Publication | Open Access
Valley surface-wave photonic crystal and its bulk/edge transport
174
Citations
24
References
2017
Year
Quantum PhotonicsOptical MaterialsTopological MaterialsEngineeringBulk/edge TransportTopological Quantum StateBilayer GraphenePhotonic CrystalsSemiconductorsTopological PhysicsOptical PropertiesQuantum MaterialsValley Hall EffectSingle Metal SurfaceNanophotonicsMaterials SciencePhotonicsPhysicsPhotonic MaterialsTopological MaterialPhotonic DeviceTopological InsulatorApplied PhysicsCondensed Matter PhysicsPhotonic StructuresCrystalsTopological Heterostructures
The valley Hall effect and topological valley edge states are two fundamental properties in gapped valleytronic materials, such as MoS${}_{2}$ and biased bilayer graphene. Such properties have paved the way for applications in valleytronics. Here, the authors experimentally demonstrate a valley surface-wave photonic crystal on a single metal surface, as the photonic analog of the valley-Hall topological insulator phase. The photonic valley-Hall effect with valley-chirality locked beam splitting, and topological valley-polarized edge states, are demonstrated for the first time on a photonic platform.
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