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Anisotropy of strong pinning in multi-band superconductors

  • C. J. Van Der Beek
  • , M. Konczykowski
  • , R. Prozorov
  • CEA/DSM/IRAMIS
  • Ames Laboratory
  • Iowa State University

Research output: Contribution to journalArticlepeer-review

40 Citations (Scopus)

Abstract

The field-angular dependence and anisotropy of the critical current density in iron-based superconductors is evaluated using a phenomenological approach featuring distinct anisotropy factors for the penetration depth and the coherence length. Both the weak collective pinning limit and the strong pinning limit relevant for iron-based superconductors at low magnetic fields are considered. It is found that in the more anisotropic materials, such as SmFeAsO and NdFeAsO, the field-angular dependence is completely dominated by the coherence length (upper critical field) anisotropy, thereby explaining recent results on the critical current in these materials. In less anisotropic superconductors, strong pinning can lead to an apparent inversion of the anisotropy. Finally, it is shown that, under all circumstances, the ratio of the c-axis and ab-plane critical current densities for the magnetic field along the ab-plane directly yields the coherence length anisotropy factor ε ξ.

Original languageEnglish
Article number084010
JournalSuperconductor Science and Technology
Volume25
Issue number8
DOIs
Publication statusPublished - 1 Aug 2012
Externally publishedYes

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