209 research outputs found

    Phase fluctuations versus Gaussian fluctuations in optimally-doped YBa2_2Cu3_3O7_7

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    We analyze recent torque measurements of the magnetization MdM_d vs. magnetic field HH in optimally doped YBa2_2Cu3_3O7−y_{7-y} (OPT YBCO) to argue against a recent proposal by Rey et al that the magnetization results above TcT_c are consistent with Gaussian fluctuations. We find that, despite its strong interlayer coupling, OPT YBCO displays an anomalous non-monotonic dependence of MdM_d on HH which represents direct evidence for the locking of the pair wavefunction phase θn\theta_n at TcT_c and the subsequent unlocking by a relatively weak HH. These unusual features characterize the unusual nature of the transition to the Meissner state in cuprate superconductors. They are absent in low-TcT_c superconductors to our knowledge. We also stress the importance of the vortex liquid state, as well as the profiles of the melting field Hm(T)H_m(T) and the upper critical field curve Hc2(T)H_{c2}(T) in the TT-HH 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 Hc2H_{c2} line near TcT_c. The prediction of the Hc2H_{c2} line by Rey et al is shown to be invalid in OPT YBCO.Comment: 6 pages, 6 figure

    Quasiparticle interference of C2-symmetric surface states in LaOFeAs parent compound

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    We present scanning tunneling microscopy studies of the LaOFeAs parent compound of iron pnictide superconductors. Topographic imaging reveals two types of atomically flat surfaces, corresponding to the exposed LaO layer and FeAs layer respectively. On one type of surface, we observe strong standing wave patterns induced by quasiparticle interference of two-dimensional surface states. The distribution of scattering wavevectors exhibits pronounced two-fold symmetry, consistent with the nematic electronic structure found in the Ca(Fe1-xCox)2As2 parent state.Comment: 13 pages, 4 figure

    Thickness dependence of superconductivity and superconductor-insulator transition in ultrathin FeSe films on SrTiO3(001) substrate

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    Interface-enhanced high-temperature superconductivity in one unit-cell (UC) FeSe film on SrTiO3(001) (STO) substrate has recently attracted much attention in condensed matter physics and material science. Here, by ex situ transport measurements, we report on the superconductivity in FeSe ultra-thin films with different thickness on STO substrate. We find that the onset superconducting transition temperature (Tc) decreases with increasing film thickness of FeSe, which is opposite to the behavior usually observed in traditional superconductor films. By systematic post-annealing of 5 UC FeSe films, we observe an insulator to superconductor transition, which is accompanied with a sign change of the dominated charge carriers from holes to electrons at low temperatures according to the corresponding Hall measurement

    Vorticity, phase stiffness and the cuprate phase diagram

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    We review results obtained from vortex-Nernst experiments in cuprates. Evidence for a loss of phase coherence at the Meissner transition Tc0T_{c0} is derived from vortex-like excitations that persist to high temperature. Below Tc0T_{c0}, the Nersnt signal provides a determination of the upper critical field Hc2H_{c2} vs. doping xx. Implications for the cuprate phase diagram are discussed.Comment: 6 pages, 8 figures, Plenary talk of the 7th International Conference on Materials and Mechanisms of Superconductivity and High Temperature Superconductors. To appear in Physica C, the proceeding of M2S-HTSC-VI
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