Effect of nonhomogenous dielectric background on the plasmon modes in graphene double-layer structures at finite temperatures
arXiv:1112.5886 · doi:10.1103/PhysRevB.85.195444
Abstract
We have calculated the plasmon modes in graphene double layer structures at finite temperatures, taking into account the inhomogeneity of the dielectric background of the system. The effective dielectric function is obtained from the solution of the Poisson equation of three-layer dielectric medium with the graphene sheets located at the interfaces, separating the different materials. Due to the momentum dispersion of the effective dielectric function, the intra- and inter-layer bare Coulomb interactions in the graphene double layer system acquires an additional momentum dependence--an effect that is of the order of the inter-layer interaction itself. We show that the energies of the in-phase and out-of-phase plasmon modes are determined largely by different values of the spatially dependent effective dielectric function. The effect of the dielectric inhomogeneity increases with temperature and even at high temperatures the energy shift induced by the dielectric inhomogeneity and temperature itself remains larger than the broadening of the plasmon energy dispersions due to the Landau damping. The obtained new features of the plasmon dispersions can be observed in frictional drag measurements and in inelastic light scattering and electron energy-loss spectroscopies.
5 pages, 3 figures
References in corpus (18)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- Dielectric function, screening, and plasmons in 2D graphene
- Tuning the effective fine structure constant in graphene: opposing effects of dielectric screening on short- and long-range potential scattering
- Friedel oscillations, impurity scattering and temperature dependence of resistivity in graphene
- Collective modes of the massless Dirac plasma
- Chirality and Correlations in Graphene
- Drude weight, plasmon dispersion, and a.c. conductivity in doped graphene sheets
- Plasmons and near-field amplification in double-layer graphene
- Excitation spectrum and high energy plasmons in single- and multi-layer graphene
- Double-layer graphene and topological insulator thin-film plasmons
- Tunable Graphene System with Two Decoupled Monolayers
- Coulomb Drag in Graphene
- Coulomb drag in graphene single layers separated by a thin spacer
- Coulomb Drag and High Resistivity Behavior in Double Layer Graphene
- Electron-electron interactions in decoupled graphene layers
- Graphene Bilayer Structures with Superfluid Magnetoexcitons
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