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Optical properties of a nanoegg-nanorod heterodimer: a quasi-static analysis

机译:Nanoegg-Nanorod异二聚体的光学性质:Quasi-静态分析

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Plasmon coupling between the dipolar localized surface plasmons of a nanoegg and the longitudinal dipolar localized surface plasmons of a nearby gold nanorod is investigated within a dipolar-quasistatic limit. This was achieved by varying the core-offset of the nanoegg for different nanorod sizes at a fixed coupling distance. With respect to the plasmon peaks of the isolated nanoegg, we studied blue shifted, resonant, and red shifted nanorods. We show that besides plasmon-induced resonance shifts, which occurred in all three cases studied, transparency dips are induced in both the absorption and scattering spectra of the nanoegg-nanorod dimer. The latter effect depends on the plasmon detuning frequency and the nanorod absorption cross section. In comparison to a nanoegg-nanosphere dimer, the optical properties of the nanoegg-nanorod dimer are more enhanced. (C) 2020 Optical Society of America
机译:在偶极准静态极限下,研究了纳米蛋的偶极定域表面等离子体激元与附近金纳米棒的纵向偶极定域表面等离子体激元之间的等离子体激元耦合。这是通过在固定的耦合距离下改变不同尺寸纳米棒的纳米蛋芯偏移量来实现的。关于孤立纳米蛋的等离子体激元峰,我们研究了蓝移、共振和红移纳米棒。我们发现,除了在所有三个研究案例中发生的等离子体激元引起的共振位移外,纳米蛋纳米棒二聚体的吸收光谱和散射光谱中都会产生透明度下降。后者的影响取决于等离子体激元失谐频率和纳米棒吸收截面。与纳米蛋纳米球二聚体相比,纳米蛋纳米棒二聚体的光学性质得到了更好的增强。(C) 2020美国光学学会

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