Dynamical properties of ordered Fe-Pt alloys
Abstract
The structure, magnetic properties, and lattice dynamics of ordered Fe-Pt alloys with three stoichiometric compositions, FePt, FePt and FePt, have been investigated using the density functional theory. Additionally, the existing experimental data have been complemented by new measurements of the Fe projected phonon density of states performed for the FePt and FePt thin films using the nuclear inelastic scattering technique. The calculated phonon dispersion relations and phonon density of states have been compared with the experimental data. The dispersion curves are very well reproduced by the calculations, although, the softening of the transversal acoustic mode TA leads to some discrepancy between the theory and experiment in FePt. A very goood agreement between the measured spectra and calculations performed for the tetragonal structure derived from the soft mode may signal that the tetragonal phase with the space group plays an important role in the martensitic transformation observed in FePt. For FePt, the antiferromagnetic order appearing with decreasing temperature has been also investigated. The studies showed that the phonon density of states of FePt very weakly depends on the magnetic configuration.
Cite
@article{arxiv.1501.05550,
title = {Dynamical properties of ordered Fe-Pt alloys},
author = {M. Sternik and S. Couet and J. Łażewski and P. T. Jochym and K. Parlinski and A. Vantomme and K. Temst and P. Piekarz},
journal= {arXiv preprint arXiv:1501.05550},
year = {2025}
}
Comments
11 pages, 8 figures