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Surface plasmon dispersion engineering for optimizing scattering, emission, and radiation properties on a graphene spherical device

机译:用于优化石墨烯球形装置上的散射,发射和辐射性能的表面等离子体分散工程

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摘要

We present a dispersion engineering method based on the rigorous electromagnetic theory to study the scattering properties of a double graphene layer spherical structure. The localized surface plasmons (LSPs) supported by the structure provide resonance channels that lead to an enhancement of the electromagnetic cross section. The method is used to find conditions under which two different multipolar LSP resonances occur at the same frequency value. The superscattering feature under these conditions is revealed by an extraordinary enhancement of the scattering cross section when the structure is illuminated by a plane wave field. Moreover, by studying the behavior of a single emitter I localized near the graphene sphere, we show that the spontaneous emission and radiation efficiencies are also largely enhanced when the two different LSP resonances overlap. (C) 2020 Optical Society of America
机译:我们提出了一种基于严格电磁理论的分散工程方法,研究双石墨烯层球面结构的散射特性。 该结构支撑的局部表面等离子体(LSP)提供了导致电磁横截面的增强的谐振通道。 该方法用于找到在相同频率值处发生两个不同的多极LSP共振的条件。 当通过平面波场照射结构时,通过散射横截面的非凡增强来揭示在这些条件下的超级电动机特征。 此外,通过研究石墨烯球体附近局部化的单个发射器的行为,我们表明,当两种不同的LSP共振重叠时,自发发射和辐射效率也在很大程度上增强。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共9页
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