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Nonlocal Scattering Tensor due to Electromagnetic Coupling of Surface Plasmons to Dirac Plasmons in Graphene

机译:由于表面等离子体的电磁耦合到石墨烯中的DIRAC等离子体导致的非局部散射张量

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The electromagnetic coupling of surface-plasmon-polariton (SPP) modes, which are localized around the surface of a conductive substrate, to quantum plasmons in a graphene sheet above the surface is investigated and their hybrid quantum-plasmon modes are analyzed. For a double-layer graphene structure, on the other hand, the interplay between the electromagnetic couplings of SPPs to each graphene sheet is explored. An effective-polarizability tensor for a combined system, including coupled double-layer graphene and conductive substrate, has been derived, which consists of the retarded nonlocal Coulomb interactions between electrons in different graphene sheets and the conductive substrate. Additionally, this calculated effective-scattering tensor can be used for constructing an effective-medium theory to study optical properties of inserted nanorods between the graphene sheets and metallic surface.
机译:研究了表面 - 等离子 - 极性恒(SPP)模式的电磁耦合,其围绕导电衬底的表面定位,在表面上方的石墨烯片中的量子等离子体上进行分析。分析它们的杂种量子 - 等离子体模式。另一方面,对于双层石墨烯结构,探讨了SPP的电磁联轴器与每个石墨烯片之间的相互作用。已经得出了一种用于组合系统的有效极化性张量,包括耦合的双层石墨烯和导电基板,其包括不同石墨烯片和导电基板中的电子之间的延迟的非局部库仑相互作用。另外,该计算的有效散射张量可用于构建有效介质理论,以研究石墨烯片和金属表面之间的插入纳米棒的光学性质。

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