Altermagnetism of ultrathin CrSb slabs
arXiv:2510.00985 · doi:10.1103/k9zm-2k1v
Abstract
Altermagnets exhibit momentum-dependent spin splitting without net magnetization, combining characteristics of both ferromagnets and antiferromagnets, making them highly interesting for spintronics applications. CrSb is a prime candidate with a high Néel temperature (~K) and a large exchange-driven splitting of --1~eV. Using ab-initio calculations, we consider slabs of various orientations in the ultrathin limit. We find that (100) oriented slabs have spin-degenerate bands. In (0001) oriented slabs, the exchange-driven altermagnetic spin splitting collapses, but including spin-orbit coupling restores a residual anisotropic splitting of ~meV. In contrast, the (110) oriented slabs show an altermagnetic spin splitting of ~meV, and emerges as a robust candidate for realizing large, exchange-driven altermagnetism
References in corpus (13)
- Altermagnetism: spin-momentum locked phase protected by non-relativistic symmetries
- Broken Kramers' degeneracy in altermagnetic MnTe
- Direct observation of altermagnetic band splitting in CrSb thin films
- Observation of Giant Band Splitting in Altermagnetic MnTe
- Large band-splitting in -wave type altermagnet CrSb
- Three-dimensional mapping of the altermagnetic spin splitting in CrSb
- X-ray Magnetic Circular Dichroism in Altermagnetic -MnTe
- Topological Weyl Altermagnetism in CrSb
- Observation of surface Fermi arcs in altermagnetic Weyl semimetal CrSb
- High mobility charge transport in a multicarrier altermagnet CrSb
- Direction-Dependent Conduction Polarity in Altermagnetic CrSb
- Altermagnetic band splitting in 10 nm epitaxial CrSb thin films
- Epitaxial growth and transport properties of a metallic altermagnet CrSb on a GaAs (001) substrate