Valley Photonic Crystals in Silicon Platform (PRB-RP)

Xiao-Dong Chen, Fu-Li Zhao, Min Chen, and JWD, "Valley-contrasting physics in all-dielectric photonic crystals: Orbital angular momentum and topological propagation," Physical Review B 96, 020202(R) (2017).

The valley has been exploited as a binary degree of freedom to realize valley-selective Hall transport and circular dichroism in two-dimensional layered materials, in which valley-contrasting physics is indispensable in making the valley index an information carrier. In this Rapid Communication, we reveal valley-contrasting physics in all-dielectric valley photonic crystals. The link between the angular momentum of light and the valley state is discussed, and unidirectional excitation of the valley chiral bulk state is realized by sources carrying orbital angular momentum with proper chirality. Characterized by the nonzero valley Chern number, valley-dependent edge states and the resultant broadband robust transport is found in such an all-dielectric system. Our work has potential in the orbital angular momentum assisted light manipulation and the discovery of valley-protected topological states in nanophotonics and on-chip integration.