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

机译:超宽带和高效的表面等离子体Polariton通过亚波长时段的金属纳米填充发射

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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,高效和单向表面等离子体Polariton(SPP)发射在等离子体器件和电路方面都非常关注。为了解决这一挑战,一种采用厚金属膜和背面照明的亚波长周期(λ SPP / 4〜λ<亚λ spp spp spp spp spp spp spp spp spp spp spp spp / spp)的新方法提出。一种具有宽带和宽角度特性的新频带图案,这是由于在金属 - 金属界面处的Zeroth阶SPP谐振和金属基板接口处的一阶SPP谐振的耦合,因此是由于金属基板接口的耦合而被观察到在分散图中。单向SPP发射效率〜50%,超宽带宽高达780?nm,覆盖整个光纤通信带,达到相对较宽的角度范围为7°。这种显着的高效,超宽带和广泛的角度性能是通过近红外制度的实验来证明的,表现出与数值效果的良好一致性。

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