Small Saturation Moment due to the Crystalline Electric Field Effect for<i>T</i><sub><i>h</i></sub>Site Symmetry in the Ferromagnet UFe<sub>4</sub>P<sub>12</sub>

  • Matsuda Tatsuma D.
    Advanced Science Research Center, Japan Atomic Energy Research Institute
  • Galatanu Andrei
    Advanced Science Research Center, Japan Atomic Energy Research Institute
  • Haga Yoshinori
    Advanced Science Research Center, Japan Atomic Energy Research Institute
  • Ikeda Shugo
    Advanced Science Research Center, Japan Atomic Energy Research Institute Graduate School of Science, Osaka University
  • Yamamoto Etsuji
    Advanced Science Research Center, Japan Atomic Energy Research Institute
  • Hedo Masato
    Institute for Solid State Physics, University of Tokyo
  • Uwatoko Yoshiya
    Institute for Solid State Physics, University of Tokyo
  • Takeuchi Tetsuya
    Low Temperature Center, Osaka University Research Center for Materials Science at Extreme Conditions, Osaka University
  • Sugiyama Kiyohiro
    Graduate School of Science, Osaka University Research Center for Materials Science at Extreme Conditions, Osaka University
  • Kindo Koichi
    Research Center for Materials Science at Extreme Conditions, Osaka University
  • Settai Rikio
    Graduate School of Science, Osaka University
  • Onuki Yoshichika
    Advanced Science Research Center, Japan Atomic Energy Research Institute Graduate School of Science, Osaka University

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タイトル別名
  • Small Saturation Moment due to the Crystalline Electric Field Effect for Th Site Symmetry in the Ferromagnet UFe4P12

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説明

Electrical resistivity, specific heat, magnetic susceptibility and high-field magnetization measurements have been performed on the ferromagnet UFe4P12 with the cubic crystal structure. The ferromagnetic ordering at TC=3.1 K, a small saturation moment of 1.3 μB/U, together with the temperature dependence of the magnetic susceptibility, are found to be well explained by considering the 5f2 crystalline electric field schemes for Th site symmetry and the magnetic exchange interaction.

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