TY - JOUR
T1 - Role of spin-orbit coupling on the spin triplet pairing in Na xCoO2·yH2O
T2 - I. d-vector under zero magnetic field
AU - Yanase, Youichi
AU - Mochizuki, Masahito
AU - Ogata, Masao
PY - 2005/9
Y1 - 2005/9
N2 - The d-vector in possibile spin triplet superconductor Na xCoO2·yH2O is microscopically investigated on the basis of the multi-orbital Hubbard model including the atomic spin-orbit coupling. As a result of the perturbation theory, we obtain the stable spin triplet superconductivity where the p-wave and f-wave states can be stabilized. If we neglect the spin-orbit coupling, superconducting state has 6-fold (3-fold) degeneracy in the p-wave (f-wave) state. This degeneracy is lifted by the spin-orbit coupling. We determine the d-vector within the linearlized Dyson-Gorkov equation. It is shown that the d-vector is always along the plane when the pairing symmetry is p-wave, while it depends on the parameters in case of the f-wave state. The lifting of degeneracy is significant in the p-wave state while it is very small in the f-wave state. This is because the first order term with respect to the spin-orbit coupling is effective in the former case, while it is ineffective in the latter case. The consistency of these results with NMR and μSR measurements are discussed.
AB - The d-vector in possibile spin triplet superconductor Na xCoO2·yH2O is microscopically investigated on the basis of the multi-orbital Hubbard model including the atomic spin-orbit coupling. As a result of the perturbation theory, we obtain the stable spin triplet superconductivity where the p-wave and f-wave states can be stabilized. If we neglect the spin-orbit coupling, superconducting state has 6-fold (3-fold) degeneracy in the p-wave (f-wave) state. This degeneracy is lifted by the spin-orbit coupling. We determine the d-vector within the linearlized Dyson-Gorkov equation. It is shown that the d-vector is always along the plane when the pairing symmetry is p-wave, while it depends on the parameters in case of the f-wave state. The lifting of degeneracy is significant in the p-wave state while it is very small in the f-wave state. This is because the first order term with respect to the spin-orbit coupling is effective in the former case, while it is ineffective in the latter case. The consistency of these results with NMR and μSR measurements are discussed.
KW - Multi-orbital model
KW - NaCoO·yHO
KW - Spin triplet superconductivity
KW - d-vector
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U2 - 10.1143/JPSJ.74.2568
DO - 10.1143/JPSJ.74.2568
M3 - Article
AN - SCOPUS:25144496100
SN - 0031-9015
VL - 74
SP - 2568
EP - 2578
JO - journal of the physical society of japan
JF - journal of the physical society of japan
IS - 9
ER -