paper

Phase fluctuations versus Gaussian fluctuations in optimally-doped YBaCuO

arXiv:1301.7333 · doi:10.1103/PhysRevB.87.056502

Abstract

We analyze recent torque measurements of the magnetization vs. magnetic field in optimally doped YBaCuO (OPT YBCO) to argue against a recent proposal by Rey et al that the magnetization results above are consistent with Gaussian fluctuations. We find that, despite its strong interlayer coupling, OPT YBCO displays an anomalous non-monotonic dependence of on which represents direct evidence for the locking of the pair wavefunction phase at and the subsequent unlocking by a relatively weak . These unusual features characterize the unusual nature of the transition to the Meissner state in cuprate superconductors. They are absent in low- superconductors to our knowledge. We also stress the importance of the vortex liquid state, as well as the profiles of the melting field and the upper critical field curve in the - plane. Contrary to the claims of Rey et al, we show that the curves of the magnetization and the Nernst signal illustrate the inaccessibility of the line near . The prediction of the line by Rey et al is shown to be invalid in OPT YBCO.

6 pages, 6 figures