Electromagnetic Wave Manipulations via Liquid-metal-based Coding Metamaterial System

Sissi Wang, Qun Yan Zhou, J. Dai, Q. Cheng
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Abstract

For decades, metamaterials have been widely investigated for their excellent feature of fashioning the spatial electromagnetic (EM) waves. Moreover, to control the EM waves in a digitally discretized manner, the concepts of the digital coding metamaterial and programmable metamaterial were proposed in 2014. However, most time, the reconfigurable function of the coding metamaterials is realized by electricity through active elements, such as PIN diodes. Here, we introduce another driving manner, liquid-metal-based mechanical driving, to the coding metamaterial system. In general, liquid-metal-based coding metamaterials have two main distinguishing features: 1) they can implement reconfigurable states continuously owing to the fluidity; 2) they can get rid of the mechanical fatigue and damage due to the flexibility of liquid metal and its containers. In the paper, we begin by designing a liquid-metal-based meta-atom with the characteristics of broadband reconfiguration, multi-bit coding and wide-angle incidence. Then, the designed meta-atoms are spatially arranged to realize the applications of broadband beam-steering and broadband RCS reduction.
基于液态金属编码超材料系统的电磁波操纵
几十年来,超材料以其塑造空间电磁波的优异特性得到了广泛的研究。此外,为了以数字离散方式控制电磁波,2014年提出了数字编码超材料和可编程超材料的概念。然而,大多数情况下,编码超材料的可重构功能是通过有源元件(如PIN二极管)来实现的。本文介绍了编码超材料系统的另一种驱动方式——基于液体金属的机械驱动。一般来说,基于液态金属的编码超材料具有两个主要特征:1)由于其流动性,它们可以连续实现可重构状态;2)可以摆脱液态金属及其容器的柔性所造成的机械疲劳和损伤。本文首先设计了一种基于液态金属的元原子,该元原子具有宽带重构、多比特编码和广角入射等特点。然后,对设计的元原子进行空间排列,实现宽带波束导向和宽带RCS降频的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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