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Tuning SPP propagation length of hybrid plasmonic waveguide by manipulating evanescent field

机译:操纵渐逝场通过操纵杂交等离子体波导的SPP传播长度

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摘要

Exploring hybrid plasmonic waveguide is a major breakthrough for achieving low-loss lightwave propagation at subwavelength size. Various types of passive hybrid plasmonic waveguides have been reported, but research on active hybrid plasmonic waveguides is very limited. In this study, we propose a tunable hybrid plasmonic waveguide in which its modal characteristics could be dynamically tuned by manipulating the evanescent field of a dielectric waveguide using a closely suspended tuning waveguide. The device can obtain a long-distance lightwave propagation at centimeter scale while maintaining the propagation mode at deep-subwavelength size (2.44 lambda(2)/10(5)). Using the proposed tuning method, the propagation length can be tuned more than 100% at the same propagation mode area. The proposed device with a propagation length that can be tuned in a wide range is a promising candidate for building active photonic components.
机译:探索混合等离子体波导是在亚波长尺寸下实现低损耗光波传播的重大突破。 已经报道了各种类型的无源杂交等离子体波导,但是对活性混合等离子体波导的研究非常有限。 在本研究中,我们提出了一种可调谐的混合等离子体波导,其中通过使用紧密悬挂的调谐波导操纵介电波导的渐逝场可以动态地调谐其模态特性。 该装置可以在厘米刻度下获得长距离光波传播,同时保持在深度亚波长大小(2.44λ(2)/ 10(5))处的传播模式。 使用所提出的调谐方法,传播长度可以在相同的传播模式区域调谐超过100%。 具有可在宽范围内调谐的传播长度的所提出的装置是用于建立主动光子元件的有希望的候选者。

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