Kekulé superconductivity and antiferromagnetism on the graphene lattice
arXiv:1601.07076 · doi:10.1103/PhysRevB.93.155149
Abstract
We investigate superconducting order in the extended Hubbard model on the two-dimensional graphene lattice using the variational cluster approximation (VCA) with an exact diagonalization solver at zero temperature. Building on the results of Ref., which identified triplet - and -wave superconductivity as the most favored pairing symmetries in that model, we place uniform SC solutions in competition with the proposed nonuniform Kekulé (-K) superconducting pattern proposed in Ref.. We find that the -K solution is in fact the most favored pairing in most of the phase diagram. In addition, we show that antiferromagnetism can co-exist with the -K state and that both orders are enhanced by their coexistence.
6 pages, 7 figures
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- A Hybrid-Monte-Carlo study of monolayer graphene with partially screened Coulomb interactions at finite spin density
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- Spiral magnetism and chiral superconductivity in Kondo-Hubbard triangular lattice model