Two Prospective Li-Based Half-Heusler Alloys For Spintronic Applications Based On Structural Stability And Spin-Orbit Effect

R. L. Zhang,L. Damewood, Y. J. Zeng,H. Z. Xing, C. Y. Fong,L. H. Yang, R. W. Peng,C. Felser

JOURNAL OF APPLIED PHYSICS(2017)

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摘要
To search for half-metallic materials for spintronic applications, instead of using an expensive trial-and-error experimental scheme, it is more efficient to use first-principles calculations to design materials first, and then grow them. In particular, using a priori information of the structural stability and the effect of the spin-orbit interaction (SOI) enables experimentalists to focus on favorable properties that make growing half-metals easier. We suggest that using acoustic phonon spectra is the best way to address the stability of promising half-metallic materials. Additionally, by carrying out accurate first-principles calculations, we propose two criteria for neglecting the SOI so the half-metallicity persists. Based on the mechanical stability and the negligible SOI, we identified two half-metals, b-LiCrAs and b-LiMnSi, as promising half-Heusler alloys worth growing. Published by AIP Publishing.
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