By J. M. Rowell (auth.), Prof. Dr. Hisao Hayakawa, Dr. Youichi Enomoto (eds.)
Since the invention of superconductivity with trans1tton temperatures above seventy seven okay, focused examine actions towards the exploration of sensible applica tions of those fabrics were conducted. presently, a impressive enhance ment in superconducting houses has been completed as a result wonderful optimization of fabrication methods, and this has attracted commercial curiosity for destiny functions. on the subject of NdBa Cu zero fabrics, a brand new pinning mecha 2 three 7 nism was once came upon which reinforces the severe present lower than utilized magnetic fields. In unmarried crystals of those fabrics, oxygen keep watch over ends up in a rise within the development fee. The metalorganic chemical vapor deposition (MOCVD) movie caliber has been more suitable by utilizing a brand new liquid uncooked fabric. at the same time, actual calls for from the perspective of the industry begin to be a motivation strength, es pecially in electronics program the place a few items are already being offered. while, attention-grabbing actual properlies were acquired from a brand new superconducting unmarried crystal which has a layered perovskite constitution with no copper. furthermore, numerous precision dimension concepts have proven the d-wave mechanism and the life of intrinsicJosephson junctions in unmarried crystals. those new phenomena problem the present theoretical versions but in addition open the way in which for brand new functions. those major parts of growth in fabrics technological know-how have led high-Tc tremendous conductivity study into the subsequent section of task, whereas primary learn remains to be extremely important. I clearly wish that this quantity will provide additional impetus to this development.
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Extra info for Advances in Superconductivity VIII: Proceedings of the 8th International Symposium on Superconductivity (ISS’95), October 30–November 2, 1995, Hamamatsu
Non-Destructive Void Detection in Watermelon K. SAlTO, T. MIKI, s. HAYASHI, M. SHIMADA, H. KAJIKAWA, R. ÜGAWA, Y. KAWATE, T. NISHIZAWA, D. IKEGAYA, N. KIMURA, N. SuGIURA, M. SuzuKI . . . . . . . . . . . . . . . . . . . . . . . . . . . M. ROWELL 102 Exeter Drive, Berkeley Heights, New Jersey 07922 ABSTRACT The high Tc superconductors (HTS) arealready being utilized in some electronics products, and other products are anticipated in the next year or two. This has been made possible, in every c::tse, by dramatic irrtprovements in the performance of HTS thin films and devices.
BAN, K. HAYASHI, M. ÜHTSUKA, K. SuzuKI, Y. ENOMOTO. . . . . . . . . . . . . . . . . . . . . . . . . . 1183 HTS Multipole Bandpass Filters with Arbitrary Parallel Coupled-Line Length J. Y. K. HAN, D. AHN . . . . . . . . . . . . . . 4 Other Superconducting Devices Vortex Flow Transistors with Nano-Structures A. FunMAKI, M. KusuNOKI, M. Kuo, S. YosHIDA, H. ANDOH, H. HAYAKAWA....................................... 1193 An Integrated Space Experiment Demonstrating HTS Digital Circuits A.
1221 Properties of Superconducting Plasmas T. ÜHNUMA, K. SATO, 0. PAUL................................... 1225 Confinement of Discharge Plasma with High-Tc Bulk Superconductor Tubes (Supertrons) Y. MIZUTANI, J. ISHIKAWA, H. MATSUZAWA...................... . 1229 XIV Diffusion of Self-Magnetic Fields of Electron Beams Through High-Tc Bulk Superconductor Leuses (Supertrons) A. MATSUSHITA, Y. HAYASHI, H. MATSUZAWA....................... C. HAN, s. AWAJI, K. WATANABE, N. KOBAYASHI.................