The fate of topological-insulator surface states under strong disorder
arXiv:1203.2628 · doi:10.1103/PhysRevB.85.201105
Abstract
Three-dimensional topological insulators feature Dirac-like surface states which are topologically protected against the influence of weak quenched disorder. Here we investigate the effect of surface disorder beyond the weak-disorder limit using large-scale numerical simulations. We find two qualitatively distinct regimes: Moderate disorder destroys the Dirac cone and induces diffusive metallic behavior at the surface. Even more remarkably, for strong surface disorder a Dirac cone reappears, as new weakly disordered "surface" states emerge in the sample beneath the disordered surface layer, which can be understood in terms of an interface between a topological and an Anderson insulator. Together, this demonstrates the drastic effect of disorder on topological surface states, which cannot be captured within effective two-dimensional models for the surface states alone.
4.3 pages, 4 figs
References in corpus (6)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Three dimensional topological invariants for time reversal invariant Hamiltonians and the three dimensional quantum spin Hall effect
- Topological delocalization of two-dimensional massless Dirac fermions
- Topological Anderson Insulator in Three Dimensions
- Helical edge and surface states in HgTe quantum wells and bulk insulators
Cited by in corpus (20)
- Topological surface states in nodal superconductors
- Topological protection, disorder, and interactions: Survival at the surface of 3D topological superconductors
- Modification and Control of Topological Insulator Surface States Using Surface Disorder
- Response of the topological surface state to surface disorder in TlBiSe
- Emergent vortex Majorana zero mode in iron-based superconductors
- Quantum Valley Hall effect without Berry curvature
- Kondo holes in topological Kondo insulators: Spectral properties and surface quasiparticle interference
- Non-Hermiticity induced Exceptional Points and Skin Effect in the Dice-Haldane Model
- Helical Majorana surface states of strongly disordered topological superconductors with time-reversal symmetry
- Topological phase transition in disordered elastic quantum spin Hall system
- Magnetization-Induced Phase Transitions on the surface of 3D Topological Insulators
- Strong correlations at topological insulator surfaces and the breakdown of the bulk-boundary correspondence
- Comparative Scanning Tunneling Microscopy Study on Hexaborides
- An STM perspective on hexaborides: Surface states of the Kondo insulator SmB
- Competing topological superconducting phases in FeSeTe
- Geometry-independent tight-binding method for massless Dirac fermions in two dimensions
- Disorder-induced delocalization and reentrance in a Chern-Hopf insulator
- Interplay of Disorder and Point-Gap Topology: Chiral Modes, Localization and Non-Hermitian Anderson Skin Effect in One Dimension
- Effect of surface disorder on the chiral surface states of a three-dimensional quantum Hall system
- Mesoscale variations of chemical and electronic landscape on the surface of Weyl semimetal CoSnS visualized by ARPES and XPS