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Enhanced flux pinning in YBCO multilayer films with BCO nanodots and segmented BZO nanorods.


ABSTRACT: The flux pinning properties of the high temperature superconductor YBa2Cu3O7-δ (YBCO) have been conventionally improved by creating both columnar and dot-like pinning centres into the YBCO matrix. To study the effects of differently doped multilayer structures on pinning, several samples consisting of a multiple number of individually BaZrO3 (BZO) and BaCeO3 (BCO) doped YBCO layers were fabricated. In the YBCO matrix, BZO forms columnar and BCO dot-like defects. The multilayer structure improves pinning capability throughout the whole angular range, giving rise to a high critical current density, J c. However, the BZO doped monolayer reference still has the most isotropic J c. Even though BZO forms nanorods, in this work the samples with multiple thin layers do not exhibit a c axis peak in the angular dependence of J c. The angular dependencies and the approximately correct magnitude of J c were also verified using a molecular dynamics simulation.

SUBMITTER: Malmivirta M 

PROVIDER: S-EPMC5665862 | biostudies-literature | 2017 Oct

REPOSITORIES: biostudies-literature

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Enhanced flux pinning in YBCO multilayer films with BCO nanodots and segmented BZO nanorods.

Malmivirta Mika M   Rijckaert Hannes H   Paasonen Ville V   Huhtinen Hannu H   Hynninen Teemu T   Jha Rajveer R   Awana Veerpal Singh VS   Van Driessche Isabel I   Paturi Petriina P  

Scientific reports 20171031 1


The flux pinning properties of the high temperature superconductor YBa<sub>2</sub>Cu<sub>3</sub>O<sub>7-δ</sub> (YBCO) have been conventionally improved by creating both columnar and dot-like pinning centres into the YBCO matrix. To study the effects of differently doped multilayer structures on pinning, several samples consisting of a multiple number of individually BaZrO<sub>3</sub> (BZO) and BaCeO<sub>3</sub> (BCO) doped YBCO layers were fabricated. In the YBCO matrix, BZO forms columnar and  ...[more]

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