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Optimization of transmission and focusing properties of plasmonic nanolenses

机译:等离子体纳米透镜的透射和聚焦特性的优化

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We consider two kinds of plasmonic nanolenses which focus radially polarized Laguerre-Gauss beam into subwavelength spot. The first one is free-standing opaque metal layer with concentric grooves on both sides [Phys. Rev. Lett. 102, 183902 (2009)]. The second has slits instead of grooves thus concentric rings have to be integrated with dielectric matrix. Constructive interference of far-field radiation of SPPs scattered on the back side of the lenses gives subwavelength size foci approaching the Rayleigh resolution limit. We investigate transmission and focusing properties of considered metal structures. Choice of appropriate metal such as silver, gold, copper or aluminum strongly affects transmission. Parameters of surface structure determine efficient photon-plasmon coupling and plasmon scattering phenomenon thus influence both transmission and focusing effect. Finally, the choice of dielectric function of surrounding medium gives another degree of freedom to fulfill momentum matching condition for resonant photonplasmon interaction. In this paper, taking into account the above parameters, we show an optimization procedure, which leads to high transmission, tight focal spot and large focal length of the considered plasmonic nanolenses
机译:我们考虑了两种等离子纳米透镜,它们将径向极化的Laguerre-Gauss光束聚焦到亚波长点上。第一个是独立的不透明金属层,其两侧都有同心凹槽[Phys。牧师102,183902(2009)]。第二个具有狭缝而不是凹槽,因此同心环必须与电介质基体集成在一起。散射在透镜背面的SPP的远场辐射的相长干涉使亚波长尺寸焦点接近瑞利分辨率极限。我们研究了考虑的金属结构的透射和聚焦特性。选择合适的金属,例如银,金,铜或铝会严重影响传输。表面结构的参数决定了有效的光子-等离子体耦合和等离子体散射现象,从而影响透射和聚焦效果。最后,周围介质介电函数的选择给出了另一个满足共振光子质子相互作用的动量匹配条件的自由度。在本文中,考虑到以上参数,我们展示了一种优化程序,该程序导致了所考虑的等离激元纳米透镜的高透射率,紧凑的焦点和较大的焦距

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