Metamaterial Aperture for Frequency-diverse Dual-mode OAM Beams

Ningning Zhou, Mengran Zhao, Shitao Zhu
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Abstract

In this paper, a metamaterial aperture for generating electromagnetic vortex waves with frequency-diverse dual-mode orbital angular momentum (OAM) in the X-band (8 GHz–12 GHz) is designed. The electromagnetic vortex wave carrying OAM is also called the OAM beam. OAM beams with different modes can be generated by the proposed metamaterial aperture at different working frequencies Firstly, three kinds of metamaterial units including the rectangular patch unit, the jerusalem cross unit and the swastika unit are designed, respectively. Through optimization, the transmission phase of the unit group can cover 2π, which meets the requirements of generating OAM beams Secondly, the metamaterial aperture is divided into two annular regions and metamaterial units with certain transmission phases at corresponding frequencies are distributed at specific annular regions according to the phase distributions of OAM beams. In addition, the design method can be extended to generate frequency-diverse multi-mode OAM beams, which can be used to improve the resolution of radar imaging system. Finally, the metamaterial aperture is modeled and simulated in the Computer Simulation Technology (CST) software. 1-mode and 2-mode OAM beams are generated by the proposed metamaterial aperture at 8 GHz and 12 GHz respectively, which validates its feasibility of generating frequency-diverse dual-mode OAM beams.
频变双模OAM光束的超材料孔径
设计了一种在x波段(8ghz - 12ghz)产生具有变频双模轨道角动量(OAM)的电磁涡旋波的超材料孔径。携带OAM的电磁涡旋波也称为OAM波束。提出的超材料孔径在不同工作频率下可产生不同模式的OAM光束。首先,分别设计了三种超材料单元:矩形贴片单元、耶路撒冷十字单元和万字单元。通过优化,单元群的传输相位可以覆盖2π,满足产生OAM波束的要求。其次,根据OAM波束的相位分布,将超材料孔径划分为两个环形区域,并将相应频率下具有一定传输相位的超材料单元分布在特定的环形区域。此外,该设计方法还可以扩展到产生分频多模OAM波束,可用于提高雷达成像系统的分辨率。最后,利用计算机仿真技术(CST)软件对超材料孔径进行建模和仿真。在8 GHz和12 GHz的超材料孔径下分别产生了1模和2模OAM波束,验证了其产生分频双模OAM波束的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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