Theory of Fulde-Ferrell-Larkin-Ovchinnikov State of Superconductors with and without Inversion Symmetry : Hubbard Model Approach(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
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概要
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We study Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state of superconductors with and without inversion symmetry based on the Hubbard model on the square lattice near half-filling, using the random phase approximation. We show that center of mass momentum Q tends to be parallel to x- or y-axis in the presence of inversion symmetry, while Q vector is likely to be perpendicular to the magnetic field in the absence of inversion symmetry. We also clarify that d + f-wave pairing is favored and the hetero spin triplet f-wave state is present in the FFLO state unlike state in the superconductors only with the Rashba type spin-orbit coupling (RSOC) originating from the broken inversion symmetry. The triplet f-wave state is enhanced by magnetic field and the RSOC. This stems from the reduction of the spin susceptibilities by the magnetic field and the RSOC.
- 社団法人日本物理学会の論文
- 2008-06-15
著者
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ONARI Seiichiro
Department of Applied Physics, Nagoya University
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Tanaka Yukio
Department Of Applied Physics Nagoya University:crest Japan Science And Technology Agency (jst)
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Tanaka Yukio
Department Of Applied Physics Nagoya University
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YOKOYAMA Takehito
Department of Applied Physics, Nagoya University
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Onari Seiichiro
Department Of Applied Physics Nagoya University:crest Japan Science And Technology Agency (jst)
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Onari Seiichiro
Department Of Applied Physics Nagoya University
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Yokoyama Takehito
Department Of Applied Physics Nagoya University:crest Japan Science And Technology Agency (jst)
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