4.6 Article

Accidental degeneracy in photonic bands and topological phase transitions in two-dimensional core-shell dielectric photonic crystals

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OPTICS EXPRESS
卷 24, 期 16, 页码 18059-18071

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OPTICAL SOC AMER
DOI: 10.1364/OE.24.018059

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  1. Soochow University
  2. National Natural Science Foundation of China (NSFC) for Excellent Young Scientists [61322504]

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A simple core-shell two-dimensional photonic crystal is studied where the triangular lattice symmetry and the C-6 point group symmetry give rich physics in accidental touching points of photonic bands. We systematically evaluate different types of accidental nodal points at the Brillouin zone center for transverse-magnetic harmonic modes when the geometry and permittivity of the core-shell material are continuously tuned. The accidental nodal points can have different dispersions and topological properties (i.e., Berry phases). These accidental nodal points can be the critical states lying between a topological phase and a normal phase of the photonic crystal. They are thus very important for the study of topological photonic states. We show that, without breaking time-reversal symmetry, by tuning the geometry of the core-shell material, a phase transition into the photonic quantum spin Hall insulator can be achieved. Here the spin is defined as the orbital angular momentum of a photon. We study the topological phase transition as well as the properties of the edge and bulk states and their application potentials in optics. (C) 2016 Optical Society of America

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