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Plasmonic Excitations of 1D Metal-Dielectric Interfaces in 2D Systems: 1D Surface Plasmon Polaritons

机译:2D系统中1D金属介电界面的等离子激发:1D表面等离激元极化子。

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摘要

Surface plasmon-polariton (SPP) excitations of metal-dielectric interfaces are a fundamental light-matter interaction which has attracted interest as a route to spatial confinement of light far beyond that offered by conventional dielectric optical devices. Conventionally, SPPs have been studied in noble-metal structures, where the SPPs are intrinsically bound to a 2D metal-dielectric interface. Meanwhile, recent advances in the growth of hybrid 2D crystals, which comprise laterally connected domains of distinct atomically thin materials, provide the first realistic platform on which a 2D metal-dielectric system with a truly 1D metal-dielectric interface can be achieved. Here we show for the first time that 1D metal-dielectric interfaces support a fundamental 1D plasmonic mode (1DSPP) which exhibits cutoff behavior that provides dramatically improved light confinement in 2D systems. The 1DSPP constitutes a new basic category of plasmon as the missing 1D member of the plasmon family: 3D bulk plasmon, 2DSPP, 1DSPP, and 0D localized SP.
机译:金属-电介质界面的表面等离振子-极化(SPP)激发是一种基本的光-物质相互作用,它吸引了人们对光的空间限制的兴趣,远远超出了常规介电光学设备所提供的范围。常规上,已经在贵金属结构中研究了SPP,其中SPP本质上绑定到2D金属-电介质界面。同时,包含不同原子薄材料的横向连接域的混合2D晶体生长的最新进展提供了第一个现实平台,在该平台上可以实现具有真正1D金属-电介质界面的2D金属-电介质系统。在这里,我们首次显示一维金属介电界面支持基本的一维等离激元模式(1DSPP),该模式具有截止行为,可显着改善2D系统中的光限制。 1DSPP构成了等离激元的一个新的基本类别,它是等离激元族中缺少的1D成员:3D整体等离激元,2DSPP,1DSPP和0D本地化SP。

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