Si Liming, Han Kunlin, Niu Rong, Dong Lin, Xing Wentao, Zhu Weiren
Opt Express. 2024 May 20;32(11):19352-19360. doi: 10.1364/OE.525260.
This work presents a theoretical design and experimental demonstration of a novel miniaturized leaky-wave antenna (LWA) using composite waveguide based on substrate-integrated plasmonic waveguide (SIPW). The SIPW is designed by embedding hybrid dual spoof surface plasmon polariton (SSPP) structure into a three-layer substrate integrated waveguide (SIW). Due to the slow-wave effect of SIPW, the proposed miniaturized composite waveguide forms slowed phase velocity and decreased lower cutoff frequency. To excite backward-to-forward beam scanning mode and suppress the open stop-band, an asymmetric sinusoidal modulated structure is introduced to the surface of the composite waveguide. The experimental results indicate that the proposed SIPW-based LWA can achieve continuous beam scanning from the backward to the forward direction within the bandwidth of 10.6-13.7 GHz, passing through the broadside at 11.6 GHz.
这项工作展示了一种基于衬底集成等离子体波导(SIPW)的复合波导新型小型化漏波天线(LWA)的理论设计与实验演示。SIPW是通过将混合双类表面等离子体激元极化子(SSPP)结构嵌入三层衬底集成波导(SIW)中设计而成。由于SIPW的慢波效应,所提出的小型化复合波导形成了慢相速度并降低了下截止频率。为了激发后向到前向波束扫描模式并抑制开放阻带,在复合波导表面引入了非对称正弦调制结构。实验结果表明,所提出的基于SIPW的LWA能够在10.6 - 13.7 GHz带宽内实现从后向到前向的连续波束扫描,并在11.6 GHz处通过宽边。