Temperature dependence of phonons in Pd3Fe through the Curie temperature

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Abstract

Iron phonon partial densities of states of Pd357Fe were measured from room temperature through the Curie transition at 500 K using nuclear resonant inelastic x-ray scattering. The experimental results were compared to ab initio spin-polarized calculations that model the finite-temperature thermodynamic properties of L12-ordered Pd3Fe with stochastically generated atomic displacements, coupled with magnetic special quasirandom structures of noncollinear magnetic moments. The scattering measurements and first-principles calculations show that the Fe partial vibrational entropy is close to what is predicted by the quasiharmonic approximation owing to a cancellation of effects. Anharmonicity and a magnon-phonon interaction approximately cancel a ferromagnetic optical phonon stiffening.

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Yang, F. C., Hellman, O., Lucas, M. S., Smith, H. L., Saunders, C. N., Xiao, Y., … Fultz, B. (2018). Temperature dependence of phonons in Pd3Fe through the Curie temperature. Physical Review B, 98(2). https://doi.org/10.1103/PhysRevB.98.024301

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