Superconducting to spin glass state transformation in ß-pyrochlore KxOs2O6
arXiv:1101.3639 · doi:10.1103/PhysRevB.83.104503
Abstract
ß-pyrochore KOs2O6, which shows superconductivity below ~ 9.7K, has been converted into KxOs2O6 (x < 2/3 - 1/2) electrochemically to show spin glass-like behavior below ~ 6.1K. Room temperature sample surface potential versus charge transfer scan indicates that there are at least two two-phase regions for x between 1 and 0.5. Rattling model of superconductivity for the title compound has been examined using electrochemical potassium de-intercalation. The significant reduction of superconducting volume fraction due to minor potassium reduction suggests the importance of defect and phase coherence in the rattling model. Magnetic susceptibility, resistivity, and specific heat measurement results have been compared between the superconducting and spin glass-like samples.
8 pages, 7 figures, 1 table
References in corpus (5)
- Magnetic Pyrochlore Oxides
- NMR relaxation and resistivity from rattling phonons in pyrochlore superconductors
- Rattling-Induced Superconductiviy in the Beta-Pyrochlore Oxides AOs2O6
- Searching for Stable Na-ordered Phases in Single Crystal Samples of gamma-NaxCoO2
- Magnetic and charge transport properties of the Na-based Os oxide pyrochlore