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High current superconductivity in FeSe 0.5 Te 0.5-coated conductors at 30 tesla

  • Weidong Si
  • , Su Jung Han
  • , Xiaoya Shi
  • , Steven N. Ehrlich
  • , J. Jaroszynski
  • , Amit Goyal
  • , Qiang Li
  • Brookhaven National Laboratory Condensed Matter Physics and Materials Science Department
  • Brookhaven National Laboratory
  • Florida State University
  • Oak Ridge National Laboratory

Research output: Contribution to journalArticlepeer-review

224 Scopus citations

Abstract

Although high-temperature superconductor cuprates have been discovered for more than 25 years, superconductors for high-field application are still based on low-temperature superconductors, such as Nb 3 Sn. The high anisotropies, brittle textures and high manufacturing costs limit the applicability of the cuprates. Here we demonstrate that the iron superconductors, without most of the drawbacks of the cuprates, have a superior high-field performance over low-temperature superconductors at 4.2 K. With a CeO 2 buffer, critical current densities >10 6 A cm-2 were observed in iron-chalcogenide FeSe 0.5 Te 0.5 films grown on single-crystalline and coated conductor substrates. These films are capable of carrying critical current densities exceeding 10 5 A cm-2 under 30 tesla magnetic fields, which are much higher than those of low-temperature superconductors. High critical current densities, low magnetic field anisotropies and relatively strong grain coupling make iron-chalcogenide-coated conductors particularly attractive for high-field applications at liquid helium temperatures.

Original languageEnglish
Article number1347
JournalNature Communications
Volume4
DOIs
StatePublished - 2013

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