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Multi-channel composite spoof surface plasmon polaritons propagating along periodically corrugated metallic thin films

机译:沿着周期性波纹金属薄膜传播的多通道复合欺骗表面等离激元极化子

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摘要

In this work, we demonstrate that composite spoof surface plasmon polaritons can be excited by coplanar waveguide, which are composed of two different spoof surface plasmon polaritons (SSPPs) modes propagating along a periodically corrugated metallic thin film simultaneously. These two SSPPs correspond to the dominant modes of one-dimensional (1D) periodical hole and groove arrays separately. We have designed and simulated a planar composite plasmonic waveguide in the microwave frequencies, and the simulation results show that the composite plasmonic waveguide can achieve multi-channel signal transmission with good propagation performance. The proposed planar composite plasmonic metamaterial can find potential applications in developing surface wave devices in integrated plasmonic circuits and multi-channel signal transmission systems in the microwave and terahertz frequencies.
机译:在这项工作中,我们证明了复合欺骗性表面等离子体激元极化子可以被共面波导激发,该共平面波导由同时沿着周期性波纹金属薄膜传播的两种不同的欺骗性表面等离子体激元激子(SSPPs)模式组成。这两个SSPP分别对应于一维(1D)周期性孔和凹槽阵列的主导模式。我们在微波频率下设计并模拟了平面复合等离子体波导,仿真结果表明,该复合等离子体波导可以实现多通道信号传输,并且具有良好的传播性能。所提出的平面复合等离子体超材料可以在微波和太赫兹频率的集成等离子体电路和多通道信号传输系统中开发表面波装置中找到潜在的应用。

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