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Low-loss hybrid plasmonic modes guided by metal-coated dielectric wedges for subwavelength light confinement

机译:由金属涂层介电楔引导的低损耗混合等离子体激元模式,用于亚波长光限制

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摘要

The optical characteristics of a metal-coated dielectric wedge structure are investigated at a wavelength of 1550 nm. The effects of the metal/gap layers' thicknesses, as well as the dimension of the dielectric wedge on the guided modes' properties, are systematically analyzed. It is revealed that the characteristics of the fundamental quasi-TE and quasi-TM plasmonic modes supported by the configuration demonstrate similar trends against the variation of the metal layer thickness while exhibiting quite different behaviors with the change of the wedge size. By choosing appropriate physical dimensions, both modes could simultaneously achieve low modal loss and subwavelength field confinement, along with reasonable mode power inside the low-index gap region. Investigations on the directional coupling between adjacent identical waveguides indicate that ultralow crosstalk can be enabled by the quasi-TE mode, with the coupling length more than two orders of magnitude larger than that achieved by the plasmonic mode in conventional hybrid counterparts. The presented metal-coated dielectric wedge structures can be employed as important building blocks for a number of integrated nanophotonic components, and could also enable numerous applications at the subwavelength scale.
机译:在1550 nm的波长下研究了金属涂层介电楔结构的光学特性。系统分析了金属/间隙层的厚度以及介电楔的尺寸对导模性能的影响。揭示了该配置支持的基本准TE和准TM等离激元模式的特性显示出相似的趋势,抵抗金属层厚度的变化,同时随着楔形尺寸的变化表现出完全不同的行为。通过选择合适的物理尺寸,两种模式都可以同时实现低模态损耗和亚波长场限制,以及在低折射率间隙区域内的合理模式功率。对相邻相同波导之间的定向耦合的研究表明,准TE模式可以实现超低串扰,其耦合长度比传统混合通信方式中等离激元模式所实现的耦合长度大两个数量级。提出的金属涂覆的介电楔形结构可以用作许多集成纳米光子组件的重要构件,并且还可以在亚波长范围内实现众多应用。

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