By J. Georg Bednorz (auth.), Prof. Kaoru Yamafuji, Dr. Tadataka Morishita (eds.)
The box of high-temperature superconductivity has inspired an inter disciplinary method of learn. It has required major cooperation and collaboration between researchers, every one of whom has dropped at it a wealthy number of event from many different fields. lately, nice advancements were made within the caliber of analysis. the topic has matured and been embarked on the subsequent level in the course of the resonance among technology and know-how. the present growth of fabrics processing and engineering during this box is comparable to that in the past obvious within the improvement of semiconductors. those contain the looks of fabrics taking where of YBa2Cu307 because of their more desirable homes (higher serious temperatures and more suitable flux pin ning) within which infrequent earth ions with huge radii (La, Nd, Sm) alternative for Y; the advance of expertise allowing progress regulate at the nanometer scale; and exact and reproducible measurements that may be used as rigorous checks of theoretical versions, which in flip are anticipated to steer to the boost ment of recent units. For additional development in high-T examine, teachers and c technologists needs to pool their wisdom and event. i am hoping that this quantity will advertise that objective via delivering the reader with the most recent result of high-temperature superconductor examine and may stimulate additional dialogue and collaboration.
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Extra info for Advances in Superconductivity VII: Proceedings of the 7th International Symposium on Superconductivity (ISS’94), November 8–11, 1994, Kitakyushu. Volume 1
1985. pi 9. Okada. K. F. K. to be published 10. C. Rix. C. Luongo. W. Bingham. A Bulc. K. Cooke. D. Lieurance. K. Partain. and S. ' A self-Supporting Superconducting Magnetic Energy System (SMES) Concept'. 1994 II. W. V. Hassenzahl and R. Reed. 'An accessment of Self- (Cold-) Supported SMES Systems'. 1994 12. Conf .. (LI-ll 1992 13. Xu. Conf. 1994 14. D. Lieurance. F. Kimball. and C. Rix. C. ' Design and Cost Studies for Small Scale Superconducting Magnetic Energy Storage (SMES) Systems'. Appl.
Higuchi, N. Sakai, J. Weltz, N. Koshizuka and S. Tanaka: lpn. l. Appl. Phys. 33 (1994) L715. 7. S. I. Yoo, N. Sakai, H. Takaichi, T. Higuchi and M. Murakami: Appl. Phys. Lett. 65 (1994) 633. 8. S. I. Yoo, M. Murakami, N. Sakai, T. Higuchi, and S. Tanaka: lpn. l. Appl. Phys. 33 (1994) L1 000. Wehler Fachbereich Physik, Universitat Wuppertal, 42097 Wuppertal, Germany *Physics Faculty, Moscow State University, 119899 Moscow, Russia ABSTRACT We have studied the I(V)-characteristics of break junctions in Y(Yb)Ba2Cu307-y single crystals.
Because it reduces the force on the conductor without decreasing the average current density of the conductor. while conductor reinforcement method does not. The latter 2 limit lines are therefore connected with the safty of SMES. while the first 2 lines are connected with economy. Therefore for the design of large scale SMES support structure and energy release circuit are the most important issue. and for middle and small scale design high Jc material and stabilization technology become more important.