Non-Hermitian second-order topological phases and bipolar skin effect in photonic kagome crystals
Abstract
Non-Hermitian photonics provides a fertile platform for exploring phenomena with no Hermitian counterparts, including the non-Hermitian skin effect and exceptional points, with direct relevance for integrated photonic technologies. In this work, we investigate the properties of non-Hermitian second-order topological phases by constructing a photonic kagome crystal with balanced gain and loss, and reveal the interplay between higher-order topology and the non-Hermitian skin effect. We demonstrate that non-Hermiticity not only lifts the degeneracy of the topological corner modes but also drives bulk states to accumulate at corners, giving rise to bipolar non-Hermitian skin effect. By defining the point-gap…
Citation impact
- FWCI
- 94.70
- Percentile
- 100%
- References
- 99
Authors
4- XYXiaosen YangCorresponding
Jiangsu University
- YFYaru Feng
Jiangsu University
- AWAbdul Wahab
Jiangsu University
- HGHao Geng
Jiangsu University
Topics & keywords
- Photonics
- Topology (electrical circuits)
- Photonic crystal
- Degeneracy (biology)
- Topological degeneracy
- Topological insulator
- Yablonovite