Theory of Orbital Ordering. II
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概要
- 論文の詳細を見る
According to the two-band model in the previous theory, the spontaneous magnetic moment due to the orbital motion of electrons in solids points to a special direction given by the interband matrix element of the angular momentum of an electron around the lattice site to which it belongs. For the three-fold degenerate bands, the free energy of the system is shown to be independent of the direction of the magnetic moment. Also, the previous theory is extended into the case of an arbitrary electron number, taking into account the antiferro-ordering. The solution of the ordering equations in the ferro- and antiferro-phases leads to the maximum magnitude of the magnetic moment to be expected for the degenerate p- and d(t_<2q>)-states, and the orbital phase diagram is obtained with the result that, for the electron number per atom between 1 and 2, the antiferro-phase rather than the ferro-phase is stable.
- 理論物理学刊行会の論文
- 1977-06-25
著者
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KATO Tomohiko
Department of Plant Genome Research, Kazusa DNA Research Institute
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HAGA Eijiro
Department of Applied Physics,Faculty of Engineering,Nagoya University
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Haga Eijiro
Department Of Applied Physics Faculty Of Engineering Nagoya University
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AISAKA Tsuyoshi
Department of General Education, Tottori University
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Aisaka Tsuyoshi
Department Of General Education Tottori University
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Aisaka Tsuyoshi
Department Of Applied Mathematics And Physics Tottori University
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Kato Tomohiko
Department Of Applied Physics Faculty Of Engineering Nagoya University
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KAKO Tomohiko
Fukuoka Institute of Technology
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AIKAWA Tsuyoshi
Department of Applied Physics, Faculty of Engineering Nagoya University
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KATO Takeo
Department of Applied Physics, Osaka City University
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HAGA Eijiro
Department of Applied Physics Faculty of Engineering, Nagoya University
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HAGA Eijiro
Department of Applied Physics, Faculty of Engineering, Nagoya University
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KATO Tomokazu
Department of Applied Physics, Waseda Univeersity
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