Disorder-Induced Topological Transitions in a Multilayer Topological Insulator
arXiv:2402.06280 · doi:10.1103/PhysRevB.109.165141
Abstract
We examine the impact of non-magnetic disorder on the electronic states of a multilayer structure comprising layers of both topological and conventional band insulators. Employing the Burkov-Balents model with renormalized tunneling parameters, we generate phase diagrams correlating with disorder, demonstrating that non-magnetic disorder can induce transitions between distinct topological phases. The subsequent section of our investigation focuses on the scenario where disorder is unevenly distributed across layers, resulting in fluctuations of the interlayer tunneling parameter - termed off-diagonal disorder. Furthermore, we determine the density of states employing the self-consistent single-site diagram technique, expanding the Green function in relation to the interlayer tunneling parameter (locator method). Our findings reveal that off-diagonal disorder engenders delocalized bulk states within the band gap. The emergence of these states may lead to the breakdown of the anomalous quantum Hall effect (AQHE) phase, a phenomenon that has garnered significant attention from researchers in the realm of topological heterostructures. Nonetheless, our results affirm the stability of the Weyl semimetal phase even under substantial off-diagonal disorder.
References in corpus (11)
- Topological Insulators with Inversion Symmetry
- Topological Field Theory of Time-Reversal Invariant Insulators
- Phase transition between the quantum spin Hall and insulator phases in 3D: emergence of a topological gapless phase
- Topological Anderson Insulator
- Finite size effects of helical edge states in HgTe/CdTe quantum wells
- Progress and prospects in magnetic topological materials
- Quantum metric nonlinear Hall effect in a topological antiferromagnetic heterostructure
- Topological Anderson Insulator in Three Dimensions
- Edge State, Band Topology, and Time Boundary Effect in the Fine-Grained Categorization of Chern Insulators
- Disorder Induced Phase Transitions of Type-II Weyl Semimetal
- Topological Anderson amorphous insulator