Fragility of surface states in non-Wigner Dyson topological insulators
arXiv:2308.12931 · doi:10.1103/PhysRevX.14.011057
Abstract
Topological insulators and superconductors support extended surface states protected against the otherwise localizing effects of static disorder. Specifically, in the Wigner-Dyson insulators belonging to the symmetry classes A, AI, and AII, a band of extended surface states is continuously connected to a likewise extended set of bulk states forming a ``bridge'' between different surfaces via the mechanism of spectral flow. In this work we show that this mechanism is absent in the majority of non-Wigner-Dyson topological superconductors and chiral topological insulators. In these systems, there is precisely one point with granted extended states, the center of the band, . Away from it, states are spatially localized, or can be made so by the addition of spatially local potentials. Considering the three-dimensional insulator in class AIII and winding number as a paradigmatic case study, we discuss the physical principles behind this phenomenon, and its methodological and applied consequences. In particular, we show that low-energy Dirac approximations in the description of surface states can be treacherous in that they tend to conceal the localizability phenomenon. We also identify markers defined in terms of Berry curvature as measures for the degree of state localization in lattice models, and back our analytical predictions by extensive numerical simulations. A main conclusion of this work is that the surface phenomenology of non-Wigner-Dyson topological insulators is a lot richer than that of their Wigner-Dyson siblings, extreme limits being spectrum-wide quantum critical delocalization of all states vs. full localization except at the critical point. As part of our study we identify possible experimental signatures distinguishing between these different alternatives in transport or tunnel spectroscopy.
published version, change of the title
References in corpus (20)
- Classification of topological insulators and superconductors in three spatial dimensions
- Topological Field Theory of Time-Reversal Invariant Insulators
- Anderson Transitions
- Wannier representation of Z_2 topological insulators
- The insulator/Chern-insulator transition in the Haldane model
- Quantum criticality and minimal conductivity in graphene with long-range disorder
- Compactly-supported Wannier functions and algebraic -theory
- Multifractality at the quantum Hall transition: Beyond the parabolic paradigm
- Topological protection, disorder, and interactions: Survival at the surface of 3D topological superconductors
- Topology vs. Anderson localization: non-perturbative solutions in one dimension
- Quantum Hall Effect of Massless Dirac Fermions in a Vanishing Magnetic Field
- Boundary multifractality at the integer quantum Hall plateau transition: implications for the critical theory
- Metal-insulator transition from combined disorder and interaction effects in Hubbard-like electronic lattice models with random hopping
- -band Hopf insulator
- Bulk-and-edge to corner correspondence
- Effect of Strong Disorder on 3-Dimensional Chiral Topological Insulators: Phase Diagrams, Maps of the Bulk Invariant and Existence of Topological Extended Bulk States
- Valley isospin of interface states in a graphene junction in the quantum Hall regime
- Tight frames of exponentially decaying Wannier functions
- Quartic multifractality and finite-size corrections at the spin quantum Hall transition
- Topological quantum criticality of the disordered Chern insulator
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- Topology of ultra-localized insulators and superconductors
- Critical Filaments and Superconductivity in Quasiperiodic Twisted Bilayer Graphene
- Non-Hermitian Hopf insulators
- Robust quantized thermal conductance of Majorana floating edge bands in d-wave superconductors
- Intrinsic non-Hermitian topological phases
- Frustration-free free fermions and beyond
- Exactly solvable spin liquids in Kitaev bilayers and moiré superlattices