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Invisible nanowires with interfering electric and toroidal dipoles

机译:带有干扰电偶极和环形偶极子的不可见纳米线

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摘要

By studying the scattering of normally incident plane waves by a single nanowire, we reveal the indispensable role of toroidal multipole excitation in multipole expansions of radiating sources. It is found that for both p-polarized and s-polarized incident waves, toroidal dipoles can be effectively excited within homogenous dielectric nanowires in the optical spectrum regime. We further demonstrate that the plasmonic core-shell nanowires can be rendered invisible through destructive interference of the electric and toroidal dipoles, which may inspire many nano-wire-based light-matter interaction studies, and incubate biological and medical applications that require non-invasive detections and measurements. (C) 2015 Optical Society of America
机译:通过研究单根纳米线对垂直入射平面波的散射,我们揭示了环形多极激发在辐射源的多极扩展中不可或缺的作用。已经发现,对于p极化和s极化入射波,在光谱范围内均质电介质纳米线内都可以有效地激发环形偶极子。我们进一步证明,通过电偶极和环形偶极子的相消干涉,可以使等离激元核-壳纳米线不可见,这可能会激发许多基于纳米线的光物质相互作用研究,并孵化需要非侵入性的生物学和医学应用检测和测量。 (C)2015年美国眼镜学会

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