arXiv · 0901.4867
Rigorous construction of ground state correlations in graphene: renormalization of the velocities and Ward Identities
Abstract
We consider the 2D Hubbard model on the honeycomb lattice, as a model for single layer graphene with screened Coulomb interactions; at half filling and weak coupling, we construct its ground state correlations by a convergent multiscale expansion, rigorously excluding the presence of magnetic or superconducting instabilities or the formation of a mass gap. The Fermi velocity, which can be written in terms of a convergent series expansion, remains close to its non-interacting value and turns out to be isotropic. On the contrary, the interaction produces an asymmetry between the two components of the charge velocity, in contrast with the predictions based on relativistic or continuum approximations.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Alessandro Giuliani, Vieri Mastropietro. 2010-10-21. Rigorous construction of ground state correlations in graphene: renormalization of the velocities and Ward Identities. https://doi.org/10.1103/physrevb.79.201403
Cite the original work for its findings. Save a collection to share your selection of sources.