Universal Role of Combined Symmetry for the Protection of the Dirac Cone in Antiferromagnetic Topological Insulators
arXiv:2406.13639 · doi:10.1103/PhysRevB.110.115152
Abstract
Antiferromagnetic topological insulators (AF TIs) are predicted to exhibit exotic physical properties such as gigantic optical and topological magnetoelectric responses. While a key to achieving such phenomena relies on how to break the symmetry protecting the Dirac-cone surface state (SS) and acquire the mass of Dirac fermions, the mechanism has yet to be clarified. To address this issue, we carried out micro-focused angle-resolved photoemission spectroscopy for GdBi hosting the type-II AF order, and uncovered the stripe-type 21 reconstruction of the Fermi surface associated with the AF band folding. Intriguingly, in contrast to NdBi with the type-I AF order displaying the surface-selective Dirac-fermion mass, GdBi shows massless behavior irrespective of AF domains due to the robust topological protection. These results strongly suggest a crucial role of the ThetaTD (time-reversal and translational) symmetry to create the Dirac-fermion mass in AF TIs.
21 pages, 6 figures
References in corpus (16)
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Topological Field Theory of Time-Reversal Invariant Insulators
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- Topological Crystalline Insulators
- Trajectory of Anomalous Hall Effect toward the Quantized State in a Ferromagnetic Topological Insulator
- Antiferromagnetic topological insulators
- Electrical Manipulation of a Topological Antiferromagnetic State
- Axion Electrodynamics in Topological Materials
- Gate-controllable magneto-optic Kerr effect in layered collinear antiferromagnets
- Emergence of Fermi arcs and novel magnetic splitting in an antiferromagnet
- Unusual change in the Dirac-cone energy band upon two-step magnetic transition in CeBi
- Directional effects of antiferromagnetic ordering on the electronic structure in NdSb
- Antiferromagnetic topological insulator with selectively gapped Dirac cones
- Unusual surface states associated with the PT-symmetry breaking and antiferromagnetic band folding in NdSb
- Distinguishing Surface and Bulk Electromagnetism via Their Dynamics in an Intrinsic Magnetic Topological Insulator
- Long-range magnetic order induced surface state in GdBi and DyBi