Emerging research landscape of altermagnetism
arXiv:2204.10844
Abstract
Magnetism is one of the largest, most fundamental, and technologically most relevant fields of condensed-matter physics. Traditionally, two basic magnetic phases have been considered -- ferromagnetism and antiferromagnetism. The breaking of the time-reversal symmetry and spin splitting of the electronic states by the magnetization in ferromagnets underpins a range of macroscopic responses in this extensively explored and exploited type of magnets. By comparison, antiferromagnets have vanishing net magnetization. This Perspective reflects on recent observations of materials hosting an intriguing ferromagnetic-antiferromagnetic dichotomy, in which spin-split spectra and macroscopic observables, akin to ferromagnets, are accompanied by antiparallel magnetic order with vanishing magnetization, typical of antiferromagnets. An unconventional non-relativistic symmetry-group formalism offers a resolution of this apparent contradiction by delimiting a third basic magnetic phase, dubbed altermagnetism. Our Perspective starts with an overview of the still emerging unique phenomenology of the phase, and of the wide array of altermagnetic material candidates. In the main part of the article, we illustrate how altermagnetism can enrich our understanding of overarching condensed-matter physics concepts, and have impact on prominent condensed-matter research areas.
25 pages, 13 figures
Cited by in corpus (13)
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- Progress and Prospects in Two-Dimensional Magnetism of van der Waals Materials
- Orbital-selective altermagnetism and correlation-enhanced spin-splitting in transition metal oxides
- X-type stacking in cross-chain antiferromagnets
- Spin-orbit enabled unconventional Stoner magnetism
- Sum rules for x-ray circular and linear dichroism based on complete magnetic multipole basis
- Microscopic origin of the spin-splitting in altermagnets
- Magnetostatic bounds on stability of hopfions in bulk helimagnets
- Composite antiferromagnetic and orbital order with altermagnetic properties at a cuprate/manganite interface
- Ab-initio study of the beta Fe2O3 phase
- Time inversion symmetry in the Dirac and Schrödinger-Pauli theories
- KOMPASS: the new cold neutron triple-axis-spectrometer specialized for polarization analysis
- Intrinsic spin currents in bulk noncentrosymmetric ferromagnets