Leaky wave antenna with backfire to endfire beam-scanning capability based on even mode spoof surface plasmon polaritons

Min Wang, Gao Wei, Kangkang Han, Siyuan Lei
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Abstract

Abstract In this paper, a leaky wave antenna (LWA) based on even mode excited spoof surface plasmon polaritons (SSPPs) is proposed. The LWA can radiate beams from backfire to endfire as the frequency increases. The proposed LWA is asymmetrically modulated by the method of sinusoidal modulation of the reactance surface at two sides of the SSPP structure, which brings a phase difference between two sides of the antenna. The phase difference produces the field component that radiates the beam in the backfire or endfire direction. In this way, the full-angle beam scanning is realized. Moreover, to reduce the open-stop band effect, an improved LWA with multiperiod modulation and asymmetric units is proposed. The simulated results indicate that the radiation beam steers from backfire to endfire. A prototype of the proposed LWAs is fabricated and measured. The measured results agree well with the simulated ones.
基于均匀模欺骗表面等离子激元极化的逆火至端火波束扫描漏波天线
摘要本文提出了一种基于偶模激发欺骗表面等离子激元的漏波天线(LWA)。随着频率的增加,LWA可以从背火向尾火辐射光束。通过对SSPP结构两侧的电抗表面进行正弦调制的方法对LWA进行非对称调制,使天线两侧产生相位差。相位差产生的场分量使光束向回火或末火方向辐射。这样就实现了全角度波束扫描。此外,为了减小开阻带效应,提出了一种多周期调制和非对称单元的改进LWA。仿真结果表明,辐射束从回火向尾火方向转移。制作并测量了所提出的LWAs的原型。实测结果与模拟结果吻合较好。
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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