arXiv:1605.01550·v1·Mesoscale and Nanoscale Physics
Dynamical gap generation in graphene with frequency dependent renormalization effects
M.E. Carrington🇨🇦 · C.S. Fischer🇩🇪 · L. von Smekal🇩🇪 · M.H. Thoma🇩🇪
Abstract
We study the frequency dependencies in the renormalization of the fermion Greens function for the -band electrons in graphene and their influence on the dynamical gap generation at sufficiently strong interaction. Adopting the effective QED-like description for the low-energy excitations within the Dirac-cone region we self consistently solve the fermion Dyson-Schwinger equation in various approximations for the photon propagator and the vertex function with special emphasis on frequency dependent Lindhard screening and retardation effects.
Comments: 19 pages, 5 figures