Abstract
The structural and magnetic properties for a series of Fe100-xGax alloys (x = 18-30 at.%) are studied in the framework of first-principles calculations and Monte Carlo simulations. The both, general gradient approximation and local density approximation are considered for the exchange-correlation functional. The ground state ab initio calculations are performed for both D03 and L12 crystal structures. It is shown that for general gradient approximation, the optimized lattice parameters and total magnetic moments are found in the better agreement with experimental ones. Using the calculated exchange coupling constants for studied compositions, Curie temperatures are estimated by means of Monte Carlo simulations of Heisenberg Hamiltonian.
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CITATION STYLE
Matyunina, M., Zagrebin, M., Sokolovskiy, V., & Buchelnikov, V. (2018). Ab initio study of magnetic and structural properties of Fe-Ga alloys. In EPJ Web of Conferences (Vol. 185). EDP Sciences. https://doi.org/10.1051/epjconf/201818504013
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