Broadband multifunctional metasurface based on voltage-tunable VO2

Lunhao Hu, Hao Xu
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Abstract

THz metasurfaces that reflect radiation back can be applied in various fields such as imaging, biosensing, and optical communications. However, the conventional THz metasurfaces have limitations due to their inflexible electromagnetic responses and complex structures. In this paper, a voltage-controlled dual-polarization metasurface based on vanadium dioxide (VO2) is proposed, which can achieve the polarization conversion and transmission by controlling the conductivity of VO2 in the surface. The results show that when the VO2 is in the metal state, the metasurface can realize the circular polarization mode conversion in the range of 1.2-1.4 THz. While insulated, it will switch to the low-efficiency transmission conversion mode. Then, A broadband voltage-controlled OAM beam generator metasurface is designed, providing a method for realizing high performance multifunctional tunable metasurfaces in the THz band. This work has the potential to expand the practical applications of metasurfaces.
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基于电压可调VO2的宽带多功能超表面
反射辐射的太赫兹超表面可以应用于成像、生物传感和光通信等各个领域。然而,传统的太赫兹超表面由于其不灵活的电磁响应和复杂的结构而具有局限性。本文提出了一种基于二氧化钒(VO2)的电压控制双极化超表面,通过控制表面VO2的电导率来实现极化转换和透射。结果表明:当VO2处于金属态时,超表面可以在1.2 ~ 1.4 THz范围内实现圆偏振模式转换;绝缘时,将切换到低效率传动转换模式。然后,设计了宽带压控OAM波束发生器元表面,为实现太赫兹波段的高性能多功能可调谐元表面提供了一种方法。这项工作有可能扩展元表面的实际应用。
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