• DocumentCode
    1526506
  • Title

    Proximity effect current strengths in NbTi multifilamentary samples with and without Nb barriers and processed under various conditions

  • Author

    Sumption, M.D. ; Collings, E.W.

  • Author_Institution
    Ohio State Univ., Columbus, OH, USA
  • Volume
    7
  • Issue
    2
  • fYear
    1997
  • fDate
    6/1/1997 12:00:00 AM
  • Firstpage
    1117
  • Lastpage
    1121
  • Abstract
    Conventional magnetization measurements of proximity effect (PE) coupling in superconducting (S) multifilamentary (MF) strands have been made, and a previously developed technique has been used to quantify the coupling strength in terms of a PE coupling supercurrent, J/sub cn/. This quantity has been determined for a number of MF strand types processed under various conditions. All are NbTi/Cu MF composites in some of which the NbTi filaments were surrounded by Nb "barriers", while in the others they were not. The magnetic field dependence of J/sub cn/ was also explored. The measured differences in J/sub cn/ are attributed to differences in the properties of the filament/matrix (normal metal, N) interface treated as a S1-S2-N trilayer. These results, together with those of an earlier series of experiments confirm that PE coupling between the filament and the matrix, and hence the normal-state coherence length, /spl xi//sub N/, is enhanced by the presence of a Nb (S2) barrier; and furthermore that the field-dependent coupling strength, gauged in terms of J/sub cn/ or /spl xi//sub N/, depends on the thickness of that barrier. It is demonstrated that magnetic PE-coupling studies not only provide a technique for extracting /spl xi//sub N/, a quantity central to artificial pinning center (APC) design, but also may help in the investigation of S-N boundary conditions in the clean limit.
  • Keywords
    coherence length; critical current density (superconductivity); flux pinning; magnetisation; multifilamentary superconductors; niobium; niobium alloys; proximity effect (superconductivity); titanium alloys; type II superconductors; Nb barriers; NbTi multifilamentary samples; NbTi-Cu; NbTi/Cu superconducting multifilamentary composites; S-N boundary conditions; S1-S2-N trilayer; artificial pinning center; clean limit; coupling supercurrent; field-dependent coupling strength; magnetic field dependence; magnetization; normal-state coherence length; proximity effect current strengths; Boundary conditions; Equations; Multifilamentary superconductors; Niobium compounds; Pins; Pollution measurement; Proximity effect; Superconducting magnets; Temperature measurement; Titanium compounds;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/77.620687
  • Filename
    620687