TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan)
Online ISSN : 1880-0408
Print ISSN : 0389-2441
ISSN-L : 0389-2441
Originals
Angular Dependence of Electric Field vs. Current Density Characteristics in YBa2Cu3Oy Superconductlng Thin Film with Columnar Defects
Takanori FUJIYOSHITetsuro SUEYOSHIMasakazu HARUTAKenji YONEKURATomoaki IKEGAMINorito ISHIKAWASatoshi AWAJIKazuo WATANABE
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2009 Volume 44 Issue 12 Pages 517-522

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Abstract
The effects of columnar defects on the critical current density (Jc) and electric (E) vs. current density (J) characteristics were investigated for a YBa2Cu3Oy thin film prepared using a pulsed-laser deposition method. The YBa2Cu3Oy thin film was irradiated with 200 MeV Au ions from a direction θ=8.8°off the c-axis. Two peaks in the angular dependence of Jc were observed at the angles of θ=8.8°and θ=90°. These angles correspond to the directions of the columnar defect and intrinsic pinning, respectively. The E-J characteristics at various magnetic field angles can be described by the percolation transition model. The value of pinning parameter m increases at the angles of θ=8.8°and θ=90°. This result indicates that the efficiency of flux pinning is enhanced because fluxoids are effectively pinned by the columnar defects and intrinsic pinning or stacking faults in these directions.
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© 2009 by Cryogenics and Superconductivity Society of Japan (Cryogenic Association of Japan)
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