English

Theory and experiment testing flux-line-cutting physics

Superconductivity 2011-05-09 v1

Abstract

We discuss predictions of five proposed theories for the critical state of type-II superconductors accounting for both flux cutting and flux transport (depinning). The theories predict different behaviours for the ratio Ey/EzE_y/E_z of the transverse and parallel components of the in-plane electric field produced just above the critical current of a type-II superconducting slab as a function of the angle of an in-plane applied magnetic field. We present experimental results measured using an epitaxially grown YBCO thin film favoring one of the five theories: the extended elliptic critical-state model. We conclude that when the current density J\bm J is neither parallel nor perpendicular to the local magnetic flux density B\bm B, both flux cutting and flux transport occur simultaneously when JJ exceeds the critical current density JcJ_c, indicating an intimate relationship between flux cutting and depinning. We also conclude that the dynamical properties of the superconductor when JJ exceeds JcJ_c depend in detail upon two nonlinear effective resistivities for flux cutting (ρc\rho_c) and flux flow (ρf\rho_f) and their ratio r=ρc/ρfr= \rho_c/\rho_f.

Keywords

Cite

@article{arxiv.1103.1393,
  title  = {Theory and experiment testing flux-line-cutting physics},
  author = {John R. Clem and Marcus Weigand and J. H. Durrell and A. M. Campbell},
  journal= {arXiv preprint arXiv:1103.1393},
  year   = {2011}
}

Comments

19 pages, 12 figures, submitted to Supercond. Sci. Technol

R2 v1 2026-06-21T17:36:17.697Z