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Optical Transmission Enhancement of Stacked Plasmonic Apertures

机译:堆叠等离子孔的光传输增强

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In this study, we demonstrate enhanced transmission for out-of-plane stacked plasmonic apertures through the interaction of localized surface plasmons of apertures using both numerical and theoretical approaches. A dispersive finite-difference time-domain (D-FDTD) model is used to investigate the systems through the numerical simulations. To explain the results of the FDTD numerical simulations and to bring further insight to this interaction, we use a magnetic coupled dipole approximation as the theoretical basis. Our results demonstrate that near-field in-phase and out-of-phase interactions of the stacked nanoholes increase or decrease the optical transmission. Plasmon hybridization is discussed for stacked nanohole dimers on out-of-plane metallic films.
机译:在这项研究中,我们证明了通过数值和理论方法,通过孔的局部表面等离激元的相互作用,增强了平面外堆叠等离激元孔径的透射。通过数值模拟,使用色散有限差分时域(D-FDTD)模型对系统进行了研究。为了解释FDTD数值模拟的结果并进一步了解这种相互作用,我们使用磁耦合偶极子近似作为理论基础。我们的结果表明,堆叠的纳米孔的近场同相和异相相互作用会增加或减少光传输。讨论了等离子杂交用于平面外金属膜上的堆叠纳米孔二聚体。

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