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Strongly Confined Spoof Surface Plasmon Polaritons Waveguiding Enabled by Planar Staggered Plasmonic Waveguides

机译:平面交错等离子波导管可实现强约束的欺骗表面等离激元极化子波导

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摘要

We demonstrate a novel route to achieving highly efficient and strongly confined spoof surface plasmon polaritons (SPPs) waveguides at subwavelength scale enabled by planar staggered plasmonic waveguides (PSPWs). The structure of these new waveguides consists of an ultrathin metallic strip with periodic subwavelength staggered double groove arrays supported by a flexible dielectric substrate, leading to unique staggered EM coupling and waveguiding phenomenon. The spoof SPP propagation properties, including dispersion relations and near field distributions, are numerically investigated. Furthermore, broadband coplanar waveguide (CPW) to planar staggered plasmonic waveguide (PSPW) transitions are designed to achieve smooth momentum matching and highly efficient spoof SPP mode conversion. By applying these transitions, a CPW-PSPW-CPW structure is designed, fabricated and measured to verify the PSPW’s propagation performance at microwave frequencies. The investigation results show the proposed PSPWs have excellent performance of deep subwavelength spoof SPPs confinement, long propagation length and low bend loss, as well as great design flexibility to engineer the propagation properties by adjusting their geometry dimensions and material parameters. Our work opens up a new avenue for development of various advanced planar integrated plasmonic devices and circuits in microwave and terahertz regimes.
机译:我们展示了一种通过平面交错等离激元波导(PSPWs)实现的在亚波长尺度上实现高效且高度局限的欺骗表面等离激元极化子(SPPs)波导的新颖途径。这些新型波导的结构由超薄金属带组成,该金属带具有周期性的亚波长交错双槽阵列,并由柔性介电基板支撑,从而导致独特的交错EM耦合和波导现象。数值研究了欺骗性SPP传播特性,包括色散关系和近场分布。此外,宽带共面波导(CPW)到平面交错等离子波导(PSPW)过渡的设计目的是实现平滑的动量匹配和高效的欺骗性SPP模式转换。通过应用这些过渡,可以设计,制造和测量CPW-PSPW-CPW结构,以验证PSPW在微波频率下的传播性能。研究结果表明,所提出的PSPW具有良好的深亚波长欺骗性SPPs禁闭性能,较长的传播长度和较低的弯曲损耗,以及通过调整其几何尺寸和材料参数来设计传播特性的设计灵活性。我们的工作为微波和太赫兹制式的各种先进平面集成等离子设备和电路的开发开辟了一条新途径。

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