School of Electronics and Information Engineering, Sichuan University, Chengdu, 610065, China.
Sci Rep. 2017 Jun 9;7(1):3190. doi: 10.1038/s41598-017-03439-9.
Dynamic control transmission and polarization properties of electromagnetic (EM) wave propagation is investigated using chemical reconfigurable all-dielectric metasurface. The metasurface is composed of cross-shaped periodical teflon tubes and inner filled chemical systems (i.e., mixtures and chemical reaction) in aqueous solution. By tuning the complex permittivity of chemical systems, the reconfigurable metasurface can be easily achieved. The transmission properties of different incident polarized waves (i.e., linear and circular polarization) were simulated and experimentally measured for static ethanol solution as volume ratio changed. Both results indicated this metasurface can serve as either tunable FSS (Frequency Selective Surface) or tunable linear-to-circular/cross Polarization Converter at required frequency range. Based on the reconfigurable laws obtained from static solutions, we developed a dynamic dielectric system and researched a typical chemical reaction with time-varying permittivity filled in the tubes experimentally. It provides new ways for realizing automatic reconfiguration of metasurface by chemical reaction system with given variation laws of permittivity.
使用化学可重构全介质超表面研究了电磁波传播的动态控制传输和偏振特性。该超表面由十字形周期性聚四氟乙烯管和内部填充的化学系统(即混合物和化学反应)组成,置于水溶液中。通过调整化学系统的复介电常数,可以轻松实现可重构超表面。模拟并实验测量了不同入射偏振波(即线偏振和圆偏振)在静态乙醇溶液中随体积比变化的传输特性。两种结果均表明,该超表面可作为可调谐频率选择表面(FSS)或可调谐线到圆/交叉偏振转换器,在所需的频率范围内使用。基于静态溶液得出的可重构规律,我们开发了一种动态介电系统,并通过实验研究了填充在管内的具有时变介电常数的典型化学反应。它为通过具有给定介电常数变化规律的化学反应系统实现超表面的自动重构提供了新方法。