Publication | Open Access
Topological Exciton Bands in Moiré Heterojunctions
354
Citations
42
References
2017
Year
Ii-vi SemiconductorQuantum ScienceTransition Metal ChalcogenidesEngineeringPhysicsLayered MaterialApplied PhysicsCondensed Matter PhysicsQuantum MaterialsTopological ExcitonTopological MaterialTopological Exciton BandsTopological Quantum StateMoiré PatternsTopological HeterostructuresLong Period Moiré
Moiré patterns are common in van der Waals heterostructures and can be used to apply periodic potentials to elementary excitations. We show that the optical absorption spectrum of transition metal dichalcogenide bilayers is profoundly altered by long period moiré patterns that introduce twist-angle dependent satellite excitonic peaks. Topological exciton bands with nonzero Chern numbers that support chiral excitonic edge states can be engineered by combining three ingredients: (i) the valley Berry phase induced by electron-hole exchange interactions, (ii) the moiré potential, and (iii) the valley Zeeman field.
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