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Modal properties of a cylindrical graphene-coated nanowire deposited on a hexagonal boron nitride substrate

机译:在六边形氮化硼基材上沉积在六边形氮化硼基质上的圆柱形石墨烯涂覆纳米线的模态性能

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摘要

Due to complementary chemical and optical characteristics, structural integration of graphene and hexagonal boron nitride (hBN) can lead to a promising platform for development of novel plasmonic devices. In this paper, we numerically investigate the modal behavior of a cylindrical graphene-coated nanowire (GNW) deposited on a thin hBN (GNW-hBN) substrate in the mid-infrared range. Our studies revealed that GNW-hBN can support hybridized plasmon-phonon modes in the upper reststrahlen band of hBN, which mainly originates from the strong coupling between plasmon modes in GNW and phonon modes in hBN. The characteristics of these hybrid modes can be effectively tuned by changing the chemical potential of graphene, hBN thickness, and gap distance between GNW and hBN. According to the results, by choosing smaller gap distances and tuning the chemical potential of graphene, GNW-hBN can exhibit a fundamental mode (m = 0, where m is the azimuthal mode number) with higher effective index such that Real (n(eff)) varies from 131.2-62.3 when the hBN thickness changes from 2-20 nm. In addition, the presence of an hBN slab can break the azimuthal symmetry of the high-order graphene plasmon modes (m >= 1) in the GNW-hBN structure. (C) 2019 Optical Society of America
机译:由于化学和光学特性的互补和光学特性,石墨烯和六边形氮化硼(HBN)的结构整合可导致新型等离子体装置的开发有前途的平台。在本文中,我们在中红外范围内的圆柱形石墨烯 - 涂覆纳米线(GNW)的模态行为进行了数值上研究。我们的研究表明,GNW-HBN可以支持HBN的上衰退条带中的杂交的等离子体 - 声子模式,这主要来自HBN中的GNW和声子模式的等离子体模式之间的强耦合。通过改变石墨烯,HBN厚度和GNW和HBN之间的间隙距离的化学电位,可以有效地调整这些混合模式的特性。根据结果​​,通过选择较小的间隙距离并调节石墨烯的化学电位,GNW-HBN可以表现出基本模式(M = 0,其中M是方位角模式数),具有更高的有效索引,使得真实的索引(n(eff ))当HBN厚度从2-20nm变化时,从131.2-62.3变化。另外,HBN板坯的存在可以破坏GNW-HBN结构中的高阶石墨烯等离子体模式(M> = 1)的方位称对称。 (c)2019年光学学会

著录项

  • 来源
    《Applied optics》 |2019年第24期|共6页
  • 作者单位

    Dalhousie Univ Dept Elect &

    Comp Engn Halifax NS B3J 2X4 Canada;

    Dalhousie Univ Dept Phys &

    Atmospher Sci Halifax NS B3H 4J5 Canada;

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  • 正文语种 eng
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