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Drude weight, plasmon dispersion, and a.c. conductivity in doped graphene sheets

Academic Article
Publication Date:
2011
abstract:
We demonstrate that the plasmon frequency and Drude weight of the electron liquid in a doped graphene sheet are strongly renormalized by electron-electron interactions even in the long-wavelength limit. This effect is not captured by the random-phase approximation (RPA), commonly used to describe electron fluids, and is due to coupling between the center-of-mass motion and the pseudospin degree of freedom of the graphene's massless Dirac fermions. By making use of diagrammatic perturbation theory to first order in the electron-electron interaction, we show that this coupling enhances both the plasmon frequency and the Drude weight relative to the RPA value. We also show that interactions are responsible for a significant enhancement of the optical conductivity at frequencies just above the absorption threshold. Our predictions can be checked by far-infrared spectroscopy or inelastic light scattering.
Iris type:
01.01 Articolo in rivista
Keywords:
graphene; Drude weight; ac conductivity; many-body effects
List of contributors:
Polini, Marco
Handle:
https://iris.cnr.it/handle/20.500.14243/232791
Published in:
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS
Journal
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URL

http://link.aps.org/doi/10.1103/PhysRevB.84.045429
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