Theory of the \beta-Type Organic Superconductivity under Uniaxial Compression
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概要
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We study theoretically the shift of the superconducting transition temperature (T_{\text{c}}) under uniaxial compression in \beta-type organic superconductors, \beta-(BEDT-TTF)2I3 and \beta-(BDA-TTP)2X (\text{X}=\text{SbF_{6}}, AsF6), in order to clarify the electron correlation, the spin frustration, and the effect of dimerization. The transfer integrals are calculated by the extended Hückel method assuming the uniaxial strain, and the superconducting state mediated by the spin fluctuation is solved using Eliashberg's equation with the fluctuation--exchange approximation. The calculation is carried out on both the dimerized (one-band) and nondimerized (two-band) Hubbard models. We have found that (i) the behavior of T_{\text{c}} in \beta-(BEDT-TTF)2I3 with a stronger dimerization is well reproduced by the dimer model, while that in weakly dimerized \beta-BDA-TTP salts is rather well reproduced by the two-band model, and (ii) the competition between the spin frustration and the effect induced by the fluctuation is important in these materials, which causes the nonmonotonic shift of T_{\text{c}} against uniaxial compression.
- 2011-09-15
著者
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Tanaka Yukio
Department Of Applied Physics Nagoya University
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Suzuki Takeo
Department Of Anesthesiology Tokyo Metropolitan Bokutoh Hospital
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Onari Seiichiro
Department Of Applied Physics Nagoya University
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Ito Hiroshi
Department Neurosurgery Tokyo Medical College
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Suzuki Takeo
Department of Applied Physics, Nagoya University, Nagoya 464-8603, Japan
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Onari Seiichiro
Department of Applied Physics, Nagoya University, Nagoya 464-8603, Japan
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