Orbital Frustration and Emergent Flat Bands
Abstract
We expand the concept of frustration in Mott insulators and quantum spin liquids to metals with flat bands. We show that when inter-orbital hopping dominates over intra-orbital hopping , in a multiband system with strong spin-orbit coupling , electronic states with a narrow bandwidth are formed compared to a bandwidth of order for intra-orbital hopping. We demonstrate the evolution of the electronic structure, Berry phase distributions for time-reversal and inversion breaking cases, and their imprint on the optical absorption, in a tight binding model of -orbital hopping on a honeycomb lattice. Going beyond quantum Hall effect and twisted bilayer graphene, we provide an alternative mechanism and a richer materials platform for achieving flat bands poised at the brink of instabilities toward novel correlated and fractionalized metallic phases.
Cite
@article{arxiv.2102.06302,
title = {Orbital Frustration and Emergent Flat Bands},
author = {Wenjuan Zhang and Zachariah Addison and Nandini Trivedi},
journal= {arXiv preprint arXiv:2102.06302},
year = {2021}
}