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Thin Film Deposition and Transport in 2223 Bi‐Sr‐Ca‐Cu‐O

Published online by Cambridge University Press:  28 February 2011

J.T. Kucera
Affiliation:
Center for Materials Science and Engineering, MIT, Cambridge, MA 02139.
D.G. Steel
Affiliation:
Center for Materials Science and Engineering, MIT, Cambridge, MA 02139.
D.W. Face
Affiliation:
Present address ‐ Central R. & D., DuPont, Wilmington, DE 19898
J.M. Graybeal
Affiliation:
Center for Materials Science and Engineering, MIT, Cambridge, MA 02139.
T.P. Orlando
Affiliation:
Center for Materials Science and Engineering, MIT, Cambridge, MA 02139.
D.A. Rudman
Affiliation:
Center for Materials Science and Engineering, MIT, Cambridge, MA 02139.
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Abstract

We have reproducibly prepared thin films of Bi‐Sr‐Ca‐Cu‐O with Tc ≥ 105K. Depositions were done at ambient temperature with a subsequent post‐deposition anneal, and did not include lead substitution. X‐ray diffraction data indicates a majority fraction of the 2223 phase. These films possess very large grains of the order of 20‐30 u.m in size. Post‐deposition annealing conditions are a sensitive function of composition. Detailed transport measurements as a function of temperature and magnetic field have been obtained.

Type
Research Article
Copyright
Copyright © Materials Research Society 1990

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References

1 Face, D.W., Neal, M.J., Matthiesen, M.M., Kucera, J.T., Crain, J., Graybeal, J.M., Orlando, T.P., and Rudman, D.A., Appl. Phys. Lett. 53, 246, (1988).Google Scholar
2 Face, D.W., Kucera, J.T., Matthiesen, M.M., Steel, D., Somer, G., Lewis, J., Graybeal, J.M., Orlando, T.P., and Rudman, D.A., IEEE Trans. Magn. MAG‐25. 2341 (1989).Google Scholar
3 Face, D.W., Kucera, J.T., Steel, D.G., Graybeal, J.M., Orlando, T.P., and Rudman, D.A., to be published, Physica C, 1990.Google Scholar
4 Kucera, J.T., Steel, D.G., Face, D.W., Graybeal, J.M., Orlando, T.P., and Rudman, D.A., to be published, Physica C, 1990.Google Scholar