Dimensional crossover and cold-atom realization of gapless and semi-metallic Mott insulating phases

POSTER

Abstract

We propose a realistic cold-atom setup which allows for a dimensional crossover from a two-dimensional quantum spin Hall insulating phase to a three-dimensional strong topological insulator phase by simply tuning the hopping between the layers. We further employ cluster slave-rotor mean-field theory to study the effect of additional Hubbard onsite interactions that give rise to various spin liquid-like phases such as gapless and semi-metallic Mott insulating states.

Authors

  • Peter P. Orth

    • Karlsruhe Institute of Technology (KIT)
  • Mathias Scheurer

    • Karlsruhe Institute of Technology (KIT)
  • Stephan Rachel

    • TU Dresden, Institute of Theoretical Physics
    • Dresden University of Technology