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具有电可调微波传输幅度和宽带高光透明性的超表面。

Metasurface with Electrically Tunable Microwave Transmission Amplitude and Broadband High Optical Transparency.

机构信息

Ultra-Precision Optical & Electronic Instrument Engineering Center, Harbin Institute of Technology, Harbin 150001, China.

Key Lab of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology), Ministry of Industry and Information Technology, Harbin 150001, China.

出版信息

ACS Appl Mater Interfaces. 2023 Jun 21;15(24):29440-29448. doi: 10.1021/acsami.3c04030. Epub 2023 Jun 7.

Abstract

Metasurfaces with tunable microwave transmission amplitude and broadband high optical transparency hold great promise for the next generation of optically transparent and smart electromagnetic transmission devices. In this study, a novel and electrically tunable metasurface with high optical transparency in the visible-infrared broadband is proposed and fabricated by integrating meshed electric-LC resonators and patterned VO. Simulations and experiments demonstrate that the designed metasurface has a normalized transmittance greater than 88% over a wide wavelength range of 380-5000 nm, and the transmission amplitude can be continuously tuned from -1.27 to -15.38 dB at 10 GHz under current excitation, indicating significantly limited passband loss and strong electromagnetic shielding capability in the on and off cases, respectively. This study provides a simple, practical, and feasible method for optically transparent metasurfaces with electrically tunable microwave amplitude, paving the way for the application of VO in multiple fields such as intelligent optical windows, smart radomes, microwave communications, and optically transparent electromagnetic stealth.

摘要

具有可调微波传输振幅和宽带高光学透明度的超表面在下一代光透明和智能电磁传输器件中具有广阔的应用前景。在这项研究中,通过集成网格状电 LC 谐振器和图案化 VO,提出并制备了一种新颖的、具有可见光-红外宽带高光学透明度的电可调超表面。仿真和实验表明,所设计的超表面在 380-5000nm 的宽波长范围内具有大于 88%的归一化透过率,并且在 10GHz 下电流激励下的传输振幅可以从-1.27 连续调谐到-15.38dB,分别在开启和关闭状态下具有显著受限的通带损耗和强电磁屏蔽能力。这项研究为具有电可调微波振幅的光透明超表面提供了一种简单、实用和可行的方法,为 VO 在智能光学窗、智能雷达罩、微波通信和光透明电磁隐身等多个领域的应用铺平了道路。

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