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Topological States with Broken Translational and Time-Reversal Symmetries in a Honeycomb-Triangular Lattice

Published 23 Sep 2014 in cond-mat.quant-gas and cond-mat.supr-con | (1409.6563v2)

Abstract: We study fermions in a lattice, with on-site and nearest neighbor attractive interactions between two spin species. We consider two geometries: both spins in a triangular lattice, and a mixed geometry with up-spins in honeycomb and down-spins in triangular lattices. We focus on the interplay between spin-population imbalance, on-site and valence bond pairing, and order parameter symmetry. The mixed geometry leads to a rich phase diagram of topologically non-trivial phases. In both geometries, we predict order parameters with simultaneous time-reversal and translational symmetry breaking.

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