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Frontiers of Information Technology & Electronic Engineering

ISSN 2095-9184 (print), ISSN 2095-9230 (online)

Microwave metamaterials: from exotic physics to novel information systems

Abstract: Metamaterials and metasurfaces have attracted much attention due to their powerful ability to control electromagnetic (EM) waves. In this paper, we review the recent developments in the field of EM metamaterials, starting from their exotic physics to their applications in novel information systems. First, we show the fundamental understanding on traditional metamaterials based on the effective medium theory and related applications, such as invisibility cloaks and meta-lenses. Second, we review the two-dimensional versions of metamaterials, i.e., metasurfaces, for controlling spatial waves and surface waves and thereafter present their typical designs. In particular, we briefly introduce spoof surface plasmon polaritons and their applications in microwave frequencies. Following the above approach, we emphatically present the concepts of digital coding metamaterials, programmable metamaterials, and information metamaterials. By extending the principles of information science to metamaterial designs, several functional devices and information systems are presented, which enable digital and EM-wave manipulations simultaneously. Finally, we give a brief summary of the development prospects for microwave metamaterials.

Key words: Metamaterial, Effective medium theory, Metasurface, Surface plasmon polaritons, Digital coding, Programmable, Information

Chinese Summary  <134> 电磁超材料:从新物理现象到新信息系统

吴瑞元1,2,崔铁军1,2
1东南大学毫米波国家重点实验室,中国南京市,210096
2东南大学无线通信技术协同创新中心,中国南京市,210096

摘要:由于对电磁波强大的调控能力,超材料和超表面吸引了越来越多研究者的关注。本文回顾总结近年来电磁超材料的发展,从最初的新物理现象到现在的新信息系统。首先展示等效媒质超材料的定义和应用,包括隐身衣和超材料透镜等。随后介绍二维超材料,即电磁超表面,对空间波和表面波的调控功能,同时概述表面等离子激元及其在微波段的应用。在此基础上,着重介绍新颖的数字编码超材料和可编程超材料,统称信息超材料。通过将理论层的信息科学与物理层的超材料设计联系在一起,实现一系列新型器件和系统,同时实现信息和电磁波调控。最后,对超材料的未来发展做出展望。

关键词组:超材料;等效媒质理论;超表面;表面等离子激元;数字编码;可编程;信息


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DOI:

10.1631/FITEE.1900465

CLC number:

TN99

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On-line Access:

2020-02-27

Received:

2019-09-02

Revision Accepted:

2019-12-25

Crosschecked:

2020-01-13

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