- By:
- Soni, Rahul ; Thamm, Matthias; Alvarez, Gonzalo ; Rosenow, Bernd; Del-Maestro, Adrian
- Journal Name:
- Physical Review Letters
- Page Number:
- 256504
- Volume:
- 136
- Issue Number:
- 25
- Publication Date:
- August 25, 2026
- View DOI Listing:
- https://doi.org/10.1103/98j3-424f
Abstract
We study interaction-driven edge reconstruction in a quantum spin Hall insulator described by the Bernevig-Hughes-Zhang model with Kanamori-Hubbard interactions using the real-space density matrix renormalization group method in both the grand-canonical and canonical ensembles. For a two-dimensional cylinder with a smooth edge, we identify discrete particle-number transitions that lead to a spin-polarized edge state stabilized by an emergent ferromagnetic exchange interaction. The reconstruction is orbital-selective, occurring predominantly in the 𝑠-orbital channel. Our results reveal a microscopic mechanism for emergent fluctuating moments at the edge that could compromise the topological protection of helical edge states by time-reversal symmetry.