High critical currents in heavily doped (Gd,Y)Ba2Cu3Ox superconductor tapes

Abstract

REBa2Cu3Ox ((REBCO), RE = rare earth) superconductor tapes with moderate levels of dopants have been optimized for high critical current density in low magnetic fields at 77 K, but they do not exhibit exemplary performance in conditions of interest for practical applications, i.e., temperatures less than 50 K and fields of 2–30 T. Heavy doping of REBCO tapes has been avoided by researchers thus far due to deterioration in properties. Here, we report achievement of critical current densities (Jc) above 20 MA/cm2 at 30 K, 3 T in heavily doped (25 mol. % Zr-added) (Gd,Y)Ba2Cu3Ox superconductor tapes, which is more than three times higher than the Jc typically obtained in moderately doped tapes. Pinning force levels above 1000 GN/m3 have also been attained at 20 K. A composition map of lift factor in Jc (ratio of Jc at 30 K, 3 T to the Jc at 77 K, 0 T) has been developed which reveals the optimum film composition to obtain lift factors above six, which is thrice the typical value. A highly c-axis aligned BaZrO3 (BZO) nanocolumn defect density of nearly 7 × 1011 cm−2 as well as 2–3 nm sized particles rich in Cu and Zr have been found in the high Jc films.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jan 19, 2015
Source ID
10.1063/1.4906205

Entities

People

  • Aixia Xu
  • C. Cantoni
  • Eduard Galstyan
  • L. Delgado
  • M. Heydari Gharahcheshmeh
  • V. Selvamanickam

Organizations

  • ARPA-E
  • Oak Ridge National Laboratory
  • Office of Naval Research
  • United States Department of Energy
  • University of Houston

Tags

Fields of Study

  • Physics

Readers

  • Mathematics or Statistics
  • Superconducting Magnet Technology

Technology Areas

  • Directed Energy
  • Directed Energy - Pulsed-Laser Deposition