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Compact and highly-confined spoof surface plasmon polaritons with fence-shaped grooves

机译:具有栅栏形凹槽的紧凑且高度受限的欺骗表面等离激元极化子

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摘要

In this paper, a compact and highly-confined spoof surface plasmon polaritons (SSPPs) with fence-shaped grooves is proposed. By adding the metal strips that similar to the fence on the basis of T-grooves, the waves can be confined more tightly as the propagation paths of current are effectively increased, which leads to a reduction of the height of SSPPs units by 48.4% compared to the rectangular grooves. Moreover, compared with conventional SSPPs units mentioned before, the proposed design exhibits the strongest confinement to EM waves. To verify the effectiveness of the proposed unit, a corresponding transmission line is simulated and fabricated. Both simulated and measured results are in good agreement, which show the superior performance of this structure. Meanwhile, due to the simplicity and effectiveness, this proposed structure has a great research and application prospects in developing the miniaturized devices and circuits.
机译:本文提出了一种具有栅栏形凹槽的紧凑且密闭的欺骗性表面等离子体激元极化子(SSPPs)。通过在T形槽的基础上添加类似于围栏的金属条,可以有效地增加电流的传播路径,从而将波更紧密地限制在​​波峰中,与之相比,SSPPs单元的高度降低了48.4%到矩形凹槽。而且,与前面提到的常规SSPPs装置相比,所提出的设计对EM波表现出最强的局限性。为了验证所提出单元的有效性,模拟并制造了一条相应的传输线。模拟结果和测量结果均吻合良好,显示了该结构的优越性能。同时,由于其简单性和有效性,该结构在开发小型化器件和电路方面具有很大的研究和应用前景。

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