Publication | Open Access
Magic-angle helical trilayer graphene
76
Citations
93
References
2023
Year
EngineeringTopological MaterialsExperimental RealizationTopological Quantum StateWeyl SemimetalsMaterials ScienceQuantum ScienceFlat Topological BandsPhysicsTopological MaterialTopological PhaseSpintronicsGraphene FiberApplied PhysicsCondensed Matter PhysicsTopological InsulatorGrapheneGraphene NanoribbonCorrelated Topological States
We propose magic-angle helical trilayer graphene (HTG), a helical structure featuring identical rotation angles between three consecutive layers of graphene, as a unique and experimentally accessible platform for realizing exotic correlated topological states of matter. While nominally forming a supermoiré (or moiré-of-moiré) structure, we show that HTG locally relaxes into large regions of a periodic single-moiré structure realizing flat topological bands carrying nontrivial valley Chern number. These bands feature near-ideal quantum geometry and are isolated from remote bands by a very large energy gap, making HTG a promising platform for experimental realization of correlated topological states such as integer and fractional quantum anomalous Hall states.
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