Magnetic anisotropy in CrGeC investigated by X-ray magnetic circular dichroism and \textit{ab initio} calculations
arXiv:2001.06396 · doi:10.1016/j.jmmm.2020.166470
Abstract
The magnetism in the inherently nanolaminated ternary MAX-phase CrGeC is investigated by element-selective, polarization and temperature-dependent, soft X-ray absorption spectroscopy and X-ray magnetic circular dichroism. The measurements indicate an antiferro-magnetic Cr-Cr coupling along the -axis of the hexagonal structure modulated by a ferromagnetic ordering in the nanolaminated -basal planes. The weak chromium magnetic moments are an order of magnitude stronger in the nanolaminated planes than along the vertical axis. Theoretically, a small but notable, non-spin-collinear component explains the existence of a non-perfect spin compensation along the -axis. As shown in this work, this spin distortion generates an overall residual spin moment inside the unit cell resembling that of a ferri-magnet. Due to the different competing magnetic interactions, electron correlations and temperature effects both need to be considered to achieve a correct theoretical description of the CrGeC magnetic properties.
10 pages, 6 figures, 2 tables