Kitaev spin-orbital bilayers and their moire superlattices

ORAL

Abstract

We determine the phase diagram of a bilayer, Yao-Lee spin-orbital model with inter-layer interactions (J), for several stackings and moire superlattices. For AA stacking, a gapped Z2 quantum spin liquid phase emerges at a finite Jc. We show that this phase survives in the well-controlled large-J limit, where an isotropic honeycomb toric code emerges. For moire superlattices, a finite-q inter-layer hybridization is stabilized. This connects inequivalent Dirac points, effectively `untwisting' the system. Our study thus provides insight into the spin-liquid phases of bilayer spin-orbital Kitaev materials.

Publication: arXiv:2203.03650

Presenters

  • Emilian M Nica

    • Arizona State University
    • Rice University

Authors

  • Emilian M Nica

    • Arizona State University
    • Rice University
  • Muhammad Akram

    • Arizona State University
  • Aayush Vijayvargia

    • Arizona State University
  • Roderich Moessner

    • Max Planck Institute for the Physics of Complex Systems
    • Max Planck Institute for the Physics of
    • Max Planck Institute for Physics of Complex Systems
  • Onur Erten

    • Arizona State University