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Novel tetradymite-based magnetic topological materials and interfaces
1University of Ottawa, University of Ottawa, Ottawa, K1N 6N5, Canada.
Novel magnetic topological materials offer exciting quantum phenomena. Interface engineering unlocks unique spin textures and dynamics in these materials, driving quantum science and technology forward.
Area of Science:
- Condensed Matter Physics
- Quantum Materials Science
- Surface Science
Background:
- Novel magnetic topological surfaces and interfaces are crucial for quantum science and technology.
- Advancements rely on atomic-level control of quantum behavior, integrating magnetic order, spin-orbit coupling, and topological states.
Purpose of the Study:
- This review focuses on interface-modulated magnetism in tetradymite-based magnetic topological insulators and semimetals.
- It highlights the interplay between interfacial effects and topological properties.
Main Methods:
- The review synthesizes current research on tetradymite-based systems.
- It emphasizes the role of crystalline phases, competing orders, defects, and symmetry breaking in modulating magnetic and topological properties.
Main Results:
- Interface engineering enables nontrivial spin textures and dynamics.
- Synergistic effects of material complexity and external factors lead to unique quantum phenomena.
Conclusions:
- Further understanding of interfacially coupled magnetism and topology is essential.
- This knowledge will accelerate fundamental discoveries and technological breakthroughs in quantum science.
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