4.3 Article

Detailed investigation of gap structure and specific heat in the p-wave superconductor Sr2RuO4

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JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN
卷 71, 期 2, 页码 404-407

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PHYSICAL SOC JAPAN
DOI: 10.1143/JPSJ.71.404

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superconducting gap; specific heat; Sr2RuO4; p-wave superconductivity

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We present the highly anisotropic p-wave superconducting gap structure of Sr2RuO4, which was determined microscopically by solving the linearized Eliashberg equation on the basis of the perturbation theory with respect to the Coulomb energy at Ru sites. We trace the evolution of the gap function below T-c, following the elementary BCS theory, and calculate specific heat for the superconducting state with the symmetry represented by d(k) similar to (k(x) + ik(y))(z) over cap. The strong momentum dependences of the gap structure provide a line-node-like power-law behavior of the specific heat even at extremely low temperature. As a result, the calculation results of specific heat agree with die experimental results well for moderately strong inter-orbit couplings.

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