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A Hybrid Circuit for Spoof Surface Plasmons and Spatial Waveguide Modes to Reach Controllable Band-Pass Filters

机译:欺骗表面等离激元和空间波导模式的混合电路达到可控带通滤波器

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摘要

We propose a hybrid circuit for spoof surface plasmon polaritons (SPPs) and spatial waveguide modes to develop new microwave devices. The hybrid circuit includes a spoof SPP waveguide made of two anti-symmetric corrugated metallic strips and a traditional substrate integrated waveguide (SIW). From dispersion relations, we show that the electromagnetic waves only can propagate through the hybrid circuit when the operating frequency is less than the cut-off frequency of the SPP waveguide and greater than the cut-off frequency of SIW, generating efficient band-pass filters. We demonstrate that the pass band is controllable in a large range by designing the geometrical parameters of SPP waveguide and SIW. Full-wave simulations are provided to show the large adjustability of filters, including ultra wideband and narrowband filters. We fabricate a sample of the new hybrid device in the microwave frequencies, and measurement results have excellent agreements to numerical simulations, demonstrating excellent filtering characteristics such as low loss, high efficiency, and good square ratio. The proposed hybrid circuit gives important potential to accelerate the development of plasmonic integrated functional devices and circuits in both microwave and terahertz frequencies.
机译:我们提出了一种用于欺骗表面等离子体激元极化子(SPPs)和空间波导模式的混合电路,以开发新的微波设备。混合电路包括一个由两个反对称波纹状金属条制成的欺骗性SPP波导和一个传统的衬底集成波导(SIW)。从色散关系可以看出,只有当工作频率小于SPP波导的截止频率且大于SIW的截止频率时,电磁波才可以通过混合电路传播,从而产生有效的带通滤波器。通过设计SPP波导和SIW的几何参数,我们证明了通带在很大范围内是可控的。提供的全波仿真显示了滤波器的大可调整性,包括超宽带和窄带滤波器。我们在微波频率下制造了这种新型混合设备的样品,测量结果与数值模拟具有极好的一致性,证明了其出色的滤波特性,如低损耗,高效率和良好的平方比。所提出的混合电路在加速微波和太赫兹频率的等离激元集成功能器件和电路的开发方面具有重要的潜力。

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