Antiferromagnetic structure of : A neutron diffraction study
Phys. Rev. B 112, 184416 – Published 12 November, 2025
DOI: https://doi.org/10.1103/27n8-5q4l
Abstract
Altermagnetism has been proposed as a distinct class of antiferromagnets exhibiting momentum-dependent spin splitting band structures without requiring spin-orbit coupling. Recently, has been identified as a metallic room-temperature altermagnet with -wave spin-momentum locking. Here, we investigate the magnetic structure of in both polycrystalline and single-crystal samples using neutron diffraction techniques. The system exhibits G-type antiferromagnetic structure with a Néel temperature 400 K. Notably, substantial broadening of magnetic peaks was observed along at low temperatures in single crystals, consistent with the coexistence of G-type AFM order and a -axis spin density wave. These results demonstrate that bulk cannot host altermagnetism.