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Novel non-periodic spoof surface plasmon polaritons with H-shaped cells and its application to high selectivity wideband bandpass filter

机译:具有H形细胞的新型非周期性欺骗表面等离子体极性恒星及其在高选择性宽带带通滤波器的应用

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In this paper, one kind of novel non-periodic spoof surface plasmon polaritons (SSPPs) with H-shaped cells is proposed. As we all know, the cutoff frequency exists inherently for the conventional comb-shaped SSPPs, which is a kind of periodic groove shape structures and fed by a conventional coplanar waveguide (CPW). In this work, instead of increasing the depth of all the grooves, two H-shaped cells are introduced to effectively reduce the cutoff frequency of the conventional comb-shaped SSPPs (about 12?GHz) for compact design. More importantly, the guide waves can be gradually transformed to SSPP waves with high efficiency, and better impedance matching from 50?Ω to the novel SSPP strip is achieved. Based on the proposed non-periodic SSPPs with H-shaped cells, a wideband bandpass filter (the 3-dB fractional bandwidths 68%) is realized by integrating the spiral-shaped defected ground structure (DGS) etched on CPW. Specifically, the filter shows high passband selectivity (Δf3?dB/Δf20?dB?=?0.91) and wide upper stopband with ?20?dB rejection. A prototype is fabricated for demonstration. Good agreements can be observed between the measured and simulated results, indicating potential applications in the integrated plasmonic devices and circuits at microwave and even THz frequencies.
机译:在本文中,提出了一种具有H形细胞的一种新的非周期性欺骗表面等离子体(SSPP)。众所周知,截止频率固有地存在于传统的梳形SSPP,这是一种周期性凹槽形状结构,并由传统的共面波导(CPW)馈送。在这项工作中,代替增加所有凹槽的深度,引入两个H形电池以有效地降低传统梳形SSPPS(约12·GHz)的截止频率以进行紧凑的设计。更重要的是,引导波可以高效率逐渐转换为SSPP波,实现从50Ωω的更好的阻抗到新的SSPP条带。基于具有H形电池的提出的非周期性SSPP,通过将螺旋形的偏移的地面结构(DGS)蚀刻在CPW上,实现了宽带带通滤波器(3dB分数带宽68%)。具体地,滤波器显示高通带选择性(ΔF3?dB /ΔF20≤DB?= 0.91)和宽上部阻带,具有?20?DB拒绝。原型制造用于演示。在测量和模拟结果之间可以观察到良好的协议,指示微波和甚至THz频率的集成等离子体器件和电路中的潜在应用。

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