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用于与方位角旋转无关的交叉极化转换的手性超表面对称性研究。

Study of symmetries of chiral metasurfaces for azimuth-rotation-independent cross polarization conversion.

作者信息

Cheng Gong, Si Liming, Tang Pengcheng, Zhang Qingle, Lv Xin

出版信息

Opt Express. 2022 Feb 14;30(4):5722-5730. doi: 10.1364/OE.452773.

Abstract

The realization of cross-polarization conversion has attracted great interest in polarization conversion metasurfaces (PCMs), particularly due to polarization manipulation of electromagnetic (EM) waves with small size and low loss. An azimuth-rotation-independent (ARI) cross-polarization converter is a kind of 90° polarization rotator, which can rotate the polarization of linearly polarized incident electromagnetic (EM) waves with an arbitrary polarization direction to the orthogonally polarized transmitted EM waves. In this paper, we study the symmetry properties of chiral metasurfaces using the Jones matrix method for ARI 90° polarization rotators. The previous designs could only address C symmetry, but with this approach, the derived unit cell structure of the ARI PCM should possess C(n ≥ 3, n ∈ N) symmetry. To confirm the design concept, two chiral structures with different symmetries are investigated by full-wave numerical simulations. The experimental results are also carried out and excellently agree with the simulated results. It could be used for polarization conversion applications and further utilized in antenna applications, polarization detection, and telecommunication applications.

摘要

交叉极化转换的实现引起了人们对极化转换超表面(PCM)的极大兴趣,特别是因为它能够以小尺寸和低损耗对电磁波(EM)进行极化操纵。方位角旋转无关(ARI)交叉极化转换器是一种90°极化旋转器,它可以将任意极化方向的线极化入射电磁波(EM)的极化旋转为正交极化的透射电磁波(EM)。在本文中,我们使用琼斯矩阵方法研究了用于ARI 90°极化旋转器的手性超表面的对称性。以前的设计只能解决C对称性,但通过这种方法,推导得到的ARI PCM的单元结构应具有C(n≥3,n∈N)对称性。为了验证设计概念,通过全波数值模拟研究了两种具有不同对称性的手性结构。还进行了实验,实验结果与模拟结果非常吻合。它可用于极化转换应用,并进一步应用于天线应用、极化检测和电信应用。

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