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Coexistence of Scattering Enhancement and Suppression by Plasmonic Cavity Modes in Loaded Dimer Gap-Antennas

机译:装载二聚体间隙 - 天线等离子腔模式散射增强和抑制的共存

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Plasmonic nanoantenna is of promising applications in optical sensing and detection, enhancement of optical nonlinear effect, surface optical spectroscopy, photoemission, etc. Here we show that in a carefully-designed dimer gap-antenna made by two metallic nanorods, the longitudinal plasmon antenna mode (AM) of bonding dipoles can compete with the transverse plasmonic cavity modes (CMs), yielding dramatically enhanced or suppressed scattering efficiency, depending on the CMs symmetry characteristics. More specifically, it is demonstrated that an appropriately loaded gap layer enables substantial excitation of toroidal moment and its strong interaction with the AM dipole moment, resulting in Fano- or electromagnetically induced transparency (EIT)-like profile in the scattering spectrum. However, for CMs with nonzero azimuthal number, the spectrum features a cumulative signature of the respective AM and CM resonances. We supply both detailed near-field and far-field analysis, showing that the modal overlap and phase relationship between the fundamental moments of different order play a crucial role. Finally, we show that the resonance bands of the AM and CMs can be tuned by adjusting the geometry parameters and the permittivity of the load. Our results may be useful in plasmonic cloaking, spin-polarized directional light emission, ultra-sensitive optical sensing, and plasmon-mediated photoluminescence.
机译:等离子体纳米纳米纳是在光学传感和检测中的应用,光学非线性效应,表面光谱,光曝光等的应用。在这里,我们表明,在由两个金属纳米棒制成的仔细设计的二聚体间隙天线中,纵向等离子体天线模式(AM)的粘合偶极子可以与横向等离子体腔模式(CMS)竞争,取决于CMS对称特性,产生显着增强或抑制散射效率。更具体地,证明适当加载的间隙层能够实现环形矩的显着激发及其与AM偶极矩的强的相互作用,导致散射光谱中的扇形或电磁诱导的透明度(EIT)样曲线。然而,对于具有非零四倍数量的CMS,频谱具有相应AM和CM共振的累积签名。我们提供详细的近场和远场分析,表明不同订单的基本时刻之间的模态重叠和相位关系起到了至关重要的作用。最后,我们表明AM和CMS的谐振频带可以通过调整几何参数和负载的介电常数来调整。我们的结果可用于等离子体粘附,旋转偏振定向发光,超敏感光学感测和等离子体介导的光致发光。

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