In-plane magnetic structure and exchange interactions in the high-temperature antiferromagnet Cr2Al
arXiv:2201.07356 · doi:10.1103/PhysRevMaterials.5.084411
Abstract
The ordered tetragonal intermetallic CrAl forms the same structure type as MnAu, and the latter has been heavily investigated for its potential in antiferromagnetic spintronics due to its degenerate in-plane Néel vector. We present the single crystal flux growth of CrAl and orientation-dependent magnetic properties. Powder neutron diffraction of CrAl and first-principles simulations reveal that the magnetic ordering is likely in-plane and therefore identical to MnAu, providing a second material candidate in the MoSi structure type to evaluate the fundamental interactions that govern spintronic effects. The single ordering transition seen in thermal analysis and resistivity indicates that no canting of the moments along the axis is likely. Magnetometry, resistivity, and differential scanning calorimetry measurements confirm the Néel temperature to be K. First-principles simulations indicate that the system has a small density of states at the Fermi energy and confirm the lowest-energy magnetic ground state ordering, while Monte Carlo simulations match the experimental Néel temperature.
8 pages, 11 figures, Supplementary Material