English

Magnetic properties of diluted hexaferrites

Disordered Systems and Neural Networks 2024-07-25 v2 Materials Science

Abstract

We revisit the magnetic properties of the hexagonal ferrite PbFe12x_{12-x}Gax_xO19_{19}. Recent experiments have reported puzzling dependencies of the ordering temperature and the saturation magnetization on the Ga concentration xx. To explain these observations, we perform large-scale Monte Carlo simulations, focusing on the effects of an unequal distribution of the Ga impurities over the five distinct Fe sublattices. Ab-initio density-functional calculations predict that the Ga ions preferably occupy the 12k12k sublattice and (to a lesser extent) the 2a2a sublattice. We incorporate this insight into a nonuniform model of the Ga distribution. Monte Carlo simulations using this model lead to an excellent agreement between the theoretical and experimental values of the ordering temperature and saturation magnetization, indicating that the unequal distribution of the Ga impurities is the main reason for the unusual magnetic properties of PbFe12x_{12-x}Gax_xO19_{19}. We also compute the temperature and concentration dependencies of the sublattice magnetizations, and we study the character of the zero-temperature transition that takes place when the ordering temperature is tuned to zero.

Keywords

Cite

@article{arxiv.2405.17328,
  title  = {Magnetic properties of diluted hexaferrites},
  author = {Logan Sowadski and Sean Anderson and Cameron Lerch and Julia Medvedeva and Thomas Vojta},
  journal= {arXiv preprint arXiv:2405.17328},
  year   = {2024}
}

Comments

11 pages, 12 figures, final version as published