Modern Electronic Materials (Sep 2021)

Magnetization of magnetically inhomogeneous Sr2FeMoO6-δ nanoparticles

  • Gunnar Suchaneck

DOI
https://doi.org/10.3897/j.moem.7.3.75786
Journal volume & issue
Vol. 7, no. 3
pp. 85 – 90

Abstract

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Magnetization is a key property of magnetic materials. Nevertheless, a satisfactory, analytical description of the temperature dependence of magnetization in double perovskites such as strontium ferromolybdate is still missing. In this work, we develop, for the very first time, a model of the magnetization of nanosized, magnetically inhomogeneous Sr2FeMoO6-δ nanoparticles. The temperature dependence of magnetization was approximated by an equation consisting of a Bloch-law spin wave term, a higher order spin wave correction, both taking into account the temperature dependence of the spin-wave stiffness, and a superparamagnetic term including the Langevin function. In the limit of pure ferromagnetic behavior, the model is applicable also to SFMO ceramics. In the vicinity of the Curie temperature (T/TC > 0.85), the model fails.