论文标题

紫外线光谱范围的等离子晶格kerker效应

Plasmonic lattice Kerker effect in UV-Vis spectral range

论文作者

Gerasimov, V. S., Ershov, A. E., Bikbaev, R. G., Rasskazov, I. L., Isaev, I. L., Semina, P. N., Kostyukov, A. S., Zakomirnyi, V. I., Polyutov, S. P., Karpov, S. V.

论文摘要

大多数是被抛弃的,但在全丝纳米光子学的出现后恢复了,可以在来自具有较强的电气和磁性MIE共振的高索引成分的多种纳米结构中观察到Kerker效应。存在磁反应的必要条件限制了使用通常非磁性常规等离子纳米结构来使用kerker效应。尽管如此,我们还是首次在这里证明了晶格kerker效应在常规等离子纳米结构中的出现。集体晶格振荡从瑞利异常之间的微妙相互作用以及局部表面等离子体共振的电动和磁性偶极子以及电气和磁性四极引起抑制频谱范围内的反向散射。 Al阵列的几何参数的变化允许在整个紫外线和可见的波长范围内调整晶格kerker效应,使用其他等离子或全射电材料几乎无法实现。有人认为,我们的结果为等离震源和kerker效应的进一步应用奠定了基础。

Mostly forsaken, but revived after the emergence of all-dielectric nanophotonics, the Kerker effect can be observed in a variety of nanostructures from high-index constituents with strong electric and magnetic Mie resonances. Necessary requirement for the existence of a magnetic response limits the use of generally non-magnetic conventional plasmonic nanostructures for the Kerker effect. In spite of this, we demonstrate here for the first time the emergence of the lattice Kerker effect in regular plasmonic Al nanostructures. Collective lattice oscillations emerging from delicate interplay between Rayleigh anomalies and localized surface plasmon resonances both of electric and magnetic dipoles, and electric and magnetic quadrupoles result in suppression of the backscattering in a broad spectral range. Variation of geometrical parameters of Al arrays allows for tailoring lattice Kerker effect throughout UV and visible wavelength ranges, which is close to impossible to achieve using other plasmonic or all-dielectric materials. It is argued that our results set the ground for wide ramifications in the plasmonics and further application of the Kerker effect.

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