Bulletin of the American Physical Society
2024 APS March Meeting
Monday–Friday, March 4–8, 2024; Minneapolis & Virtual
Session K41: Geometry of Moire' Chern Bands and Fractional Hall States at Zero Magnetic Field
3:00 PM–6:00 PM,
Tuesday, March 5, 2024
Room: Ballroom A
Sponsoring
Unit:
DCMP
Chair: Xiaodong Xu, University of Washington
Abstract: K41.00004 : Recent Developments in Fractional Chern Insulators.
4:48 PM–5:24 PM
Presenter:
Emil J Bergholtz
(Stockholm University)
Author:
Emil J Bergholtz
(Stockholm University)
After over a decade of theoretical exploration, engineered moiré superlattice materials have recently emerged as an experimental platform for FCI physics. Milestone experimental results include weak-field FQH states in magic angle twisted bilayer graphene on boron nitride, originating from lattice FCIs rather than continuum Landau level states. Even more spectacular recent observations have identified authentic FCIs exhibiting a (zero-field) fractional quantum anomalous Hall effect in both twisted transition metal dichalcogenides and multilayer graphene.
The primary focus of this presentation is to elucidate the distinctions between moiré Chern bands and Landau levels, arising due to symmetry-breaking competing states as a consequence of the underlying quantum geometry in the moiré lattice setting. This platform also opens intriguing avenues for numerous new phenomena beyond Landau level physics, including FCIs in bands with higher Chern numbers, high-temperature FCIs, fractional anomalous Hall crystals combining charge density wave (CDW) order with anyon excitations, non-Abelian genons accompanying topological lattice defects, spin singlet and multicomponent FCIs, as well as a plethora of competing ordered single and multi-band states. This offers an exciting prospect where fundamental theory evolves through direct interaction with experiments, with first principles calculations serving as a bridge linking these two realms.
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