English

Site occupancy and magnetic properties of Al-substituted M-type strontium hexaferrite

Materials Science 2015-04-28 v2

Abstract

We use first-principles total-energy calculations based on density functional theory to study the site occupancy and magnetic properties of Al-substituted MM-type strontium hexaferrite SrFe12x_{12-x}Alx_{x}O19_{19} with x=0.5x=0.5 and x=1.0x=1.0. We find that the non-magnetic Al3+^{3+} ions preferentially replace Fe3+^{3+} ions at two of the majority spin sites, 2a2a and 12k12k, eliminating their positive contribution to the total magnetization causing the saturation magnetization MsM_s to be reduced as Al concentration xx is increased. Our formation probability analysis further provides the explanation for increased magnetic anisotropy field when the fraction of Al is increased. Although Al3+^{3+} ions preferentially occupy the 2a2a sites at a low temperature, the occupation probability of the 12k12k site increases with the rise of the temperature. At a typical annealing temperature (>700C> 700\,^{\circ}{\rm C}) Al3+^{3+} ions are much more likely to occupy the 12k12k site than the 2a2a site. Although this causes the magnetocrystalline anisotropy K1K_1 to be reduced slightly, the reduction in MsM_s is much more significant. Their combined effect causes the anisotropy field HaH_a to increase as the fraction of Al is increased, consistent with recent experimental measurements.

Keywords

Cite

@article{arxiv.1504.02320,
  title  = {Site occupancy and magnetic properties of Al-substituted M-type strontium hexaferrite},
  author = {Vivek Dixit and Chandani N. Nandadasa and Seong-Gon Kim and Sungho Kim and Jihoon Park and Yang-Ki Hong and Laalitha S. I. Liyanage and Amitava Moitra},
  journal= {arXiv preprint arXiv:1504.02320},
  year   = {2015}
}

Comments

8 pages, 5 figures. arXiv admin note: text overlap with arXiv:1209.5143