English

Interaction-driven topological insulators on the kagome and the decorated honeycomb lattices

Strongly Correlated Electrons 2010-08-16 v1

Abstract

We study the spinless and spinful extended Hubbard models with repulsive interactions on the kagome and the decorated honeycomb ("star") lattice. Using Hartree-Fock mean-field theory, we show that interaction-driven insulating phases with non-trivial topological invariants (Chern number or Z2Z_2 invariant) exist for an experimentally reasonable range of parameters. These phases occur at filling fractions which involve either Dirac points or quadratic band crossing points in the non-interacting limit. We present comprehensive mean-field phase diagrams for these lattices and discuss the competition between topologically non-trivial phases and numerous other ordered states, including various charge, spin, and bond orderings. Our results suggest that Z2Z_2 topological insulators should be found in a number of systems with either little or no intrinsic spin-orbit coupling.

Keywords

Cite

@article{arxiv.1005.4061,
  title  = {Interaction-driven topological insulators on the kagome and the decorated honeycomb lattices},
  author = {Jun Wen and Andreas Rüegg and C. -C. Joseph Wang and Gregory A. Fiete},
  journal= {arXiv preprint arXiv:1005.4061},
  year   = {2010}
}

Comments

16 pages, 12 figures