English

Experimental realization of a Weyl exceptional ring

Optics 2019-06-24 v2 Materials Science Other Condensed Matter

Abstract

Weyl points are isolated degeneracies in reciprocal space that are monopoles of the Berry curvature. This topological charge makes them inherently robust to Hermitian perturbations of the system. However, non-Hermitian effects, usually inaccessible in condensed matter systems, are an important feature of photonics systems, and when added to an otherwise Hermitian Weyl material have been predicted to spread the Berry charge of the Weyl point out onto a ring of exceptional points, creating a Weyl exceptional ring and fundamentally altering its properties. Here, we observe the implications of the Weyl exceptional ring using real-space measurements of an evanescently-coupled bipartite optical waveguide array by probing its effects on the Fermi arc surface states, the bulk diffraction properties, and the output power ratio of the two constituent sublattices. This is the first realization of an object with topological Berry charge in a non-Hermitian system.

Keywords

Cite

@article{arxiv.1808.09541,
  title  = {Experimental realization of a Weyl exceptional ring},
  author = {Alexander Cerjan and Sheng Huang and Kevin P. Chen and Yidong Chong and Mikael C. Rechtsman},
  journal= {arXiv preprint arXiv:1808.09541},
  year   = {2019}
}

Comments

Manuscript is 8 pages, 4 figures. Supplementary is 5 pages, 3 figures

R2 v1 2026-06-23T03:47:08.195Z