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Manipulating surface-plasmon-polariton launching with quasi-cylindrical waves

机译:用准圆柱波操纵表面等离子体激元发射

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摘要

Launching the free-space light to the surface plasmon polaritons (SPPs) in a broad bandwidth is of importance for the future plasmonic circuits. Based on the interference of the pure SPP component, the bandwidths of the unidirectional SPP launching is difficult to be further broadened. By greatly manipulating the SPP intensities with the quasi-cylindrical waves (Quasi-CWs), an ultra-broadband unidirectional SPP launcher is experimentally realized in a submicron asymmetric slit. In the nano-groove of the asymmetric slit, the excited Quasi-CWs are not totally damped, and they can be scattered into the SPPs along the metal surface. This brings additional interference and thus greatly manipulates the SPP launching. Consequently, a broadband unidirectional SPP launcher is realized in the asymmetric slit. More importantly, it is found that this principle can be extended to the three-dimensional subwavelength plasmonic waveguide, in which the excited Quasi-CWs in the aperture could be effectively converted to the tightly guided SPP mode along the subwavelength plasmonic waveguide. In the large wavelength range from about 600 nm to 1300 nm, the SPP mode mainly propagates to one direction along the plasmonic waveguide, revealing an ultra-broad (about 700 nm) operation bandwidth of the unidirectional SPP launching.
机译:将自由空间光以较宽的带宽发射到表面等离子体激元(SPP),对于未来的等离子体电路至关重要。基于纯SPP组件的干扰,单向SPP发射的带宽难以进一步拓宽。通过用准圆柱波(Quasi-CWs)极大地控制SPP强度,在亚微米不对称狭缝中实验性地实现了超宽带单向SPP发射器。在不对称缝隙的纳米槽中,激发的准连续波并没有被完全衰减,它们可以沿着金属表面分散到SPP中。这带来了额外的干扰,从而极大地操纵了SPP的启动。因此,在不对称缝隙中实现了宽带单向SPP发射器。更重要的是,发现该原理可以扩展到三维亚波长等离激元波导,其中孔径中的激发准CW可以沿着亚波长等离激元波导有效地转换为紧密引导的SPP模式。在大约600 nm至1300 nm的大波长范围内,SPP模式主要沿着等离子波导管传播到一个方向,从而揭示了单向SPP发射的超宽(大约700 nm)操作带宽。

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