存在另一个纳米散射体时纳米散射体中电磁多极子的杂化

Sagar Sehrawat, R. Kolkowski, A. Shevchenko
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引用次数: 0

摘要

尽管不同阶数的多极模式之间的耦合在光学超材料和超表面方面具有基础性和实用性,但尚未对其进行深入研究。在这里,我们利用散射场和振荡电流的电磁多极扩展来揭示靠近另一个纳米粒子的纳米粒子中的多极激发。所考虑的单粒子多极与在一对纳米粒子中激发的多极截然不同。利用扩展,我们揭示了电流的多极特性以及多极矩对每个粒子散射截面的贡献,包括它们之间相互作用的影响。我们发现,被粒子散射的光对每个粒子都起着不均匀入射场的作用,导致原本独立的正交多极共振杂化。对于沿纳米粒子对极化的入射平面波,偶极和四极共振的杂化会在偶极散射的光谱中产生一个显著的窄带共振,这在表面增强荧光和拉曼光谱等各种应用中都很有意义。总之,这项研究表明,在处理纳米粒子之间的多极-多极相互作用时,也必须考虑到这种杂化多极共振。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybridization of electromagnetic multipoles in a nanoscatterer in the presence of another nanoscatterer
Coupling between multipolar modes of different orders has not been investigated in depth, despite its fundamental and practical relevance in the context of optical metamaterials and metasurfaces. Here, we use an electromagnetic multipole expansion of both the scattered fields and the oscillating electric currents to reveal the multipolar excitations in a nanoparticle positioned close to another nanoparticle. The considered single-particle multipoles radically differ from multipoles excited in a pair of nanoparticles. Using the expansion, we reveal the multipole character of the electric currents and the contributions of the multipole moments to the scattering cross section of each particle, including the effect of their interaction. We find that light scattered by the particles plays the role of an inhomogeneous incident field for each of the particles, leading to hybridization of the originally independent orthogonal multipole resonances. For an incident plane wave polarized along the nanoparticle pair, the hybridization of the dipole and quadrupolar resonances gives rise to a significant narrowband resonance in the spectrum of the dipole scattering, which can be of interest for various applications, e.g., in surface-enhanced fluorescence and Raman spectroscopy. In general, this work shows that the multipole-multipole interaction between nanoparticles must be treated by taking into account also such hybridized multipole resonances.
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