Exchange Interaction via Crystal-Field Excited States and Its Importance in CsCoCl_3
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概要
- 論文の詳細を見る
The low-energy effective Hamiltonian is derived for a typical quasi-one-dimensional Ising-like antiferromagnet CsCoCl_3. In contrast to previous treatments, in which only the processes within the crystal-field ground Kramers doublet are considered, second-order processes via crystal-field excited states are also taken into account in the present paper. They result in a new term, which is essentially a next-nearest neighbor ferromagnetic exchange whose anisotropy is different from the nearest-neighbor exchange. By including the new term the magnetization curve and ESR in CsCoCl_3 are analyzed to show that those experiments can be explained in a way consistent with other experiments. Related theories on CsCoCl_3 are discussed in this connection.
- 社団法人日本物理学会の論文
- 2003-09-15
著者
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Shin-ichi Kimura
Uvsor Facility Institute For Molecular Science
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SHIBA Hiroyuki
Department of Physics, Kobe University
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OKUNISHI Kouichi
Department of Physics, Niigata University
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KIMURA Shojiro
KYOKUGEN, Osaka University
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KINDO Koichi
KYOKUGEN, Osaka University
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Kindo Koichi
Kyokugen Osaka University
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UEDA Yoshifumi
Department of Pharmacology, Gifu Pharmaceutical University
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Kimura S
The Graduate School Of Science An Technology Kobe University
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Kimura Shojiro
Kyokugen Osaka University
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Kimura S
Graduate School Of Science And Technology Kobe University
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Shiba Hiroyuki
Department Of Physics Kobe University
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Okunishi K
Osaka Univ. Suita Jpn
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Okunishi Kouichi
Department Of Physics Faculty Of Science Niigata Univeristy
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Ueda Yoshifumi
Department Of Pharmacology Gifu Pharmaceutical University
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Shiba Hiroyuki
Department Of Computer Science Gunma University Faculty Of Engineering
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Ueda Yoshifumi
Department Of Physics Kobe University
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Kimura Shojiro
Kyokugen (center For Quantum Science And Technology Under Extreme Conditions) Osaka University
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OKUNISHI Kouichi
Department of Applied Physics, Graduate School of Engineering Osaka University
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Ueda Yoshifumi
Department of Chemistry and Department of Physics, Faculty of Science, The University of Tokyo
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