Photonics Research, Volume. 10, Issue 4, 999(2022)
Coexisting valley and pseudo-spin topological edge states in photonic topological insulators made of distorted Kekulé lattices
Fig. 1. Tight-binding model band structures and Berry curvature. (a) Kekulé tight-binding model with intra-cell coupling
Fig. 2. Geometry, band dispersion, and mode patterns of the Kekulé photonic crystal. (a) Unit cell of the structure where
Fig. 3. Projected band structure and the valley edge state transportation. (a) Projected band structure of the supercell composed of two structures with different topological phases splice up (
Fig. 4. Projected band structure and pseudo-spin edge state transportation. (a) Projected band structure as a function of
Fig. 5. Field distributions, Fourier spectra, and
Fig. 6. Discretization of the BZ. Inset: zoom-in of the single plaquette.
Fig. 7. Berry curvature around
Fig. 8. Evolution of operator
Fig. 9. Topological edge states propagate in multi-channel structures. (a)–(c) Schematic of finite structures with different interface channel angles. The pink and green structures represent the distorted Kekulé lattice with
Fig. 10. Field distributions of valley and pseudo-spin edge states. (a), (b) Propagation of valley edge states when a circularly polarized source with the frequency of
Fig. 11. Field distributions and
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Guochao Wei, Zhenzhen Liu, Licheng Wang, Jianyuan Song, Jun-Jun Xiao, "Coexisting valley and pseudo-spin topological edge states in photonic topological insulators made of distorted Kekulé lattices," Photonics Res. 10, 999 (2022)
Category: Physical Optics
Received: Jan. 13, 2022
Accepted: Feb. 14, 2022
Published Online: Apr. 27, 2022
The Author Email: Jun-Jun Xiao (eiexiao@hit.edu.cn)