paper

Magnetic properties of FeSiB and its alloys with P, S, and Co

arXiv:1603.00253 · doi:10.1103/PhysRevB.93.174412

Abstract

FeSiB has been synthesized and magnetic measurements have been carried out, revealing that M = 0.92 MA/m at T = 300 K. The M vs T curve shows a broad peak around T = 160 K. The anisotropy constant, K, estimated at T = 300 K, is 0.25 MJ/m. Theoretical analysis of FeSiB system has been carried out and extended to the full range of FeSiPB, FePSB, and (FeCo)SiB compositions. The electronic band structures have been calculated using the Full-Potential Local-Orbital Minimum-Basis Scheme (FPLO-14). The calculated total magnetic moments are 9.20, 9.15, 9.59 and 2.42 per formula units of FeSiB, FePB, FeSB, and CoSiB, respectively. In agreement with experiment, magnetocrystalline anisotropy energies (MAE's) calculated for T = 0 K changes from a negative (easy-plane) anisotropy -0.28 MJ/m for FeSiB to the positive (easy-axis) anisotropy 0.35 MJ/m for FePB. Further increase of the number of p-electrons in FePSB leads to an increase of MAE up to 0.77 MJ/m for the hypothetical FePSB composition. Volume variation and fixed spin moment calculations (FSM) performed for FeSiB show an inverse relation between MAE and magnetic moment in the region down to about 15\% reduction of the spin moment. The alloying of FeSiB with Co is proposed as a practical realization of magnetic moment reduction, which ought to increase MAE. MAE calculated in virtual crystal approximation (VCA) for a full range of (FeCo)SiB compositions reaches the maximum value of 1.16 MJ/m at Co concentration x = 0.3, with the magnetic moment 7.75 per formula unit. Thus, (FeCo)SiB is suggested as a candidate for a rare-earth free permanent magnet.

11 pages, 14 figures

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