Higher-order valley vortices enabled by synchronized rotation in a photonic crystal
arXiv:2112.14156 · doi:10.1364/PRJ.452598
Abstract
Synchronized rotation of unit cells in a periodic structure provides a novel design perspective for manipulation of band topology. We then design a two-dimensional version of higher-order topological insulators (HOTI), by such rotation in a triangular photonic lattice with symmetry. This HOTI supports the hallmark zero-dimensional corner states and simultaneously the one-dimensional edge states. We also find that our photonic corner states carry chiral orbital angular momenta locked by valleys, whose wavefunctions are featured by the phase vortex (singularity) positioned at the maximal Wyckoff points. Moreover, when excited by a fired source with various frequencies, the valley topological states of both one-dimensional edges and zero-dimensional corners emerge simultaneously. Extendable to higher or synthetic dimensions, our work provides access to a chiral vortex platform for HOTI realisations in the THz photonic system.
6 pages, 5 figures
References in corpus (15)
- The electronic properties of graphene
- Topological Photonics
- Photonic Analogue of Two-dimensional Topological Insulators and Helical One-Way Edge Transport in Bi-Anisotropic Metamaterials
- Scheme to Achieve Silicon Topological Photonics
- Reflection-Free One-Way Edge Modes in a Gyromagnetic Photonic Crystal
- Electric Multipole Moments, Topological Multipole Moment Pumping, and Chiral Hinge States in Crystalline Insulators
- -dimensional edge states of rotation symmetry protected topological states
- Observation of topological valley transport of sound in sonic crystals
- Novel Topological Phase with Zero Berry Curvature
- Valley Vortex States in Sonic Crystals
- Nonlinear second-order photonic topological insulators
- Higher-order topological phases in tunable -symmetric photonic crystals
- Topological edge states of Kekulé-type photonic crystals induced by a synchronized rotation of unit cells
- Dirac cones and higher-order topology in quasi-continuous media
- Angular momenta in fields from a rotational mechanical antenna