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一种超宽带薄型超材料线性交叉极化转换。

An ultra-wideband thin metamaterial linear cross-polarization conversion.

作者信息

Nochian Pegah, Atlasbaf Zahra

机构信息

Electrical Engineering Department, Tarbiat Modares University, Tehran, Iran.

出版信息

Sci Rep. 2025 Jan 24;15(1):3062. doi: 10.1038/s41598-025-86764-8.

Abstract

This article presents the design of a novel ultra-wideband, thin metamaterial linear cross-polarization converter (CPC) operating at microwave frequencies. The CPC consists of two concentric deformed rings on a dielectric substrate backed by a metallic surface. It demonstrates co-polarization and cross-polarization reflection coefficients below - 11 and above - 1.1 dB, respectively, over a wide frequency range of 8.75-17.75 GHz, achieving a 68% bandwidth. Within this range, the polarization conversion ratio exceeds 90%, with three prominent peaks at 9.3 GHz, 13 GHz, and 17.4 GHz, reaching 99.5%, 99.8%, and 99.3% respectively. The unit cell dimensions are compact at 6.3 × 6.3 × 2 mm. The CPC's performance was analyzed under varying polarization and oblique incidence angles, and the surface current distributions were studied to elucidate the polarization conversion mechanism. Simulations using CST and FEKO demonstrated substantial agreement, also equivalent circuit is determined and compared to CST software. The compact, thin, and ultra-wideband design makes this CPC a promising candidate for applications in advanced communication systems such as radar cross-section reduction and electromagnetic interference suppression. The results are validated further by experimental measurements of the fabricated CPC.

摘要

本文介绍了一种新型的超宽带、薄型超材料线性交叉极化转换器(CPC)的设计,该转换器工作在微波频率。该CPC由两个同心变形环组成,位于由金属表面支撑的介质基板上。它在8.75 - 17.75 GHz的宽频率范围内,共极化和交叉极化反射系数分别低于-11 dB和高于-1.1 dB,实现了68%的带宽。在此范围内,极化转换率超过90%,在9.3 GHz、13 GHz和17.4 GHz处有三个显著峰值,分别达到99.5%、99.8%和99.3%。单元尺寸紧凑,为6.3×6.3×2 mm。分析了CPC在不同极化和斜入射角下的性能,并研究了表面电流分布以阐明极化转换机制。使用CST和FEKO进行的仿真显示出高度一致性,还确定了等效电路并与CST软件进行了比较。这种紧凑、薄型和超宽带的设计使该CPC成为先进通信系统中如雷达散射截面减小和电磁干扰抑制等应用的有前途的候选者。通过对制造的CPC进行实验测量进一步验证了结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c18/11759693/5ef963764b6c/41598_2025_86764_Fig1_HTML.jpg

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