SU(3) Fermions on the Honeycomb Lattice at 1/3-Filling
arXiv:1902.10478 · doi:10.1103/PhysRevB.100.035134
Abstract
SU(N) symmetric fermions on a lattice, which can be realized in ultracold-atom-based quantum simulators, have very promising prospects for realizing exotic states of matter. Here we present the ground state phase diagram of the repulsive SU(3) Hubbard model on a honeycomb lattice at 1/3 filling obtained from infinite projected entangled pair states tensor network calculations. In the strongly interacting limit the ground state has plaquette order. Upon decreasing the interaction strength we find a first order transition at into a dimerized, color-ordered state, which extends down to at which the Mott transition occurs and the ground state becomes uniform. Our results may serve as a prediction and benchmark for future quantum simulators of SU(3) fermions.
6 pages, 5 figures