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An all-field-range description of the critical current density in superconducting YBCO films

journal contribution
posted on 2024-11-16, 08:25 authored by Igor Golovchanskiy, Oleksiy PanOleksiy Pan, Olga Shcherbakova, Sergey Fedoseev, Shi DouShi Dou
A new critical current density (Jc) model for high-quality YBCO (YBa2Cu3O7) thin films has been proposed, combining thermally activated flux creep with a vortex pinning potential for columnar defects. The pinning for thermally activated vortices has been described as strong pinning on chains of individual edge dislocations that form low-angle domain boundaries in high-quality YBCO thin films. The model yields an adequate description of the Jc behaviour over the whole applied field range, as verified by direct measurements of Jc in YBCO thin films grown by pulsed-laser deposition. It also indicates that the effective pinning landscape changes under the influence of the external conditions. Remarkably, the pinning potential obtained from the model is consistent with the values obtained for columnar defects, which confirms the validity of the overall approach.

Funding

Current limiting mechanisms in magnesium diboride superconductors

Australian Research Council

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History

Citation

Golovchanskiy, I. V., Pan, A. V., Shcherbakova, O. V., Fedoseev, S. A. and Dou, S. X. (2011). An all-field-range description of the critical current density in superconducting YBCO films. Superconductor Science and Technology, 24 (10), 105020-105024.

Journal title

Superconductor Science and Technology

Volume

24

Issue

10

Pagination

105020-105024

Language

English

RIS ID

54311

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