首页> 外文期刊>Journal of Microscopy >Near-field-induced tunability of surface plasmon polaritons in composite metallic nanostructures.
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Near-field-induced tunability of surface plasmon polaritons in composite metallic nanostructures.

机译:复合金属纳米结构中表面等离子体激元极化子的近场诱导可调谐性。

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摘要

We numerically study near-field-induced coupling effects in metal nanowire-based composite nanostructures. Our multi-layer system is composed of individual gold nanowires supporting localized particle plasmons at optical wavelengths, and a spatially separated homogeneous silver slab supporting delocalized surface plasmons. We show that the localized plasmon modes of the composite structure, forming so-called magnetic atoms, can be controlled over a large spectral range by changing the thickness of the nearby metal slab. The optical response of single-wire and array-based metallic structures are compared. Spectral shifts due to wire-mirror interaction as well as the coupling between localized and delocalized surface plasmon modes in a magnetic photonic crystal are demonstrated. The presented effects are important for the optimization of metal-based nanodevices and may lead to the realization of metamaterials with novel plasmonic functionalities.
机译:我们数值研究了基于金属纳米线的复合纳米结构中的近场感应耦合效应。我们的多层系统由支持光波长局部粒子等离激元的单个金纳米线和支持离域表面等离激元的空间分离的均匀银平板组成。我们表明,通过改变附近金属板的厚度,可以在很大的光谱范围内控制复合结构的局部等离激元模式,形成所谓的磁性原子。比较了单线和基于阵列的金属结构的光学响应。证明了由于线-镜相互作用以及在磁性光子晶体中局部和局部电子等离振子模式之间的耦合而引起的光谱偏移。所提出的效应对于优化基于金属的纳米器件很重要,并且可能导致具有新型等离激元功能的超材料的实现。

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