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Unified Theory of Surface-Plasmonic Enhancement and Extinction of Light Transmission through Metallic Nanoslit Arrays

机译:通过金属纳米缝阵列的表面-电声增强和消光的统一理论

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摘要

Metallic nanostructures are of immense scientific interest owing to unexpectedly strong interaction with light in deep subwavelength scales. Resonant excitations of surface and cavity plasmonic modes mediate strong light localization in nanoscale objects. Nevertheless, the role of surface plasmon-polaritons (SPP) in light transmission through a simple one-dimensional system with metallic nanoslits has been the subject of longstanding debates. Here, we propose a unified theory that consistently explains the controversial effects of SPPs in metallic nanoslit arrays. We show that the SPPs excited on the entrance and exit interfaces induce near-total internal reflection and abrupt phase change of the slit-guided mode. These fundamental effects quantitatively describe positive and negative effects of SPP excitation in a self-consistent manner. Importantly, the theory shows excellent agreement with rigorous numerical calculations while providing profound physical insight into the properties of nanoplasmonic systems.
机译:金属纳米结构由于与深亚波长尺度的光出乎意料的强相互作用而具有巨大的科学价值。表面和腔体等离子体激元模式的共振激发介导了纳米级物体中的强光定位。然而,表面等离振子-极化子(SPP)在通过具有金属纳米狭缝的简单一维系统的光传输中的作用一直是长期争论的主题。在这里,我们提出了一个统一的理论,该理论始终如一地解释了金属纳米缝阵列中SPP的争议作用。我们表明,在入口和出口界面上激发的SPP引起近乎全内反射和狭缝引导模式的突然相变。这些基本作用以自洽的方式定量描述了SPP激发的正作用和负作用。重要的是,该理论与严格的数值计算显示出极好的一致性,同时为纳米等离子体系统的性质提供了深刻的物理见解。

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