English

Universal Multifractality at the Topological Anderson Insulator Transition

Materials Science 2026-01-30 v1

Abstract

Disorder is ubiquitous in quantum materials, and its interplay with topology can generate phases absent in the clean limit. Using the Haldane model as a minimal setting, we show that disorder not only shifts topological boundaries but also stabilizes a topological Anderson insulator (TAI) between trivial and Chern insulating regimes. Employing the local Chern marker as a real-space topological probe, we map the full phase diagram and demonstrate that the TAI forms a finite domain bounded by trivial and Anderson insulators. Multifractal analysis of low-energy eigenstates at the boundary reveals universal critical spectra, independent of whether disorder generates or destroys topology. These results place topology, localization, and criticality within a unified framework and provide clear benchmarks for real-space diagnostics of disordered topological phases.

Keywords

Cite

@article{arxiv.2601.22065,
  title  = {Universal Multifractality at the Topological Anderson Insulator Transition},
  author = {Ksenija Kovalenka and Ahmad Ranjbar and Sam Azadi and Rodion Vladimirovich Belosludov and Thomas D. Kühne and Mohammad Saeed Bahramy},
  journal= {arXiv preprint arXiv:2601.22065},
  year   = {2026}
}

Comments

6 pages, 4 figures and 1 Table

R2 v1 2026-07-01T09:26:17.342Z