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Ultra-broadband and efficient surface plasmon polariton launching through metallic nanoslits of subwavelength period

机译:通过亚波长周期的金属纳米缝隙发射超宽带有效表面等离子体激元

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摘要

Ultra-broadband, efficient and unidirectional surface plasmon polariton (SPP) launching is of great concern in plasmonic devices and circuits. To address this challenge, a novel method adopting deep-subwavelength slits of subwavelength period (λSPP/4 ~ λSPP/3) in a thick metal film and under backside illumination is proposed. A new band pattern featuring broadband and wide angular characteristics, which is due to the coupling of the zeroth-order SPP resonance at the superstrate–metal interface and the first-order SPP resonance at the metal–substrate interface, is observed for the first time in the dispersion diagram. Unidirectional SPP launching efficiency of ~50%, ultra-broad bandwidth of up to 780 nm, covering the entire optical fiber communication bands, and relatively wide angular range of 7° are achieved. This remarkable efficient, ultra-broadband and wide angular performance is demonstrated by carefully designed experiments in the near infrared regime, showing good agreement with numerical results.
机译:超宽带,高效且单向的表面等离激元极化(SPP)发射是等离子体设备和电路中非常关注的问题。为了解决这个挑战,提出了一种在厚金属膜中并在背面照明下采用亚波长周期的深亚波长狭缝(λSPP/ 4〜λSPP/ 3)的新方法。首次观察到一种具有宽带和广角特性的新带状谱,这是由于上层-金属界面处的零阶SPP共振与金属-基底界面处的一阶SPP共振的耦合所致在色散图中。 SPP的单向发射效率约为50%,超宽带带宽高达780 nm,涵盖了整个光纤通信频段,并且具有7°的相对较宽的角度范围。通过在近红外条件下精心设计的实验证明了这种卓越的高效,超宽带和广角性能,与数值结果显示出很好的一致性。

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