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Plasmonic behaviors of gold dimers perturbed by a single nanoparticle in the gap

机译:黄金二聚体摄动的电浆的行为单个纳米粒子的差距

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摘要

Modulation of resonance modes of plasmonic nanostructures at a single nanostructure level is of great importance for the development of integrated photonic chips. Recent progress of the fabrication techniques including double electron beam lithography, direct laser printing, and electron beam induced deposition has allowed the local fabrication of sub-50 nm size nanoparticles (NPs) of various materials, which provides a potential experimental realization of local impact on plasmonic behaviors of single nanostructures. In this article, we theoretically investigate that the presence of a single NP in the midgap may give rise to the excitation of new resonance modes and/or large spectral shifts of resonance modes for different plasmonic dimers (gold bowtie, nanodisk and nanorod dimers), therefore resulting in the modification of the far-field and near-field optical properties. The modification can be controlled by changing the deposition position, particle size, and material composition of the single NP. Moreover, our calculations imply that the plasmonic dimers perturbed locally by a single NP of the metal-insulator phase transition material (vanadium dioxide) in the gap can potentially act as very effective optical switch components in future photonic chips.
机译:调制的电浆共振模式纳米结构在一个单一的纳米结构水平的发展具有十分重要的意义光子集成芯片。制造技术包括电子的两倍电子束光刻技术,直接激光打印电子束诱导沉积使得这地方制造的纳米纳米颗粒大小(NPs)各种材料,它提供了一个潜在的实验实现的地方影响电浆单的行为纳米结构。调查一个NP的存在midgap可能产生新的激励共振模式和/或大型光谱的变化对不同的电浆二聚体共振模式(金领结,nanodisk和奈米棒二聚体),因此导致的修改远场和近场光学特性。修改可以通过改变控制沉积位置、颗粒大小和材料组成一个NP。计算结果表明,电浆二聚体扰乱当地的一个NP金属绝缘体相变材料(二氧化钒)差距可能会采取行动作为非常有效的光开关组件未来光子芯片。

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