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Minimal Models for Altermagnetism
- Source :
- Phys. Rev. B 110, 144412 (2024)
- Publication Year :
- 2024
-
Abstract
- Altermagnets feature vanishing net magnetization, like antiferromagnets, but exhibit time-reversal symmetry breaking and momentum-dependent spin-split band structures. Motivated by the prevalence of altermagnetic materials with non-symmorphic symmetry-dictated band degeneracies, we provide realistic minimal models for altermagnetism by constructing tight-binding models for nonsymmorphic space groups with a sublattice defined by two magnetic atoms. These models can be applied to monoclinic, orthorhombic, tetragonal, rhombohedral, hexagonal, and cubic materials and can describe d-wave, g-wave, and i-wave altermagnetism. By examining the altermagnetic susceptibility and mean field instabilities within a Hubbard model we reveal that these models have altermagnetic ground states and yield a Berry curvature that is linear in the spin-orbit coupling. We apply our models to RuO$_2$, MnF$_2$, FeSb$_2$, $\kappa$-Cl, CrSb, and MnTe.<br />Comment: v2: 18 pages, 18 figures. v3: matches journal version
Details
- Database :
- arXiv
- Journal :
- Phys. Rev. B 110, 144412 (2024)
- Publication Type :
- Report
- Accession number :
- edsarx.2402.15616
- Document Type :
- Working Paper
- Full Text :
- https://doi.org/10.1103/PhysRevB.110.144412