Abstract
Weyl points are point degeneracies that occur in momentum space of 3D periodic materials and are associated with a quantized topological charge. Here, the splitting of a quadratic (charge-2) Weyl point into two linear (charge-1) Weyl points in a 3D micro-printed photonic crystal is observed experimentally via Fourier-transform infrared spectroscopy. Using a theoretical analysis rooted in symmetry arguments, it is shown that this splitting occurs along high-symmetry directions in the Brillouin zone. This micro-scale observation and control of Weyl points is important for realizing robust topological devices in the near-infrared.
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CITATION STYLE
Jörg, C., Vaidya, S., Noh, J., Cerjan, A., Augustine, S., von Freymann, G., & Rechtsman, M. C. (2022). Observation of Quadratic (Charge-2) Weyl Point Splitting in Near-Infrared Photonic Crystals. Laser and Photonics Reviews, 16(1). https://doi.org/10.1002/lpor.202100452
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