Ubiquitous order-disorder transition in the Mn antisite sublattice of the (MnBiTe)(BiTe) magnetic topological insulators
arXiv:2402.06340 · doi:10.1002/advs.202402753
Abstract
Magnetic topological insulators (TIs) herald a wealth of applications in spin-based technologies, relying on the novel quantum phenomena provided by their topological properties. Particularly promising is the (MnBiTe)(BiTe) layered family of established intrinsic magnetic TIs that can flexibly realize various magnetic orders and topological states. High tunability of this material platform is enabled by manganese-pnictogen intermixing, whose amounts and distribution patterns are controlled by synthetic conditions. Positive implication of the strong intermixing in MnSbTe is the interlayer exchange coupling switching from antiferromagnetic to ferromagnetic, and the increasing magnetic critical temperature. On the other side, intermixing also implies atomic disorder which may be detrimental for applications. Here, we employ nuclear magnetic resonance and muon spin spectroscopy, sensitive local probe techniques, to scrutinize the impact of the intermixing on the magnetic properties of (MnBiTe)(BiTe) and MnSbTe. Our measurements not only confirm the opposite alignment between the Mn magnetic moments on native sites and antisites in the ground state of MnSbTe, but for the first time directly show the same alignment in (MnBiTe)(BiTe) with n = 0, 1 and 2. Moreover, for all compounds, we find the static magnetic moment of the Mn antisite sublattice to disappear well below the intrinsic magnetic transition temperature, leaving a homogeneous magnetic structure undisturbed by the intermixing. Our findings provide a microscopic understanding of the crucial role played by Mn-Bi intermixing in (MnBiTe)(BiTe) and offer pathways to optimizing the magnetic gap in its surface states.
13 pages, 4 figures (Main) and 8 pages, 10 figures (Supplemental)
References in corpus (29)
- Trajectory of Anomalous Hall Effect toward the Quantized State in a Ferromagnetic Topological Insulator
- Antiferromagnetic topological insulators
- Colloquium: Quantum anomalous Hall effect
- Progress and prospects in magnetic topological materials
- Crystal growth and magnetic structure of MnBi2Te4
- Layer Hall effect in a 2D topological Axion antiferromagnet
- Axion Electrodynamics in Topological Materials
- Möbius Insulator and Higher-Order Topology in MnBiTe
- Quantum Hall Effect on Top and Bottom Surface States of Topological Insulator (Bi1-xSbx)2Te3 Films
- Mn-rich MnSb2Te4: A topological insulator with magnetic gap closing at high Curie temperatures of 45-50 K
- Coexistence of Surface Ferromagnetism and Gapless Topological State in MnBiTe
- Magnetic and transport properties in magnetic topological insulators MnBi2Te4(Bi2Te3)n (n=1,2)
- Defect-driven ferrimagnetism and hidden magnetization in MnBiTe
- Magnetic imaging of antiferromagnetic domain walls
- Intrinsic magnetic topological insulators
- Sample-dependent Dirac point gap in MnBiTe and its response to the applied surface charge: a combined photoemission and ab initio study
- Meta-magnetism of weakly-coupled antiferromagnetic topological insulators
- Axion optical induction of antiferromagnetic order
- Evolution of Magnetic Interactions in Sb-substituted MnBi2Te4
- Magnetic Properties and Electronic Structure of Magnetic Topological Insulator MnBiSe
- Pressure-tuned intralayer exchange in superlattice-like MnBi2Te4/(Bi2Te3)n topological insulators
- Topological response of the anomalous Hall effect in MnBi2Te4 due to magnetic canting
- Distinct magnetic gaps between antiferromagnetic and ferromagnetic orders driven by surface defects in the topological magnet MnBi2Te4
- Visualizing the interplay of Dirac mass gap and magnetism at nanoscale in intrinsic magnetic topological insulators
- Delicate Ferromagnetism in MnBiTe
- Crystal structure and Raman active lattice vibrations of magnetic topological insulators MnBi2Te4 n(Bi2Te3) (n = 0, 1, . . . , 6)
- Ubiquitous order-disorder transition in the Mn antisite sublattice of the (MnBiTe)(BiTe) magnetic topological insulators
- Anti-site defect-induced disorder in compensated topological magnet MnBiSbTe
- Effective decoupling of ferromagnetic sublattices by frustration in Heusler alloys
Cited by in corpus (5)
- Intrinsic magnetic topological insulators of the MnBiTe family
- Ubiquitous order-disorder transition in the Mn antisite sublattice of the (MnBiTe)(BiTe) magnetic topological insulators
- Quantum Effects at a Spin-Flop Transition in the Antiferromagnetic Topological Insulator MnBiTe
- Automated computational workflows for muon spin spectroscopy
- Magnetic behavior of the Re-based double perovskite SrZnReO