By A. M. Campbell (auth.), Prof. Dr. Hisao Hayakawa, Dr. Naoki Koshizuka (eds.)
Five years have handed because the leap forward within the serious temperature for superconductors. in this interval, many superconducting fabrics were came upon and constructed, and our wisdom of the actual and different houses of oxide superconductors has deepened via large and extensive examine. this information has complex superconductivity technological know-how and know-how from the preliminary wondering level to a extra built yet nonetheless doubtful moment level the place learn job in superconductivity now overlaps with fields of software. as a rule talking, technology resonates with know-how. technology not just enhances but in addition competes with or stimulates know-how. New medical wisdom has prompted the second one technological examine level. a lot development has been made within the improvement of useful units, encouraging the applying of superconductors in components comparable to human levitation, a excessive pace levitated bearing, huge present reworking leads, and excessive frequency units. This technological development has elevated our figuring out of the technology concerned, akin to flux pinning and dynamics, and anomalous long-range superconducting interactions. At this crucial level, foreign cooperation and collaborative initiatives can successfully maintain competitive learn and improvement as a way to increase superconductivity to the following phases. The ISS Symposium is predicted to function a venue for expanding our wisdom of superconductivity and for changing visions for destiny examine and purposes, during the presentation and discus of the newest learn effects. those lawsuits additionally objective to summarize sion annual growth in high-Tc superconductivity in all fields.
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Extra info for Advances in Superconductivity IV: Proceedings of the 4th International Symposium on Superconductivity (ISS ’91), October 14–17, 1991, Tokyo
Fickett FR (1979) Cryogenics 19: 691-701 14. Meulenberg Jr. A, Private communication Microstructural Issues Concerning the Critical Current Properties of High Temperature Superconductors DAVID C. LARBALESTIER Applied Superconductivity Center and Department of Materials Science and Engineering University of Wisconsin, Madison, WI 53706, USA ABSTRACT Principal tasks in the development of a reliable HTS magnet technology are the control or elimination of weak links, the increase of the flux pinning strength so that high critical current density is possible without significant flux creep and the engineering of these attributes into an appropriate conductor form.
A. Space Applications of High-Temperature Superconductors VERNON O. HEINEN l , MARTIN M. SOKOLOSKI 2 , PAUL EDWIN G. WINTUCKyl, and DENIS J. CONNOLL yl 1 2 R. ARON 1, KUL B. BHASIN l , National Aeronautics and Space Administration, Lewis Research Center, Cleveland, OH 44135, USA Washington, DC 20546, USA ABSTRACf The application of superconducting technology in space has been limited by the requirement of cooling to near liquid helium temperatures. The only means of attaining these temperatures has been with cryogenic fluids which severely limits mission lifetime.
Experiments with dopants confirm the connection between the reversibility line and low dimensionality. Figure 9 shows results on YBCO doped with Cobalt 9 and with Zinc, plotted as a function of Trrc (21). It can be seen that the Cobalt has a far greater effect than the Zinc. In resistive measurements Cobalt greatly increases the fluctuation effects on the resistivity which are normally associated with a two dimensional structure, and the same effect is seen in specific heat measurements. We can attribute all these effects to the hypothesis that Co decouples planes but Zn does not In YBCO the very thin films made by Schauer et.
Advances in Superconductivity IV: Proceedings of the 4th International Symposium on Superconductivity (ISS ’91), October 14–17, 1991, Tokyo by A. M. Campbell (auth.), Prof. Dr. Hisao Hayakawa, Dr. Naoki Koshizuka (eds.)