排序方式: 共有31条查询结果,搜索用时 0 毫秒
31.
A. T. Fiory D. R. Harshman J. Jung I. -Y. Isaac W. J. Kossler A. J. Greer D. R. Noakes C. E. Stronach E. Koster John D. Dow 《Journal of Electronic Materials》2005,34(5):474-483
Positive-muon spin rotation (μ+SR) spectroscopy and magnetic moment measurements were used to probe fluxon (or vortex) formation
in the superconducting mixed state of a high-purity YBa2Cu3O7 crystal. Random potentials caused by crystal-lattice defects pin fluxons. A fluxon lattice forms in an external magnetic
field, and changes of thermal activation lead to fluxon pinning and depinning. The root second moment of the local magnetic
field distribution (σ) determined by μ+SR contains information on the magnetic penetration depth and the pinning. Fluxon pinning
leads to temperature-dependent transverse displacements of the fluxons that decrease σ and also fluctuations in the separation
between fluxons that tend to increase σ. By accounting for the field-dependent and temperature-activated fluxon disorder,
it is found that the experimental results for the penetration depth are consistent with a supercon-ducting order parameter
of a strong-coupling two-fluid model, confirming that the superconductivity is nodeless with s-wave superconducting pairing.
Quantitative results for fluxon displacements are discussed within the context of the fluxon field-temperature phase diagram. 相似文献