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A submicron broadband surface-plasmon-polariton unidirectional coupler

机译:亚微米宽带表面等离子体激元单向耦合器

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The manipulation of light propagation is a basic subject in optics and has many important applications. With the development of nano-optics, this area has been downscaled to wavelength or even subwavelength scales. One of the most efficient ways to control light propagation is to exploit interference effects. Here, by manipulating the interference between two nanogrooves on a metal surface, we realize a submicron broadband surface-plasmon-polariton (SPP) unidirectional coupler. More importantly, we find an anomalous bandwidth shrinking behavior in the proposed SPP unidirectional coupler as the groove separation is down to a subwavelength scale of one-quarter of the SPP wavelength. This abnormal behavior is well explained by considering the contribution of the near-field quasi-cylindrical waves in addition to the interference of propagating SPPs and the dispersion effects of individual grooves. Such near-field effects provide new opportunities for the design of ultracompact optical devices.
机译:光传播的操纵是光学的基本主题,并具有许多重要的应用。随着纳米光学技术的发展,该区域已缩小至波长甚至亚波长范围。控制光传播的最有效方法之一是利用干涉效应。在这里,通过操纵金属表面上两个纳米沟槽之间的干扰,我们实现了亚微米宽带表面等离子体激元极化(SPP)单向耦合器。更重要的是,我们发现,在所提出的SPP单向耦合器中,由于凹槽间距降低到SPP波长的四分之一的亚波长范围,带宽出现了异常收缩。除了传播的SPP的干扰和各个凹槽的色散效应外,还应考虑近场准圆柱波的影响,很好地解释了这种异常行为。这种近场效应为超紧凑型光学器件的设计提供了新的机会。

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