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Effects of oxygen stoichiometry on the scaling behaviors of YBa2Cu3O(x) grain boundary weak-linksThe effects of oxygen stoichiometry on the transport properties of the pulsed laser deposited YBa2Cu3O(x) bicrystalline grain boundary weak-link junctions were studied. It is found that not only the cross boundary resistive transition foot structure can be manipulated repeatedly with oxygen annealing processes but the junction behaviors are also altered in accordance. In the fully oxygenated state i.e with x = 7.0 in YBa2Cu3O(x) stoichiometry, the junction critical current exhibits a power of 2 scaling behavior with temperature. In contrast, when annealed in the conditions of oxygen-deficient state (e.g with x = 6.9 in YBa2Cu3O(x) stoichiometry) the junction critical current switches to a linear temperature dependence behavior. The results are tentatively attributed to the modification of the structure in the boundary area upon oxygen annealing, which, in turn, will affect the effective dimension of the geometrically constrained weak-link bridges. The detailed discussion on the responsible physical mechanisms as well as the implications of the present results on device applications will be given.
Document ID
19960000305
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Wu, K. H.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Fu, C. M.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Jeng, W. J.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Juang, J. Y.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Uen, T. M.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Gou, Y. S.
(National Chiao Tung Univ. Hsinchu, Taiwan)
Date Acquired
September 6, 2013
Publication Date
April 1, 1995
Publication Information
Publication: NASA. Johnson Space Center, Proceedings of the 4th International Conference and Exhibition: World Congress on Superconductivity, Volume 2
Subject Category
Solid-State Physics
Accession Number
96N10305
Funding Number(s)
CONTRACT_GRANT: NSC83-0212-M009-022
CONTRACT_GRANT: NSC82-0212-M009-002
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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