Feb 1.

Abstract

The terahertz (THz) metasurfaces that support bound states in the continuum (BICs) provide a promising platform for various applications due to their high -factor resonance. In this study, we experimentally demonstrate multiple BICs with different resonance symmetries in the THz metasurface based on mode coupling. The proposed metasurface is composed of 2 × 2 split ring resonators (SRRs) metamolecules. The SRRs of two different gap angles in the metamolecule lattice provide intrinsic resonance with different frequencies, and the coupling between them exhibits high transmission quasi-BIC resonance, which can be tuned by varying the gap angle. The arrangement of SRRs in the 2 × 2 metamolecule lattice determines the types of coupling that govern the resonance symmetry of quasi-BIC. More interestingly, the multiple quasi-BICs enabled by different couplings can be simultaneously achieved in a metasurface. Apart from tuning the gap angles, the permittivity in the vicinity of SRRs also changes the resonance frequency. Consequently, quasi-BIC can be artificially formed by deliberately constructing the permittivity difference of the dielectric environment on the SRRs. In view of this, we introduce the scheme of permittivity retrieval for the dispersive analyte, assisted by the fixed-permittivity gratings. In addition, we experimentally demonstrate the metasurface in combination with the microfluidic chip for the sensing of the glucose solution concentration. Our findings offer a possible strategy for the existing manufactured metasurface to achieve quasi-BIC resonance and provide a promising candidate for approaching the spectral analysis of the biochemical.

摘要

支持连续统束缚态(BICs)的太赫兹(THz)超表面因其高Q因子共振为各种应用提供了一个有前景的平台。在本研究中,我们基于模式耦合在太赫兹超表面中通过实验证明了具有不同共振对称性的多个BICs。所提出的超表面由2×2裂环谐振器(SRRs)超分子组成。超分子晶格中具有两种不同间隙角的SRRs提供不同频率的本征共振,并且它们之间的耦合表现出高透射准BIC共振,可通过改变间隙角进行调谐。2×2超分子晶格中SRRs的排列决定了控制准BIC共振对称性的耦合类型。更有趣的是,不同耦合实现的多个准BICs可在一个超表面中同时实现。除了调节间隙角外,SRRs附近的介电常数也会改变共振频率。因此,通过有意构造SRRs上介电环境的介电常数差可以人工形成准BIC。鉴于此,我们引入了由固定介电常数光栅辅助的色散分析物介电常数反演方案。此外,我们通过实验展示了结合微流控芯片的超表面用于葡萄糖溶液浓度传感。我们的发现为现有的制造超表面实现准BIC共振提供了一种可能的策略,并为生化光谱分析提供了一个有前景的候选方案。

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