| Literature DB >> 26602978 |
P Wadley1, V Hills1, M R Shahedkhah1, K W Edmonds1, R P Campion1, V Novák2, B Ouladdiaf3, D Khalyavin4, S Langridge4, V Saidl5, P Nemec5, A W Rushforth1, B L Gallagher1, S S Dhesi6, F Maccherozzi6, J Železný2,5, T Jungwirth1,2.
Abstract
Tetragonal CuMnAs is an antiferromagnetic material with favourable properties for applications in spintronics. Using a combination of neutron diffraction and x-ray magnetic linear dichroism, we determine the spin axis and magnetic structure in tetragonal CuMnAs, and reveal the presence of an interfacial uniaxial magnetic anisotropy. From the temperature-dependence of the neutron diffraction intensities, the Néel temperature is shown to be (480 ± 5) K. Ab initio calculations indicate a weak anisotropy in the (ab) plane for bulk crystals, with a large anisotropy energy barrier between in-plane and perpendicular-to-plane directions.Entities:
Year: 2015 PMID: 26602978 PMCID: PMC4658521 DOI: 10.1038/srep17079
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Tetragonal CuMnAs structure.
Unit cell structure of tetragonal CuMnAs and spin arrangement revealed by neutron diffraction.
Figure 2Neutron diffraction measurements of 500 nm CuMnAs on GaP(001).
(a,b) Neutron diffraction peaks obtained at various temperatures for (a) the (100) and (b) the (001) atomic planes. The lines show the Gaussian fits to the data. (c) Temperature-dependent intensities of the neutron diffraction peaks for the (100) reflection (circles) and the (001) reflection (squares), together with power law fits. (d) Neutron diffraction peaks for the (100) atomic plane (filled circles) and the (010) atomic plane (open circles), normalised to the GaP substrate (220) peak.
Figure 3XMLD measurements on 10 nm CuMnAs on GaP(001).
(a) Mn L2,3 x-ray absorption spectra obtained with normal incidence x-rays with horizontal (black) and vertical (red) linear polarization, and the difference spectrum (blue). (b) As for (a), but at the Cu L2,3 x-ray absorption edges. (c) Mn L2,3 XMLD spectra, obtained as the difference between absorption spectra for x-ray polarization parallel and perpendicular to the [100] axis (blue), the [110] axis (green) and the [010] axis (red). (d) Temperature-dependence of the Mn L3 XMLD (points) compared to the power law behaviour extrapolated from the neutron diffraction measurements (line).
Figure 4Antiferromagnetic configurations used in the calculations.
Two unit cells are shown in each direction. (a) The experimentally observed magnetic order AF1; (b) AF2; (c) AF3.