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用于高度集成宽带圆极化天线的手性介质超表面

Chiral Dielectric Metasurfaces for Highly Integrated, Broadband Circularly Polarized Antenna.

作者信息

Ferreira-Gomes Bruno, Oliveira Osvaldo N, Mejía-Salazar Jorge Ricardo

机构信息

National Institute of Telecommunications (Inatel), Santa Rita do Sapucaí 37540-000, MG, Brazil.

São Carlos Institute of Physics, University of São Paulo, P.O. Box 369, São Carlos 13560-970, Brazil.

出版信息

Sensors (Basel). 2021 Mar 16;21(6):2071. doi: 10.3390/s21062071.

Abstract

We report on the design of a low-profile integrated millimeter-wave antenna for efficient and broadband circularly polarized electromagnetic radiation. The designed antenna comprises a chiral dielectric metasurface built with a 2×2 arrangement of dielectric cylinders with slanted-slots at the center. A broadbeam high-gain with wide axial ratio (AR)<3 dB bandwidth was reached by pairing the electric and magnetic resonances of the dielectric cylinders and the slanted slots when excited by an elliptically polarized driven-patch antenna. This electric-magnetic pairing can be tuned by varying the cylinders diameter and the tilting and rotation angles of the slanted slots. The simulation results indicate impedance-matching bandwidths up to 22.6% (25.3-31.6 GHz) with 3-dB AR bandwidths of 11.6% (26.9-30.2 GHz), which in terms of compactness (0.95λ0×0.95λ0) and performance are superior to previous antenna designs. Since the simulations were performed by assuming materials and geometries easily implementable experimentally, it is hoped that circularly polarized antennas based on chiral metasurfaces can be integrated into 5G and satellite communications.

摘要

我们报告了一种用于高效宽带圆极化电磁辐射的低剖面集成毫米波天线的设计。所设计的天线包括一个手性介质超表面,它由中心带有倾斜缝隙的介质圆柱按2×2排列构成。当由椭圆极化驱动贴片天线激发时,通过使介质圆柱和倾斜缝隙的电谐振和磁谐振配对,实现了宽波束高增益以及宽轴比(AR)<3 dB带宽。这种电磁配对可以通过改变圆柱直径以及倾斜缝隙的倾斜和旋转角度来调节。仿真结果表明,阻抗匹配带宽高达22.6%(25.3 - 31.6 GHz),3 dB轴比带宽为11.6%(26.9 - 30.2 GHz),就紧凑性(0.95λ0×0.95λ0)和性能而言,优于先前的天线设计。由于仿真是在假设材料和几何形状易于通过实验实现的情况下进行的,因此希望基于手性超表面的圆极化天线能够集成到5G和卫星通信中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/251c/8000959/2ccad0f47f9b/sensors-21-02071-g001.jpg

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