Chern Bands' Optimally Localized Wannier Functions and Fractional Chern Insulators

ORAL

Abstract

Recent development on fractional Chern insulators and proximate phases call for a real space representation of isolated Chern bands. Here [1] we propose a new method for a general construction of optimally localized Wannier functions from such Chern bands. We do so through an optimal gauge choice of the Bloch states of a Chern band with the singularity placed at any desired position in momentum space. We apply this method to construct the optimally localized Wannierfunctions for kagome lattice, and use it to identify channels of interactions that are favorable to the development of fractional Chern insulators. Implications of the approach for the interplay between correlations and topology in broader contexts are discussed.

[1] F. Xie et al., arXiv:2407.08920

**Supported by the DOE (BES Award # DE-SC0018197) and VBFF (N00014-23-1-2870).

Publication: arXiv:2407.08920

Presenters

  • Qimiao Si

    • Rice University

Authors

  • Fang Xie

    • Rice University
  • Qimiao Si

    • Rice University
  • Yuan Fang

    • Rice University
  • Lei Chen

    • Stony Brook University
    • Rice University
  • Jennifer Cano

    • Stony Brook University