Publication | Open Access
Giant Quantum Hall Plateau in Graphene Coupled to an InSe van der Waals Crystal
48
Citations
17
References
2017
Year
Materials ScienceQuantum ScienceElectrical EngineeringGraphene NanomeshesEngineeringPhysicsAdjacent Graphene LayerNanoelectronicsGraphene-based Field-effect TransistorCondensed Matter PhysicsQuantum MaterialsApplied PhysicsGrapheneCharge CarriersGraphene FiberGraphene NanoribbonTopological HeterostructuresGraphene Coupled
We report on a "giant" quantum Hall effect plateau in a graphene-based field-effect transistor where graphene is capped by a layer of the van der Waals crystal InSe. The giant quantum Hall effect plateau arises from the close alignment of the conduction band edge of InSe with the Dirac point of graphene. This feature enables the magnetic-field- and electric-field-effect-induced transfer of charge carriers between InSe and the degenerate Landau level states of the adjacent graphene layer, which is coupled by a van der Waals heterointerface to the InSe.
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