Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
Patent
1992-05-07
1994-03-22
Tung, T.
Superconductor technology: apparatus, material, process
High temperature , per se
Having tc greater than or equal to 150 k
20419224, 427 62, 505731, 505732, 505742, 505782, C23C 1424, C23C 1434
Patent
active
052964558
ABSTRACT:
A compound oxide superconductor represented by the general formula:
REFERENCES:
patent: 4866032 (1989-09-01), Fujimori et al.
patent: 5051398 (1991-09-01), Higaki et al.
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S. A. Shaheen et al., Solid State Communications, vol. 66, No. 9, pp. 947-951, (1988).
M. Hikita et al., "Growth of superconducting single-Crystal Bi-Sr-Ca-Cu-O compounds", Journal of Crystal Growth, vol. 91, No. 3, Aug. 1988, pp. 282-286, Amsterdam, NL.
B. W. Statt et al., "Stabilizing the high-Tc superconductor Bi.sub.2 Sr.sub.2 Ca.sub.2 Cu.sub.3 O.sub.10+x by Pb substitution", PHYSICA C, vol. 156, No. 2, Sep. 1, 1988, pp. 251-255, Amsterdam, NL.
J. H. Kang, et al., "High critical field anisotropy of superconducting Bi-Sr-Ca-Cu oxide from highly oriented thin films" Applied Physics Letters, vol. 52, No. 24, Jun. 13, 1988, pp. 2080-2082, American Institute of Physics, New York, US.
Y. F. Yang et al., "Preparation of superconducting Bi-Ca-Sr-Cu-O thin films of RF magnetron sputtering", IEEE Transactions of Magnetics Applied Superconductivity Conference, Aug. 21, 1988, San Francisco, vol. 25, No. 2, Mar. 1989, pp. 2474-2475, IEEE, New York, US.
J. L. Tallon et al., "High-Tc superconducting phases in the series Bi.sub.2.1 (Ca, Sr).sub.n+1 Cu.sub.n O.sub.2n+4+.epsilon. ", Nature, vol. 333, No. 6169, May 12, 1988, pp. 153-156, Basingstoke GB.
Harada Keizo
Higaki Kenjiro
Itozaki Hideo
Yazu Shuji
Leader William T.
Sumitomo Electric Industries Ltd.
Tung T.
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