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Broadband and efficient plasmonic control in the near-infrared and visible via strong interference of surface plasmon polaritons

机译:通过表面等离激元极化子的强干扰,在近红外和可见光范围内实现宽带有效等离子体控制

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摘要

Broadband and tunable control of surface plasmon polaritons in the near-infrared and visible spectrum is demonstrated theoretically and numerically with a pair of phased nanoslits. We establish, with simulations supported by a coupled wave model, that by dividing the incident power equally between two input channels, the maximum plasmon intensity deliverable to either side of the nanoslit pair is twice that for an isolated slit. For a broadband source, a compact device with nanoslit separation of the order of a tenth of the wavelength is shown to steer nearly all the generated plasmons to one side for the same phase delay, thereby achieving a broadband unidirectional plasmon launcher. The reported effect can be applied to the design of ultra-broadband and efficient tunable plasmonic devices.
机译:利用一对相控纳米缝隙,从理论和数值上证明了近红外和可见光谱中表面等离激元极化子的宽带和可调谐控制。通过耦合波模型支持的仿真,我们建立了通过在两个输入通道之间平均分配入射功率,可传递至纳米狭缝对任一侧的最大等离激元强度,是孤立狭缝的两倍。对于宽带光源,具有纳米狭缝的十分之一波长间隔的紧凑型设备显示出,几乎可以将所有生成的等离激元引导到同一相位延迟的一侧,从而实现宽带单向等离激元发射器。所报道的效果可以应用于超宽带和高效可调谐等离子体设备的设计。

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