Xu Kai-Da, Guo Ying Jiang, Deng Xianjin
Opt Express. 2019 Feb 18;27(4):4354-4363. doi: 10.1364/OE.27.004354.
Terahertz (THz) broadband spoof surface plasmon polaritons (SSPPs) using new structure of ultra-compact split-ring grooves are proposed. The high-order mode propagation is highly concentrated around the proposed structure with lower radiation loss implying improved operating bandwidth. More importantly, a size reduction of 83.5% can be realized as compared to the traditional grounded SSPP structure with the same high-order asymptotic frequency. To further verify the proposed idea, a similar structure in microwave regime is designed and measured, where the excitation is easily achieved by directly connecting the microstrip line to the proposed SSPP waveguide. The gradient transition section, such as flaring ground, can be avoided, which decreases the waveguide's longitudinal and transversal lengths and simplifies the design procedure. The measured results of the microwave prototype illustrate that it has good lowpass filtering performance, in which the reflection coefficient is better than -10 dB up to 13 GHz, with the smallest and worst insertion losses of 0.5 dB and 4.5 dB, respectively. To the best of the authors' knowledge, this work presents THz high-order broadband SSPP propagation for the first time, having significant potential for plasmonic integrated circuits application at microwave/THz frequencies.
提出了一种利用超紧凑开口环槽新结构的太赫兹(THz)宽带仿表面等离激元极化激元(SSPPs)。高阶模传播高度集中在所提出的结构周围,辐射损耗较低,这意味着工作带宽得到了改善。更重要的是,与具有相同高阶渐近频率的传统接地SSPP结构相比,尺寸可减小83.5%。为了进一步验证所提出的想法,设计并测量了一种微波频段的类似结构,其中通过将微带线直接连接到所提出的SSPP波导,可以轻松实现激励。可以避免诸如扩口接地等渐变过渡段,这减小了波导的纵向和横向长度,并简化了设计过程。微波原型的测量结果表明,它具有良好的低通滤波性能,其中反射系数在13 GHz以下优于-10 dB,最小和最大插入损耗分别为0.5 dB和4.5 dB。据作者所知,这项工作首次展示了太赫兹高阶宽带SSPP传播,在微波/太赫兹频率的等离子体集成电路应用方面具有巨大潜力。