Theoretical study of metal-insulator transition in rhombohedral vanadium sesquioxide |
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Authors: | Guang-Hua Liu Xiao-Yan Deng |
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Affiliation: | a Department of Physics, Tianjin Polytechnic University, Tianjin 300160, China b Graduate Department, Tianjin Polytechnic University, Tianjin 300160, China c School of Physics, Peking University, Beijing 100871, China |
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Abstract: | The electronic structure and the metal-insulator transition (MIT) of V2O3 are investigated in the framework of density functional theory and GGA+U. It is found that, both the insulating and metallic phases can be realized in rhombohedral structure by varying the on-site Coulomb interaction, and the MIT in V2O3 can take place without any structure phase transition. Our calculated energy gap (0.63 eV) agrees with experimental result very well. The metallic phase exhibits high spin (S=1) character, but it becomes S=1/2 in insulating phase. According to our analysis, the Mott-Hubbard and the charge-transfer induce the MIT together, and it supports the mechanism postulated by Tanaka (2002) [11]. |
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Keywords: | A. Oxides D. Electrical properties D. Phase transitions |
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