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Tunable broadband optical field enhancement in graphene-based slot waveguide at infrared frequencies

机译:基于石墨烯的缝隙波导中红外频率的可调宽带光场增强

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摘要

Tunable broadband optical field enhancements are demonstrated for graphene-based nanoscale slot waveguides, and the extremely strong field intensity inside the slot region is produced based on the ultrahigh effective mode index. Analytic formulas are obtained to reveal the dependence of enhanced optical fields and effective mode index on the gap distance, the Fermi energy, the width of nanoribbons, and the background medium. We show that most of the optical field is concentrated within the slot regions with the normalized power about up to 86%, and the averaged optical field intensity reaches 10(4) mu m(-2) for the slot waveguide with a 3 nm gap distance and 50 nm width. Meanwhile, the optical field enhancement effect is broadband at infrared frequencies and controlled by Fermi energy via bias electrical voltage for graphene. (C) 2016 Optical Society of America
机译:演示了可调谐宽带光场增强技术,用于基于石墨烯的纳米级缝隙波导,并且基于超高有效模式指数在缝隙区域内产生了非常强的场强。获得了解析公式,以揭示增强的光场和有效模式指数对间隙距离,费米能量,纳米带宽度和背景介质的依赖性。我们表明,大多数光场集中在缝隙区域内,归一化功率高达86%,对于具有3 nm缝隙的缝隙波导,平均光场强度达到10(4)μm(-2)距离和50 nm宽度。同时,光场增强效应在红外频率处是宽带的,并且由费米能量通过石墨烯的偏置电压来控制。 (C)2016美国眼镜学会

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  • 来源
    《Applied optics》 |2016年第19期|共7页
  • 作者

    Lu Wanli;

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