High-field critical current density enhancement in GdBCO coated conductors by cooperative defects

Author:

Huang DaxingORCID,Chen Di,Dong Hao,Wang Kai,Chu Wei-Kan,Wang Tongxin,Wang Meiqi,Zhu Kaigui,Gu Hongwei,Ren Zhifeng,Ding FazhuORCID

Abstract

Abstract Irradiation can precisely control defects in, and improve the superconducting properties of, REBa2Cu3O7−δ (REBCO, RE: rare earth) coated conductors (CCs). Here we report an effective approach for enhancing the in-field performance of GdBCO CCs. The critical current density (J c) of GdBCO films was significantly improved through cooperative defects created by co-irradiation with O ions and protons, especially at low temperatures and high magnetic fields. Surprisingly, the in-field J c of commercial CCs can be nearly doubled. The cooperative irradiation-induced defects are uniformly distributed throughout the GdBCO layer, which promotes the overall performance of the CC. Moreover, the dimensions of these irradiation-induced defects closely match the coherence length of REBCO. This simple and efficient method is a practical post-production solution to improve the in-field performance of commercial REBCO CCs.

Funder

the Dalian National Laboratory for Clean Energy (DNL), Chinese Academy of Sciences (CAS); DNL Cooperation Fund, CAS

Beijing Natural Science Foundation

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

National Key R&D Program of China

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Condensed Matter Physics,Ceramics and Composites

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