Field-induced Magnetic Anisotropy of Single-Crystal GeNi_2O_4(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
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概要
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We report the results of measurements of the magnetic properties of single-crystal of the normal spinel GeNi_2O_4 grown by a floating zone method. The crystal structure is face-centered cubic with a space group of Fd3m, which is the same structure as that of the well-known geometric frustrated heavy-mass Fermi liquid LiV_2O_4. Highly insulating antiferromagnetic GeNi_2O_4 possesses two Neel temperatures (T_<N1> and T_<N2>) of 12.1 and 11.4 K without a structural phase transition. Ni^<2+> ions with integer spin (S = 1) are located on the vertices of a three-dimensional network of corner-sharing tetrahedra. In this study, we show the magnetic susceptibility of GeNi_2O_4 to a magnetic field swept from the direction of <100> to <110> via <111>. Below the transition temperatures, the field dependence of the magnetization, M(H), reveals field-induced magnetic anisotropy.
- 一般社団法人日本物理学会の論文
- 2004-11-15
著者
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Ikeda Shin-ichi
Nanoelectronics Research Institute Aist
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TAKASE Kouichi
Department of Physics, College of Science and Technology, Nihon University
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Sekizawa Kazuko
Department Of Physics And Atomic Energy Research Institute College Of Science And Engineering Nihon
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Yoshida Yoshiyuki
Nanoelectronics Research Institute (neri) National Institute Of Advanced Industrial Science And Tech
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Takano Yoshiki
Department Of Electrical Engineering Waseda University
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Crawford Michael
Dupont Co. Central Research And Development
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Shirakawa Naoki
Nanoelectronics Research Institute
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HARA Shigeo
Department of Dairy Science, The College of Dairying
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