Charge and Spin States of Transition-Metal Atoms in a Hemoprotein Based on the Extended Haldane-Anderson Model
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概要
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The charge and spin states of transition-metal atoms in a hemoprotein are studied based on the extended Haldane-Anderson model in which exchange interaction between localized d electrons and orbital dependence of p-d hybridization are taken into account. It is shown that both multiple charge states and transition between high-spin and low-spin states can be described properly in this model.
- 社団法人日本物理学会の論文
- 2003-08-15
著者
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YAMAUCHI Kunihiko
Department of Internal Medicine, Tokai University School of Medicine
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Yamauchi Kunihiko
Department Of Condensed Matter Physics The Institute Of Scientific And Industrial Research Osaka Uni
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KATAYAMA-YOSHIDA Hiroshi
Department of Physics,Tohoku University
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MAEBASHI Hideaki
Department of Condensed Matter Physics, The Institute of Scientific and Industrial Research, Osaka U
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Katayama-yoshida Hiroshi
Department Of Condensed Matter Physics Osaka University:department Of Computational Nanomaterials De
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Maebashi Hideaki
Division Of Materials Physics Department Of Physical Science Graduate School Of Engineering Science
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Maebashi Hideaki
Department Of Condensed Matter Physics The Institute Of Scientific And Industrial Research Osaka Uni
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Maebashi Hideaki
Department Of Condensed Matter Physics The Institute Of Scientific And Industrial Research Osaka Uni
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Katayama‐yoshida H
Department Of Condensed Matter Physics Osaka University:department Of Computational Nanomaterials De
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Yamauchi K
Department Of Condensed Matter Physics The Institute Of Scientific And Industrial Research Osaka Uni
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Katayama-yoshida Hiroshi
Department Of Computational Science Asahi Chemical Industry Co. Ltd.:presto Japan Science And Techno
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Katayama-Yoshida Hiroshi
Department of Computational Nanomaterials Design, Nanoscience and Nanotechnology Center, The Institute of Scientific and Industrial Research (ISIR), Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka 567-0047, Japan
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