Dissipative Edge Transport in Disordered Axion Insulator Films
arXiv:2109.06178 · doi:10.1103/PhysRevB.108.245116
Abstract
We investigate the role of disorder in the edge transport of axion insulator films. We predict by first-principles calculations that even-number-layer MnBiTe have gapped helical edge states. The random potential will dramatically modify the edge spectral function to become gapless. However, such gapless helical state here is fundamentally different from that in quantum spin Hall insulator or topological Anderson insulator. We further study the edge transport in this system by Landauer-Büttiker formalism, and find such gapless edge state is dissipative and not immune to backscattering, which would explain the dissipative nonlocal transport in the axion insulator state observed in six septuple layer MnBiTe experimentally. Several transport experiments are proposed to verify our theory on the dissipative helical edge channels. In particular, the longitudinal resistance can be greatly reduced by adding an extra floating probe even if it is not used. These results will facilitate the observsation of long-sought topological magnetoelectric effect in axion insulators.
7pages,4 figures
References in corpus (18)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Topological Field Theory of Time-Reversal Invariant Insulators
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- The Kernel Polynomial Method
- High-precision realization of robust quantum anomalous Hall state in a hard ferromagnetic topological insulator
- Nonlocal edge state transport in the quantum spin Hall state
- Quantum Anomalous Hall Effect in HgMnTe Quantum Wells
- Trajectory of Anomalous Hall Effect toward the Quantized State in a Ferromagnetic Topological Insulator
- Antiferromagnetic topological insulators
- Scale-Invariant Dissipationless Chiral Transport in Magnetic Topological Insulators beyond the Two-Dimensional Limit
- Topological Anderson Insulator
- Surface quantized anomalous Hall current and magneto-electric effect in magnetically disordered topological insulators
- Precise quantization of anomalous Hall effect near zero magnetic field
- Layer Hall effect in a 2D topological Axion antiferromagnet
- Axion Electrodynamics in Topological Materials
- Tailoring tricolor structure of magnetic topological insulator for robust axion insulator
- Scaling of the Quantum Anomalous Hall Effect as an Indicator of Axion Electrodynamics
- Critical Behavior and Universal Signature of an Axion Insulator State