JOURNAL ARTICLE

Laser drilling: enhancing superconducting joint of GdBa2Cu3O7 −δcoated conductors

Y J ParkM W LeeY. K. OhH G Lee

Year: 2014 Journal:   Superconductor Science and Technology Vol: 27 (8)Pages: 085008-085008   Publisher: IOP Publishing

Abstract

While GdBa2Cu3O7 − δ (GdBCO) coated conductors (CCs) have been proposed for superconducting applications, they have not been used in devices with persistent current mode (PCM) operation because of a lack of joining techniques. A superconducting joint of CCs, formed via melting diffusion and oxygenation annealing, offers no electrical resistance between the CCs, thus establishing a superconducting closed loop for PCM operation. Because superconductivity degrades with oxygen out-diffusion during melting diffusion, oxygenation annealing allows oxygen diffusion into the GdBCO lattices. As effective oxygenation annealing requires oxygen pathways in the joint, low solubility and diffusivity of oxygen in the buffer and CC substrate hinder full superconductivity recovery. Here we show a laser-drilling technique to produce microholes as conduits on the surfaces of GdBCO CCs' to promote oxygen in-diffusion, which resulted in reduced superconductivity recovery time. Superconductivity was fully recovered after laser drilling, melting diffusion at 850 °C for 1 min, and oxygenation annealing at 500 °C for 350 h.

Keywords:
Materials science Superconductivity Annealing (glass) Oxygen Electrical conductor Thermal diffusivity Diffusion Condensed matter physics Composite material Thermodynamics Chemistry

Metrics

51
Cited By
1.42
FWCI (Field Weighted Citation Impact)
43
Refs
0.85
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Physics of Superconductivity and Magnetism
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics
Electronic and Structural Properties of Oxides
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Condensed Matter Physics
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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