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导电基底上多层石墨烯的表面等离子体激元激发

Plasmon Excitations of Multi-layer Graphene on a Conducting Substrate.

作者信息

Gumbs Godfrey, Iurov Andrii, Wu Jhao-Ying, Lin M F, Fekete Paula

机构信息

Department of Physics and Astronomy Hunter College of the City University of New York, 695 Park Avenue, New York, NY 10065 USA.

Donostia International Physics Center, P. Manuel de Lardizabal 4, 20018, San Sebastian, Spain.

出版信息

Sci Rep. 2016 Feb 17;6:21063. doi: 10.1038/srep21063.

Abstract

We predict the existence of low-frequency nonlocal plasmons at the vacuum-surface interface of a superlattice of N graphene layers interacting with conducting substrate. We derive a dispersion function that incorporates the polarization function of both the graphene monolayers and the semi-infinite electron liquid at whose surface the electrons scatter specularly. We find a surface plasmon-polariton that is not damped by particle-hole excitations or the bulk modes and which separates below the continuum mini-band of bulk plasmon modes. The surface plasmon frequency of the hybrid structure always lies below ωs = ωp/√2, the surface plasmon frequency of the conducting substrate. The intensity of this mode depends on the distance of the graphene layers from the conductor's surface, the energy band gap between valence and conduction bands of graphene monolayer and, most importantly, on the number of two-dimensional layers. For a sufficiently large number of layers (N ≥ 7) the hybrid structure has no surface plasmon. The existence of plasmons with different dispersion relations indicates that quasiparticles with different group velocity may coexist for various ranges of wavelengths determined by the number of layers in the superlattice.

摘要

我们预测,在与导电衬底相互作用的N层石墨烯超晶格的真空-表面界面处存在低频非局域等离激元。我们推导了一个色散函数,该函数纳入了石墨烯单层和半无限电子液体的极化函数,电子在其表面发生镜面散射。我们发现了一种表面等离激元-极化激元,它不会因粒子-空穴激发或体模而衰减,并且在体等离激元模的连续微带之下分离。混合结构的表面等离激元频率总是低于导电衬底的表面等离激元频率ωs = ωp/√2。这种模式的强度取决于石墨烯层与导体表面的距离、石墨烯单层价带和导带之间的能带隙,最重要的是,取决于二维层的数量。对于足够多的层数(N≥7),混合结构没有表面等离激元。具有不同色散关系的等离激元的存在表明,对于由超晶格中层数决定的各种波长范围,具有不同群速度的准粒子可能共存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0a1/4756674/a403cba11c55/srep21063-f1.jpg

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