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Nonlocal Plasmonic Modes and Plasmonic Band Structures in Cylindrically Curved Graphene

机译:圆柱形弯曲石墨烯的非局部等离子体模式和等离子体带结构

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In this paper, hydrodynamic model has been analytically solved to investigate the nonlocal plasmons in cylindrically curved graphene layers. Within the quasi-static approximation, the dispersion relations for both local and nonlocal cases have been derived; the nonlocal effect is found to shift the dispersion relations upwards. High-order azimuthal modes possess different cutoff frequencies due to such nonlocality, which may occur even in large-scale highly doped structures. In periodically doped cases, the nonlocal effect can modify the corresponding plasmonic band structures, i.e., moving the locations of the bandgaps. The periodicity has made the material more sensitive to the plasmon nonlocality. Our investigations may lead to more attentions to the nonlocal plasmonic responses in graphene which are important for graphene-plasmon-based photonic devices.
机译:本文已经进行了分析解决了流体动力学模型,以研究圆柱形弯曲石墨烯层中的非局部等离子体。 在准静态近似值中,已经推导出局部和非局部病例的分散关系; 发现非识别效应向上移动分散关系。 由于这种非偏移,高阶方位角模式具有不同的截止频率,这也可能发生在大规模高度掺杂的结构中。 在定期掺杂的情况下,非识别效应可以修改相应的等离子体频带结构,即移动带隙的位置。 周期性使材料对等离子体非界更敏感。 我们的调查可能导致石墨烯中的非局部等离子体反应更加关注,这对于基于石墨烯 - 等离子体的光子器件很重要。

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