中文

Josephson-Vortex-Glass Transition in Strong Fields

超导电性 2009-10-31 v1

摘要

A vortex-glass transition due to point disorder in layered superconductors is studied for the case with an applied field {\it parallel} to the layers. Our calculation of tilt responses indicates that, irrespective of the magnitude of the field, the resulting glass phase, Josephson-vortex-glass (JG), should have a transverse Meissner effect, as in a planar splayed glass phase, only for a tilt perpendicular to the layers. Further, focusing on the high field (and/or high anisotropy) region BΓ>ϕ0/d2B \sqrt{\Gamma} > \phi_0/d^2, where Γ\Gamma is the mass anisotropy in the Lawrence-Doniach model, the JG transition line TJG(B)T_{JG}(B) is shown to have a similar form to a BB-TT line following from the {\it disorder-free} Lindemann criterion and to decrease with increasing BΓB \sqrt{\Gamma}, in marked contrast to the disorder-free melting line {\it insensitive to} BΓB \sqrt{\Gamma} in such the high field region. This TJG(B)T_{JG}(B) line seems to have been recently observed in a.c. susceptibility and in-plane resistivity measurements in BSCCO and qualitatively explains a field dependence at lower temperatures of previous BSCCO resistivity data showing the so-called in-plane Lorentz force-free behavior.

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引用

@article{arxiv.cond-mat/0008397,
  title  = {Josephson-Vortex-Glass Transition in Strong Fields},
  author = {Ryusuke Ikeda and Hiroto Adachi},
  journal= {arXiv preprint arXiv:cond-mat/0008397},
  year   = {2009}
}

备注

26 pages, 4 figures, to appear in J.Phys.Soc.Jpn.(Sep, 2000)