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Time-reversal-invariant hofstadter-hubbard model with ultracold fermions

  • Daniel Cocks
  • , Peter P. Orth
  • , Stephan Rachel
  • , Michael Buchhold
  • , Karyn Le Hur
  • , Walter Hofstetter
  • Goethe University Frankfurt am Main
  • Institute of Meteorology and Climate Research
  • Yale University
  • Technical University Dresden

Research output: Contribution to journalArticlepeer-review

Abstract

We consider the time-reversal-invariant Hofstadter-Hubbard model which can be realized in cold-atom experiments. In these experiments, an additional staggered potential and an artificial Rashba-type spin-orbit coupling are available. Without interactions, the system exhibits various phases such as topological and normal insulator, metal as well as semi-metal phases with two or even more Dirac cones. Using a combination of real-space dynamical mean-field theory and analytical techniques, we discuss the effect of on-site interactions and determine the corresponding phase diagram. In particular, we investigate the semi-metal to antiferromagnetic insulator transition and the stability of different topological insulator phases in the presence of strong interactions. We compute spectral functions which allow us to study the edge states of the strongly correlated topological phases.

Original languageEnglish
Article number205303
JournalPhysical Review Letters
Volume109
Issue number20
DOIs
Publication statusPublished - 13 Nov 2012

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