Stability of Room Temperature Compensated Half-Metallicity in Cr-based Inverse-Heusler Compounds
arXiv:1802.00125 · doi:10.1016/j.cap.2018.12.002
Abstract
Using three correlated band approaches, namely the conventional band approach plus on-site Coulomb repulsion , the modified Becke-Johnson functional, and hybrid functional, we have investigated inverse-Heusler ferrimagnets CrCo (=Al, Ga, In). These approaches commonly indicate that the CrCoAl synthesized recently is a precise compensated half-metal (CHM), whereas CrCoGa and CrCoIn are ferrimagnets with a small moment. This is also confirmed by the fixed spin moment approach. Analysis of the Bader charge decomposition and the radial charge densities indicates that this contrast is due to chemical differences among the ions. Additionally, in CrCoAl, changing the volume by 5% or the ratio of by 2% does not alter the CHM state, suggesting that this state is robust even under application of moderate pressure or strain. Considering the observed high Curie temperature of 750 K, our results suggest that CrCoAl is a promising candidate for robust high CHMs. Furthermore, the electronic structure of the CHM CrCoAl is discussed.
6 pages, 7 figures (Curr. Appl. Phys., in press)