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用于微波应用的双频极化转换超表面的设计与实验分析。

Design and experimental analysis of dual-band polarization converting metasurface for microwave applications.

作者信息

Khan Bilawal, Kamal Babar, Ullah Sadiq, Khan Imran, Shah Jawad Ali, Chen Jingdong

机构信息

Department of Telecommunication Engineering, UET Mardan, Mardan, 23200, Pakistan.

Center of Intelligent Acoustics and Immersive Communications, Northwestern Polytechnical University, Xi'an, Shaanxi, China.

出版信息

Sci Rep. 2020 Sep 21;10(1):15393. doi: 10.1038/s41598-020-71959-y.

Abstract

The manipulation of polarization state of electromagnetic waves is of great importance in many practical applications. In this paper, the reflection characteristics of a thin and dual-band metasurface are examined in the microwave frequency regime. The metasurface consists of a 22 × 22 element array of periodic unit cells. The geometry of the unit cell consists of three layers, including a 45° inclined dipole shape metal patch on top, which is backed by a 1.6 mm thick FR-4 substrate in the middle, and a fully reflective metallic mirror at the bottom. The proposed surface is exposed to horizontally (x) or vertically (y) polarized plane waves and the co and cross polarization reflection coefficients of the reflected waves are investigated experimentally in the 6-26 GHz frequency range. The metasurface is designed to convert incident waves of known polarization state (horizontal or vertical) to orthogonal polarization state (vertical and horizontal) in two distinct frequency bands, i.e. 7.1-8 GHz and 13.3-25.8 GHz. In these two frequency bands the simulated and experimental results are in good agreement. The polarization conversion ratio (PCR) of the surface is greater than 95% in the targeted frequency bands. A detailed parametric analysis of the metasurface is also discussed in this work and it has been estimated that the surface has the additional ability to convert linearly polarized waves to circularly polarized waves at several distinct frequencies. The proposed metasurface can be utilized in sensor applications, stealth technology, electromagnetic measurements, and antennas design.

摘要

在许多实际应用中,电磁波偏振态的操控具有重要意义。本文研究了一种薄型双频超表面在微波频段的反射特性。该超表面由一个22×22单元的周期性单元格阵列组成。单元格的几何结构由三层组成,顶部是一个45°倾斜的偶极子形状金属贴片,中间由一块1.6毫米厚的FR - 4基板支撑,底部是一个全反射金属镜。将该超表面暴露于水平(x)或垂直(y)极化平面波,并在6 - 26吉赫兹频率范围内对反射波的共极化和交叉极化反射系数进行了实验研究。该超表面被设计为在两个不同频段,即7.1 - 8吉赫兹和13.3 - 25.8吉赫兹,将已知偏振态(水平或垂直)的入射波转换为正交偏振态(垂直和水平)。在这两个频段,模拟结果与实验结果吻合良好。在目标频段,该超表面的偏振转换率(PCR)大于95%。本文还讨论了对该超表面的详细参数分析,据估计该超表面在几个不同频率下还具有将线偏振波转换为圆偏振波的额外能力。所提出的超表面可应用于传感器、隐身技术、电磁测量和天线设计等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4855/7505988/677f03bfd7f0/41598_2020_71959_Fig1_HTML.jpg

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