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基于近零介电常数介质的与几何形状无关的天线。

Geometry-independent antenna based on Epsilon-near-zero medium.

作者信息

Li Hao, Zhou Ziheng, He Yijing, Sun Wangyu, Li Yue, Liberal Iñigo, Engheta Nader

机构信息

Department of Electronic Engineering, Beijing National Research Center for Information Science and Technology, Tsinghua University, Beijing, 100084, China.

Department of Electrical and Electronic Engineering, Public University of Navarre, Pamplona, 31006, Spain.

出版信息

Nat Commun. 2022 Jun 22;13(1):3568. doi: 10.1038/s41467-022-31013-z.

Abstract

It is well known that electromagnetic radiation from radiating elements (e.g., antennas, apertures, etc.) shows dependence on the element's geometry shape in terms of operating frequencies. This basic principle is ubiquitous in the design of radiators in multiple applications spanning from microwave, to optics and plasmonics. The emergence of epsilon-near-zero media exceptionally allows for an infinite wavelength of electromagnetic waves, manifesting exotic spatially-static wave dynamics which is not dependent on geometry. In this work, we analyze theoretically and verify experimentally such geometry-independent features for radiation, thus presenting a novel class of radiating resonators, i.e., antennas, with an operating frequency irrelevant to the geometry shape while only determined by the host material's dispersions. Despite being translated into different shapes and topologies, the designed epsilon-near-zero antenna resonates at a same frequency, while exhibiting very different far-field radiation patterns, with beams varying from wide to narrow, or even from single to multiple. Additionally, the photonic doping technique is employed to facilitate the high-efficiency radiation. The material-determined geometry-independent radiation may lead to numerous applications in flexible design and manufacturing for wireless communications, sensing, and wavefront engineering.

摘要

众所周知,辐射元件(如天线、孔径等)发出的电磁辐射在工作频率方面表现出对元件几何形状的依赖性。这一基本原理在从微波到光学和等离子体学等多种应用的辐射器设计中普遍存在。近零介电常数(epsilon-near-zero)介质的出现特别允许电磁波具有无限波长,表现出不依赖于几何形状的奇异空间静态波动动力学。在这项工作中,我们从理论上进行分析并通过实验验证了这种与几何形状无关的辐射特性,从而提出了一类新型的辐射谐振器,即天线,其工作频率与几何形状无关,仅由主体材料的色散决定。尽管设计的近零介电常数天线被转换为不同的形状和拓扑结构,但它在相同频率下谐振,同时展现出非常不同的远场辐射方向图,波束从宽到窄,甚至从单波束到多波束变化。此外,采用光子掺杂技术来促进高效辐射。这种由材料决定的与几何形状无关的辐射可能会在无线通信、传感和波前工程的灵活设计和制造中带来众多应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5edb/9217913/1e9335098bd2/41467_2022_31013_Fig1_HTML.jpg

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