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      KCI등재

      S, J, K 주파수영역에서 MgFe₂O₄ 단결정의 강자성공명 연구

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      https://www.riss.kr/link?id=A76075568

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      We have manufactured FMR spectrometer over wide range(2-35 ㎓). In order to test FMR spectrometer, resonance absorption has been measured of the standard sample DPPH. The Q vaules of absorption line are 189-1096. As a result, We noticed that FMR spectrometer has been manufactured well. FMR studies of MgFe₂O₄ single crystal have been performed at S, J, K-band. The resonance lines have been observed for the each orientation of (100) plane at 300 K. The values of the magnetic anisotropy constant K₁ and the spectroscopic splitting g valule have been calculated from the ferromagnetic resonance curve, -2.9×10⁴erg/㎤, 2.02 at 23.89 ㎓, -2.2×10⁴erg/㎤, 1.89 at 5.3 ㎓ and -2.8×10⁴erg/㎤, 2.01 at 3.6 ㎓.
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      We have manufactured FMR spectrometer over wide range(2-35 ㎓). In order to test FMR spectrometer, resonance absorption has been measured of the standard sample DPPH. The Q vaules of absorption line are 189-1096. As a result, We noticed that FMR spec...

      We have manufactured FMR spectrometer over wide range(2-35 ㎓). In order to test FMR spectrometer, resonance absorption has been measured of the standard sample DPPH. The Q vaules of absorption line are 189-1096. As a result, We noticed that FMR spectrometer has been manufactured well. FMR studies of MgFe₂O₄ single crystal have been performed at S, J, K-band. The resonance lines have been observed for the each orientation of (100) plane at 300 K. The values of the magnetic anisotropy constant K₁ and the spectroscopic splitting g valule have been calculated from the ferromagnetic resonance curve, -2.9×10⁴erg/㎤, 2.02 at 23.89 ㎓, -2.2×10⁴erg/㎤, 1.89 at 5.3 ㎓ and -2.8×10⁴erg/㎤, 2.01 at 3.6 ㎓.

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