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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Improving field enhancement of 2D hollow tapered waveguides via dielectric microcylinder coupling
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Improving field enhancement of 2D hollow tapered waveguides via dielectric microcylinder coupling

机译:通过介电微圆柱体耦合改善2D空心锥形波导的场增强

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摘要

We numerically study a novel scheme to improve the field enhancement of 2D hollow tapered waveguides (HTWs). A dielectric microcylinder is embedded into a metal-insulator-metal (MIM) HTW for resonant exciting gap surface plasmons (GSPs), which is different from the lowest propagating mode (TM0) excitation via the conventional fire-end coupling method. The physical mechanism of the field enhancement and the influence of critical parameters such as numerical aperture (NA) of the lens, permittivity of the microcylinder and the incident wavelength are discussed. The substantial improvement of the GSP excitation efficiency via dielectric microcylinder coupling shows potential in designing tapered MIM waveguides for nanofocusing and field enhancement.
机译:我们数值研究一种新的方案,以改善二维空心锥形波导(HTWs)的场增强。将电介质微圆柱体嵌入到金属-绝缘体-金属(MIM)的HTW中,以谐振间隙表面等离子体激元(GSP),这不同于通过常规火端耦合方法的最低传播模式(TM0)激发。讨论了场增强的物理机制以及诸如透镜的数值孔径(NA),微柱体的介电常数和入射波长等关键参数的影响。通过介电微圆柱体耦合大大提高了GSP激发效率,这显示了设计锥形MIM波导用于纳米聚焦和场增强的潜力。

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