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On transmittance and localization of the electromagnetic wave in two-dimensional graphene-based photonic crystals

机译:基于二维石墨烯的光子晶体中电磁波的透射率和定位

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Two-dimensional graphene-based photonic crystal (GPC) formed by a periodic array of the homogeneous dielectric cylinders etched in the alternating graphene and dielectric layers and its inverse counterpart are considered. The transmittance of the photonic crystal is obtained. The waveguide due to the localization of the electromagnetic wave on the lattice defect that breaks the translational symmetry of the GPC of two different topologies is studied. The different topologies of GPC are characterized by different photonic band structures with different widths of photonic band gaps (PBG) and provide different frequencies for the localized electromagnetic wave due to the defect. The frequencies of the localized mode for both type of the GPC, located inside the lowest PBG, are in the range of THz or tens of THz depending on the topology of the GPC. It is shown that the photonic band gap always can be tuned by changing the chemical potential of graphene to provide formation of the localized photonic mode due to the defect. The technological advantages of the GPC, as well as the opportunity to tune the PBG and the frequency of the localized electromagnetic wave in the terahertz region of spectrum for the GPC are discussed. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过均质介质柱的周期性阵列形成二维基于石墨烯的光子晶体(GPC)蚀刻交替石墨烯和介电层和它的逆对应被考虑。获得的光子晶体的透射率。由于在晶格缺陷,打破两个不同拓扑的GPC的平移对称性的电磁波的定位的波导进行了研究。 GPC的不同的拓扑与光子带隙(PBG)的不同宽度的特征在于不同的光子能带结构和提供用于局部电磁波由于缺陷不同的频率。两种类型的GPC的,位于最低PBG内的局部化模式的频率,在太赫兹或取决于GPC的拓扑几十赫兹的范围内。结果表明,光子带隙总是可以通过改变石墨烯的化学势,以提供形成局部光子模式的由于缺陷被调谐。该GPC的技术优势,以及机会调整PBG和在光谱的GPC的太赫兹区域局部电磁波的频率进行了讨论。 (c)2018年elestvier b.v.保留所有权利。

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