Ключевые слова: HTS, REBCO, coated conductors, fabrication, MOCVD process, X-ray diffraction, pinning centers artificial, reel-to-reel process
Selvamanickam V., Galstyan E., Jaroszynski J., Abraimov D., Majkic G., Kar S., Kochat M., Pratap R., Paidpilli M., Goel C.
Ключевые слова: HTS, NdBCO, doping effect, heat treatment, thermal stability, thin films, substrate single crystal, buffer layers, YBCO, seeding technique, SmBCO, MOCVD process, X-ray diffraction, fabrication
Selvamanickam V., Galstyan E., Jaroszynski J., Abraimov D., Majkic G., Kar S., Luo W., Sandra J.S., Yerraguravagari V.
Ключевые слова: HTS, GdYBCO, MOCVD process, coated conductors, coils, flexibility, former, Cu-based conductors, bending radius, uniformity, critical current, current density, distribution, trapped field distribution, fabrication, critical caracteristics, current-voltage characteristics, magnetic field dependence, Jc/B curves, experimental results
Ключевые слова: texture, HTS, GdYBCO, coated conductors, MOCVD process, fabrication, deposition setup, new, critical caracteristics, critical current, critical temperature, X-ray diffraction
Ключевые слова: HTS, REBCO, coated conductors, mechanical properties, tensile tests, strain effects, GdBCO, RCE-CDR process, MOCVD process, MOD process, substrate Hastelloy, substrate Ni-W, substrate stainless steel, IBAD process, RABITS process, comparison, transverse stress, critical caracteristics, critical current, n-value, recovery characteristics, degradation studies, stabilizing layers, brass laminate, experimental results, electromechanical analysis
Ключевые слова: measurement setup, magnetometer, vibration, critical caracteristics, critical current density, temperature dependence, magnetic field dependence, self-field effect, pinning force, experimental results, HTS, coated conductors, films thick, thickness dependence, doping effect, composition, MOCVD process, YGdBCO, in-field performance
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