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Plasmons and Coulomb drag in Dirac-Schrödinger hybrid electron systems

Academic Article
Publication Date:
2012
abstract:
We show that the plasmon spectrum of an ordinary two-dimensional electron gas (2DEG) hosted in a GaAs heterostructure is significantly modified when a graphene sheet is placed on the surface of the semiconductor in close proximity to the 2DEG. Long-range Coulomb interactions between massive electrons and massless Dirac fermions lead to a set of optical and acoustic intrasubband plasmons. Here we compute the dispersion of these coupled modes within the random phase approximation, providing analytical expressions in the long-wavelength limit that shed light on their dependence on the Dirac velocity and Dirac-fermion density. We also evaluate the resistivity in a Coulomb-drag transport setup. These Dirac-Schrödinger hybrid electron systems are experimentally feasible and open research opportunities for fundamental studies of electron-electron interaction effects in two spatial dimensions.
Iris type:
01.01 Articolo in rivista
Keywords:
double layers; two-dimensional electron gas; graphene; collective excitations; transport
List of contributors:
Carrega, Matteo; Pellegrini, Vittorio; Polini, Marco
Authors of the University:
CARREGA MATTEO
Handle:
https://iris.cnr.it/handle/20.500.14243/232785
Published in:
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS
Journal
  • Overview

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URL

http://link.aps.org/doi/10.1103/PhysRevB.86.085421
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