most citedAC conductivity of graphene: from tight-binding model to 2+1-dimensional quantum electrodynamics

420 citations · 584 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall200854 cited

Edge states, mass and spin gaps, and quantum Hall effect in graphene

V. P. Gusynin, V. A. Miransky, S. G. Sharapov +1

Motivated by recent experiments and a theoretical analysis of the gap equation for the propagator of Dirac quasiparticles, we assume that the physics underlying the recently observ…

cond-mat.mes-hall200859 cited

Dynamics in the quantum Hall effect and the phase diagram of graphene

E. V. Gorbar, V. P. Gusynin, V. A. Miransky +1

The dynamics responsible for lifting the degeneracy of the Landau levels in the quantum Hall (QH) effect in graphene is studied by utilizing a low-energy effective model with a con…

hep-ph200720 cited

Gap generation for Dirac fermions on Lobachevsky plane in a magnetic field

E. V. Gorbar, V. P. Gusynin

We study symmetry breaking and gap generation for fermions in the 2D space of constant negative curvature (the Lobachevsky plane) in an external covariantly constant magnetic field…

cond-mat.mes-hall200731 cited

Toward theory of quantum Hall effect in graphene

E. V. Gorbar, V. P. Gusynin, V. A. Miransky

We analyze a gap equation for the propagator of Dirac quasiparticles and conclude that in graphene in a magnetic field, the order parameters connected with the quantum Hall ferroma…

cond-mat.mes-hall2007420 cited

AC conductivity of graphene: from tight-binding model to 2+1-dimensional quantum electrodynamics

V. P. Gusynin, S. G. Sharapov, J. P. Carbotte

We consider the relationship between the tight-binding Hamiltonian of the two-dimensional honeycomb lattice of carbon atoms with nearest neighbor hopping only and the 2+1 dimension…