English

Universal platform of point-gap topological phases from topological materials

Mesoscale and Nanoscale Physics 2024-08-22 v5 Materials Science Quantum Physics

Abstract

Whereas point-gap topological phases are responsible for exceptional phenomena intrinsic to non-Hermitian systems, their realization in quantum materials is still elusive. Here we propose a simple and universal platform of point-gap topological phases constructed from Hermitian topological insulators and superconductors. We show that (d-1)-dimensional point-gap topological phases are realized by making a boundary in d-dimensional topological insulators and superconductors dissipative. A crucial observation of the proposal is that adding a decay constant to boundary modes in d-dimensional topological insulators and superconductors is topologically equivalent to attaching a (d-1)-dimensional point-gap topological phase to the boundary. We furthermore establish the proposal from the extended version of the Nielsen-Ninomiya theorem, relating dissipative gapless modes to point-gap topological numbers. From the bulk-boundary correspondence of the point-gap topological phases, the resultant point-gap topological phases exhibit exceptional boundary states or in-gap higher-order non-Hermitian skin effects.

Keywords

Cite

@article{arxiv.2304.08110,
  title  = {Universal platform of point-gap topological phases from topological materials},
  author = {Daichi Nakamura and Kazuya Inaka and Nobuyuki Okuma and Masatoshi Sato},
  journal= {arXiv preprint arXiv:2304.08110},
  year   = {2024}
}

Comments

6+6 pages, 4+4 figures, 1+0 table