Temperature dependence of magnetic resonance in ferrimagnetic GdFeCo alloys

We provide a macroscopic theory and experimental results for magnetic resonances of antiferromagnetically-coupled ferrimagnets. Our theory, which interpolates the dynamics of antiferromagnets and ferromagnets smoothly, can describe ferrimagnetic resonances across the angular momentum compensation po...

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Veröffentlicht in:Applied physics express 2019-09, Vol.12 (9), p.93001
Hauptverfasser: Okuno, Takaya, Kim, Se Kwon, Moriyama, Takahiro, Kim, Duck-Ho, Mizuno, Hayato, Ikebuchi, Tetsuya, Hirata, Yuushou, Yoshikawa, Hiroki, Tsukamoto, Arata, Kim, Kab-Jin, Shiota, Yoichi, Lee, Kyung-Jin, Ono, Teruo
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Sprache:eng
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Zusammenfassung:We provide a macroscopic theory and experimental results for magnetic resonances of antiferromagnetically-coupled ferrimagnets. Our theory, which interpolates the dynamics of antiferromagnets and ferromagnets smoothly, can describe ferrimagnetic resonances across the angular momentum compensation point. We also present experimental results for spin-torque induced ferrimagnetic resonance at several temperatures. The spectral analysis based on our theory reveals that the Gilbert damping parameter, which has been considered to be strongly temperature dependent, is insensitive to temperature. We envision that our work will facilitate further investigation of ferrimagnetic dynamics by providing a theoretical framework suitable for a broad range of temperatures.
ISSN:1882-0778
1882-0786
DOI:10.7567/1882-0786/ab33d5