中文

Vortex deformation and breaking in superconductors: A microscopic description

超导电性 2007-09-26 v2

摘要

Vortex breaking has been traditionally studied for nonuniform critical current densities, although it may also appear due to nonuniform pinning force distributions. In this article we study the case of a high-pinning/low-pinning/high-pinning layered structure. We have developed an elastic model for describing the deformation of a vortex in these systems in the presence of a uniform transport current density JJ for any arbitrary orientation of the transport current and the magnetic field. If JJ is above a certain critical value, JcJ_c, the vortex breaks and a finite effective resistance appears. Our model can be applied to some experimental configurations where vortex breaking naturally exists. This is the case for YBa2_2Cu3_3O7x_{7-x} (YBCO) low angle grain boundaries and films on vicinal substrates, where the breaking is experienced by Abrikosov-Josephson vortices (AJV) and Josephson string vortices (SV), respectively. With our model, we have experimentally extracted some intrinsic parameters of the AJV and SV, such as the line tension ϵl\epsilon_l and compared it to existing predictions based on the vortex structure.

关键词

引用

@article{arxiv.cond-mat/0701150,
  title  = {Vortex deformation and breaking in superconductors: A microscopic description},
  author = {E. Pardo and J. H. Durrell and M. G. Blamire},
  journal= {arXiv preprint arXiv:cond-mat/0701150},
  year   = {2007}
}

备注

11 figures in 13 files; minor changes after printing proofs