The fate of interaction-driven topological insulators under disorder.

ORAL

Abstract

We analyze the effect of disorder on the weak-coupling instabilities of quadratic band crossing point (QBCP) in two-dimensional Fermi systems, which, in the clean limit, display interaction-driven topological insulating phases. In the framework of a renormalization group procedure, which treats fermionic interactions and disorder on the same footing, we test all possible instabilities and identify the corresponding ordered phases in the presence of disorder for both single-valley and two-valley QBCP systems. We find that disorder generally \co{suppresses the critical temperature at which the interaction-driven topologically non-trivial order sets in. Strong disorder can also cause a topological phase transition into a topologically trivial insulating state.

*National Natural Science Foundation of China under Grant 11504360,
China Postdoctoral Science Foundation under Grants 2015T80655 and 2014M560510,
Future and Emerging Technologies Programme for Research of the European Commission under FET-Open grant number: 618083 (CNTQC)
Deutsche Forschungsg

Presenters

  • Dmitri Efremov

    • IFW

Authors

  • Dmitri Efremov

    • IFW
  • Jing Wang

    • University of Science and Technology of China
  • Carmine Ortix

    • Utrecht University
  • Jeroen Van den Brink

    • IFW Dresden
    • Leibniz Institute for Solid State and Materials Research Dresden
    • IFW