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可重构超表面的最新进展:原理与应用

Recent Advances in Reconfigurable Metasurfaces: Principle and Applications.

作者信息

Zhang Ziyang, Shi Hongyu, Wang Luyi, Chen Juan, Chen Xiaoming, Yi Jianjia, Zhang Anxue, Liu Haiwen

机构信息

Shaanxi Key Laboratory of Deep Space Exploration Intelligent Information Technology, Xi'an Jiaotong University, Xi'an 710049, China.

School of Information and Communications Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Nanomaterials (Basel). 2023 Jan 28;13(3):534. doi: 10.3390/nano13030534.

Abstract

Metasurfaces have shown their great capability to manipulate electromagnetic waves. As a new concept, reconfigurable metasurfaces attract researchers' attention. There are many kinds of reconfigurable components, devices and materials that can be loaded on metasurfaces. When cooperating with reconfigurable structures, dynamic control of the responses of metasurfaces are realized under external excitations, offering new opportunities to manipulate electromagnetic waves dynamically. This review introduces some common methods to design reconfigurable metasurfaces classified by the techniques they use, such as special materials, semiconductor components and mechanical devices. Specifically, this review provides a comparison among all the methods mentioned and discusses their pros and cons. Finally, based on the unsolved problems in the designs and applications, the challenges and possible developments in the future are discussed.

摘要

超表面已展现出其操纵电磁波的强大能力。作为一个新概念,可重构超表面吸引了研究人员的关注。有许多种类的可重构组件、器件和材料可加载到超表面上。当与可重构结构配合使用时,在外部激励下可实现对超表面响应的动态控制,为动态操纵电磁波提供了新机会。本综述介绍了一些按所使用技术分类的设计可重构超表面的常见方法,如特殊材料、半导体组件和机械设备。具体而言,本综述对所提及的所有方法进行了比较,并讨论了它们的优缺点。最后,基于设计和应用中尚未解决的问题,探讨了未来的挑战和可能的发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c26d/9921398/df1203918e07/nanomaterials-13-00534-g001.jpg

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