arXiv:1607.03137·v3·High Energy Physics — Lattice
Magnetic Catalysis in Graphene Effective Field Theory
Carleton DeTar🇺🇸 · Christopher Winterowd🇺🇸 · Savvas Zafeiropoulos🇩🇪
Abstract
We report on the first observation of magnetic catalysis at zero temperature in a fully nonperturbative simulation of the graphene effective field theory. Using lattice gauge theory, a nonperturbative analysis of the theory of strongly-interacting, massless, (2+1)-dimensional Dirac fermions in the presence of an external magnetic field is performed. We show that in the zero-temperature limit, a nonzero value for the chiral condensate is obtained which signals the spontaneous breaking of chiral symmetry. This result implies a nonzero value for the dynamical mass of the Dirac quasiparticle. This in turn has been posited to account for the quantum-Hall plateaus that are observed at large magnetic fields.
Comments: 5 pages, 6 figures