Аннотация:
We have investigated the magnetic properties of Mn-doped LiZnAs half-Heusler compound using density functional simulations within the gradient generalized approximation (GGA) with the on-site Hubbard UeffUeff parameter (GGA + U). A detailed study of magnetism in the two compounds GaAs and LiZnAs doped with Mn is presented. A super-cell of 64 and 96 atoms have been built for the zinc blend and the half-Heusler compounds, respectively. GGA + U calculations predict that the ferromagnetic state in LiZnAs : Mn compound with a magnetic moment of 3.51 μμB per manganese is more appropriate in energy than the anti-ferromagnetic state. The topological similarity between GaAs and LiZnAs non-magnetic compounds is also confirmed in these Mn-doped systems. The band structures and densities of states show that the Mn-doped half-Heusler LiZnAs has become a dilute magnetic semiconductor with a direct gap of 0.43 eV. The cubic symmetry and distances between the dopant pairs (Mn) are two key factors to predict the character and the magnetic order of Mn-doped LiZnAs system.
Ключевые слова:
LAPW + LO, DFT + U, impurity defects, magnetic properties, ferromagnetic semiconductor.
Образец цитирования:
M. Saidi, M. Belhadj, A. Zaoui, S. Kacimi, A. Kadiri, “First-principles study on the ferromagnetism of Mn-doped LiZnAs half-Heusler compound”, Физика твердого тела, 62:11 (2020), 1854; Phys. Solid State, 62:11 (2020), 2077–2083
\RBibitem{SaiBelZao20}
\by M.~Saidi, M.~Belhadj, A.~Zaoui, S.~Kacimi, A.~Kadiri
\paper First-principles study on the ferromagnetism of Mn-doped LiZnAs half-Heusler compound
\jour Физика твердого тела
\yr 2020
\vol 62
\issue 11
\pages 1854
\mathnet{http://mi.mathnet.ru/ftt10170}
\transl
\jour Phys. Solid State
\yr 2020
\vol 62
\issue 11
\pages 2077--2083
\crossref{https://doi.org/10.1134/S106378342011027X}
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https://www.mathnet.ru/rus/ftt10170
https://www.mathnet.ru/rus/ftt/v62/i11/p1854
Эта публикация цитируется в следующих 1 статьяx:
Q. Yu, H. M. Huang, S. T. Xue, R. Tong, S. J. Luo, “Structural Configuration and Phase Stability in Heusler Alloys Mn2YSb (Y = Os, Pt)”, Phys. Metals Metallogr., 123:13 (2022), 1335