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Survey of Temperature Dependence of the Damping Parameter in the Ferrimagnet Gd 3 Fe 5 O 12

作者:Isaac Ng, Ruizi Liu, Zheyu Ren, Se Kwon Kim, Qiming Shao · 发表于:IEEE Transactions on Magnetics · 年份:2022 · DOI:10.1109/tmag.2022.3141586 · 被引用次数:7 · 研究领域:Magnetic Properties and Synthesis of Ferrites、Magneto-Optical Properties and Applications、Magnetic properties of thin films

The damping parameter${\alpha }_{\mathrm{ FM}}$in ferrimagnets defined according to the conventional practice for ferromagnets is known to be strongly temperature-dependent and diverge at the angular momentum compensation temperature, where the net angular momentum vanishes. However, recent theoretical and experimental developments on ferrimagnetic metals suggest that the damping parameter can be defined in such a way, which we denote by${\alpha }_{\mathrm{ FiM}}$, that it is free of the diverging anomaly at the angular momentum compensation point and is little dependent on temperature. To further understand the temperature dependence of the damping parameter in ferrimagnets, we analyze several datasets from literature for a ferrimagnetic insulator, gadolinium iron garnet, by using the two different definitions of the damping parameter. Using two methods to estimate the individual sublattice magnetizations, which yield results consistent with each other, we find that in all the used datasets, the damping parameter${\alpha }_{\mathrm{ FiM}}$does not increase at the angular compensation temperature and shows no anomaly, whereas the conventionally defined${\alpha }_{\mathrm{ FM}}$is strongly dependent on the temperature.