Publication | Open Access
Spin-orbit coupling in transition metal dichalcogenide heterobilayer flat bands
64
Citations
37
References
2022
Year
Transition Metal ChalcogenidesSpintronicsSpin-orbit EffectsEngineeringTopological MaterialsPhysicsNatural SciencesTopological InsulatorCondensed Matter PhysicsQuantum MaterialsApplied PhysicsTopological MaterialTransition Metal DichalcogenideSpin-orbit CouplingValence Flat BandsLayered MaterialTopological HeterostructuresInterlayer Hybridization
The valence flat bands in transition metal dichalcogenide (TMD) heterobilayers are shown to exhibit strong intralayer spin-orbit coupling. I show that symmetry constrains the spin-dependent complex phase of hopping terms in an effective tight-binding model of the valence flat bands. A perpendicular electric field causes interlayer hybridization, such that the effective model becomes equivalent to the Kane-Mele model of topological insulators. The proposed model can be used as a starting point to understand interactions and the experimentally observed topological transitions.
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