High spin axion insulator
arXiv:2404.12345 · doi:10.1038/s41467-024-48542-4
Abstract
Axion insulators possess a quantized axion field protected by combined lattice and time-reversal symmetry, holding great potential for device applications in layertronics and quantum computing. Here, we propose a high-spin axion insulator (HSAI) defined in large spin- representation, which maintains the same inherent symmetry but possesses a notable axion field . Such distinct axion field is confirmed independently by the direct calculation of the axion term using hybrid Wannier functions, layer-resolved Chern numbers, as well as the topological magneto-electric effect. We show that the guaranteed gapless quasi-particle excitation is absent at the boundary of the HSAI despite its integer surface Chern number, hinting an unusual quantum anomaly violating the conventional bulk-boundary correspondence. Furthermore, we ascertain that the axion field can be precisely tuned through an external magnetic field, enabling the manipulation of bonded transport properties. The HSAI proposed here can be experimentally verified in ultra-cold atoms by the quantized non-reciprocal conductance or topological magnetoelectric response. Our work enriches the understanding of axion insulators in condensed matter physics, paving the way for future device applications.
To appear in Nature Communications
References in corpus (40)
- Topological Insulators
- Topological insulators and superconductors
- Topological Field Theory of Time-Reversal Invariant Insulators
- Experimental realisation of the topological Haldane model
- Prediction and observation of the first antiferromagnetic topological insulator
- Intrinsic magnetic topological insulators in van der Waals layered MnBiTe-family materials
- Magnetoelectric polarizability and axion electrodynamics in crystalline insulators
- Topological axion states in magnetic insulator MnBiTe with the quantized magnetoelectric effect
- Robust axion insulator and Chern insulator phases in a two-dimensional antiferromagnetic topological insulator
- Orbital magnetization in periodic insulators
- Higher-order Topology of Axion Insulator EuInAs
- Realization of the Axion Insulator State in Quantum Anomalous Hall Sandwich Heterostructures
- Generalized Symmetries in Condensed Matter
- Higher-Order Topology, Monopole Nodal Lines, and the Origin of Large Fermi Arcs in Transition Metal Dichalcogenides XTe (X=Mo,W)
- Layer Hall effect in a 2D topological Axion antiferromagnet
- Orbital magnetization in crystalline solids: Multi-band insulators, Chern insulators, and metals
- Conduction of Ultracold Fermions Through a Mesoscopic Channel
- Axion Electrodynamics in Topological Materials
- Quantized topological magnetoelectric effect of the zero-plateau quantum anomalous Hall state
- Surfaces of Axion Insulators
- Topological magneto-electric effects in thin films of topological insulators
- Symmetry Enforced Chiral Hinge States and Surface Quantum Anomalous Hall Effect in Magnetic Axion Insulator
- Surface-edge state and half quantized Hall conductance in topological insulators
- Chern-Simons orbital magnetoelectric coupling in generic insulators
- Layer Hall effect induced by hidden Berry curvature in antiferromagnetic insulators
- Spectral signatures of the surface anomalous Hall effect in magnetic axion insulators
- On the matter of topological insulators as magnetoelectrics
- Spin-Resolved Topology and Partial Axion Angles in Three-Dimensional Insulators
- Half-Quantized Hall Effect and Power Law Decay of Edge Current Distribution
- Surface theorem for the Chern-Simons axion coupling
- Routes to realize the axion-insulator phase in MnBiTe(BiTe) family: a perspective
- Quantum Anomalous Layer Hall Effect in the Topological Magnet MnBi2Te4
- Topological Zero-Dimensional Defect and Flux States in Three-Dimensional Insulators
- Dissipationless Layertronics in Axion Insulator
- Axion coupling in the hybrid Wannier representation
- Quantization and Periodicity of the Axion Action in Topological Insulators
- Half-Quantized Helical Hinge Currents in Axion Insulators
- Identifying Axion Insulator by Quantized Magnetoelectric Effect in Antiferromagnetic Tunnel Junction
- Helical Symmetry Breaking and Quantum Anomaly in Massive Dirac Fermions
- Topological Magnetoelectric Response in Ferromagnetic Axion Insulators