Effect of magnetism on the lattice dynamics in the sigma-phase Fe-Cr alloys
arXiv:1204.4067 · doi:10.1209/0295-5075/101/16008
Abstract
Anomalies in the temperature dependences of the recoil-free factor, f, and the average center shift, <CS>, measured by 57-Fe Mossbauer Spectroscopy, were observed for the first time in the archetype of the σ-phase alloys system, Fe-Cr. In both cases the anomaly started at the temperature close to the magnetic ordering temperature, and in both cases it was indicative of lattice vibrations hardening. As no magnetostrictive effects were found, the anomalies seem to be entirely due to a spin-phonon coupling. The observed changes in f and in <CS> were expressed in terms of the underlying changes in the potential, ΔE_p, and the kinetic energy, ΔE_k, respectively. The former, with the maximum value larger by a factor of six than the latter, decreases, while the latter increases with T. The total mechanical energy change, ΔE, was, in general, not constant, as expected for the Debye-like vibrations, but it resembled that of ΔE_p. Only in the range of 4-15 K, ΔE was hardly dependent on T.
References in corpus (1)
Cited by in corpus (6)
- Anomalous lattice dynamics in a sigma-Fe60V40 alloy: Mossbauer spectroscopic study
- What can one learn about Fe-Cr alloys using Mössbauer spectroscopy?
- Further evidence on the effect of magnetism on lattice vibrations:the case study of sigma-phase Fe0.525Cr0.455Ni0.020 alloy
- Effect of magnetism on lattice dynamics in metallic chromium
- The giant effect of magnetic ordering on a sound velocity in a sigma-Fe55Cr45 alloy
- Mössbauer spectroscopic study of a sigma-Fe65.9V34.1 alloy: Curie and Debye temperatures