Correlation between Superconducting Transition Temperature and Increase of Nuclear Spin-Lattice Relaxation Rate Devided by Temperature at in the Hydrate Cobaltate NaCoOHO
arXiv:cond-mat/0407192 · doi:10.1143/JPSJ.73.2069
Abstract
We have performed Co-nuclear quadrupole resonance (NQR) studies on NaCoOHO compounds with different Na () and hydrate () contents. Two samples with different Na contents but nearly the same values ( = 0.348, = 4.7 K ; = 0.339, = 4.6 K) were investigated. The spin-lattice relaxation rate in the superconducting (SC) and normal states is almost the same for the two samples except just above . NQR measurements were also performed on different-hydrate-content samples with different values, which were prepared from the same Na-content ( = 0.348) sample. From measurements of using the different-hydrate-content samples, it was found that a low- sample with K has a larger residual density of states (DOS) in the SC state and a smaller increase of just above than a high- sample with = 4.7 K. The former behavior is consistent with that observed in unconventional superconductors, and the latter suggests the relationship between and the increase in DOS just above . This increase, which is seemingly associated with the two-dimensionality of the CoO plane, is considered to be one of the most important factors for the occurrence of superconductivity.
5 pages, 5 figures, To be published in J. Phys. Soc. Jpn