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增强单层同心核壳颗粒中的法诺共振。

Boosting Fano resonances in single layered concentric core-shell particles.

作者信息

Sancho-Parramon Jordi, Jelovina Denis

机构信息

Rudjer Boskovic Institute, Bijenicka cesta 54, Zagreb 10000, Croatia.

出版信息

Nanoscale. 2014 Nov 21;6(22):13555-64. doi: 10.1039/c4nr03879g.

Abstract

Efficient excitation of Fano resonances in plasmonic systems usually requires complex nano-structure geometries and some degree of symmetry breaking. However, a single-layered concentric core-shell particle presents inherent Fano profiles in the scattering spectra when sphere and cavity modes spectrally overlap. Weak hybridization and suitable choice of core and shell materials gives rise to strong electric dipolar Fano resonances in these systems and retardation effects can result in resonances of higher multipolar order or of magnetic type. Furthermore, suitable tailoring of illumination conditions leads to an enhancement of the Fano resonance by quenching of unwanted electromagnetic modes. Overall, it is shown that single layered core-shell particles can act as robust Fano resonators.

摘要

在等离子体系统中高效激发法诺共振通常需要复杂的纳米结构几何形状和一定程度的对称性破缺。然而,当球体模式和腔模式在光谱上重叠时,单层同心核壳粒子在散射光谱中呈现出固有的法诺轮廓。弱杂化以及对核和壳材料的适当选择会在这些系统中产生强烈的电偶极法诺共振,并且延迟效应会导致更高多极阶次或磁型的共振。此外,对光照条件进行适当调整会通过消除不需要的电磁模式来增强法诺共振。总体而言,结果表明单层核壳粒子可以作为稳健的法诺谐振器。

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