arXiv:1204.0921·v2·Strongly Correlated Electrons
Numerical study of the conductivity of graphene monolayer within the effective field theory approach
P. V. Buividovich🇷🇺 · E. V. Luschevskaya🇷🇺 · O. V. Pavlovsky🇷🇺 · M. I. Polikarpov🇷🇺 · M. V. Ulybyshev🇷🇺
Abstract
We report on the direct numerical measurements of the conductivity of graphene monolayer. Our numerical simulations are performed in the effective lattice field theory with noncompact 3 + 1-dimensional Abelian lattice gauge fields and 2 + 1-dimensional staggered lattice fermions. The conductivity is obtained from the Green-Kubo relations using the Maximum Entropy Method. We find that in a phase with spontaneously broken sublattice symmetry the conductivity rapidly decreases. For the largest value of the coupling constant used in our simulations g = 4.5, the DC conductivity is less than the DC conductivity in the weak-coupling phase (at g < 3.5) by at least three orders of magnitude.
Comments: 9 pages, 6 figures, accepted for publication in Phys. Rev. B