Circularly polarized topological edge states derived from optical Weyl points in semiconductor-based chiral woodpile photonic crystals
arXiv:1809.06531 · doi:10.7566/JPSJ.87.123401
Abstract
The polarizations of topological edge modes in the vicinity of optical Weyl points were numerically studied in chiral photonic crystals. We investigated two kinds of rotationally stacked woodpile structures in which planar rod arrays were vertically stacked one-by-one with an in-plane rotation angle of 60 or 45 degrees. Both structures showed pairs of optical Weyl points having topological numbers of opposite signs for photonic bands in low orders. Topological edge states derived from the Weyl points appeared below the light line, and were strongly confined at the air interfaces in a length shorter than the wavelength. Their polarizations in a direction perpendicular to the propagation direction were found to be one particular circular polarization that depended on the handedness of the structural chirality. Since these chiral photonic crystals can be fabricated using semiconductor materials such as GaAs or Si, the obtained robust planar waveguides for circularly polarized light at the interface between air and the semiconductor structure can be useful not only in photonics but also in spintronics or quantum information technology through spin-photon interfaces.
12 pages, 5 figures
References in corpus (8)
- Topological Photonics
- Chiral anomaly and transport in Weyl metals
- Experimental observation of optical Weyl points
- Hyperbolic Weyl point in reciprocal chiral metamaterial
- Multi Weyl Points and the Sign Change of Their Topological Charges in Woodpile Photonic Crystals
- Circular dichroism in a three-dimensional semiconductor chiral photonic crystal
- Circularly polarized vacuum field in three-dimensional chiral photonic crystals probed by quantum dot emission
- Section Chern number for a 3D photonic crystal and the bulk-edge correspondence
Cited by in corpus (11)
- A brief review of topological photonics in one, two, and three dimensions
- Observation of a charge-2 photonic Weyl point in the infrared
- Bulk-edge correspondence for nonlinear eigenvalue problems
- Weyl points and topological surface states in a three-dimensional elastic lattice
- Multimode Ultrastrong Coupling in Three-Dimensional Photonic-Crystal Cavities
- A symmetry-protected exceptional ring in a photonic crystal with negative index media
- Optical Properties of Chiral Three-Dimensional Photonic Crystals made from Semiconductors
- Transmission properties of microwaves at an optical Weyl point in a three-dimensional chiral photonic crystal
- Anomalous bulk-edge correspondence of nonlinear Rice-Mele model
- Fractional Thouless pumping of solitons: a unique manifestation of bulk-edge correspondence of nonlinear eigenvalue problems
- Observation of Quadratic (Charge-2) Weyl Point Splitting in Near-Infrared Photonic Crystals