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01.General Theory of Superconductivity
02.New Research on YBCO Superconductors
03.Magnetism and Superconductivity in Low-Dimensional Systems: Utilization in Future Applications
04.Flux Pinning and AC loss Studies on YBCO Coated Conductors
05.Magnesium Diboride (MgB2) Superconductor Research
06.Superconductivity Research Developments
07.Vortex Physics and Flux Pinning, Studies of High Temperatures Superconductors, Volume 48
08.Magnetic Mechanism of Superconductivity in Copper Oxide
09.Studies in High Temperature Superconductors, Volume 50 - Golden Jubilee
10.Superconducting Cuprates: Properties, Preparation and Applications
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Superconductivity Research Developments
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Editors: James R. Tobin
Book Description:
In this book, the authors examine developments in superconductivity research. The book includes chapters on three phenomena related to the magnetic properties of 2D-JJA; a review of existing literature on superconducting noble metal diboride and indications for future directions of research; an examination of the unusual properties that copper oxide superconductors possesses due to their complicated interplay of electronic, spin and lattice degrees of future; a short review on the recent progress in copper oxide superconductors; an analysis of a new class of (Bi, Pb) - 2212 based superconductors with highly enhanced superconducting properties; and novel approaches that describe stability and quench HTS devices - useful for any researchers and designers of modern HTS devices from both first and second generation HTS. (NOVA)

Table of Contents:

Chapter 1 - Optimization of Critical Current Density in MgB2;
pp. 1-26
(S.K. Chen, J.L. MacManus-Driscoll, Dept. of Materials Science and Metallurgy, Univ. of Cambridge, UK)

Chapter 2 - Magnetic Properties of Artificially Prepared Highly Ordered Two-Dimensional Shunted and Unshunted Nb-AlOx-Nb Josephson Junctions Arrays; pp. 27-62
(Fernando M. Araujo-Moreira, Dept. of Physics and Physical Engineering-UFSCar, Laboratory of Materials and Devices, Multidisciplinary Center for the Development of Ceramic Materials, Brazil, Sergei Sergeenkov, Bogoliubov Laboratory of Theoretical Physics, Joint Institute for Nuclear Research, Dubna, Moscow Region, Russian Federation)

Chapter 3 - Superconducting Noble Metal Diboride; pp. 63-92
(A.K.M.A. Islam, F. Parvin, Dept. of Physics, Rajshahi Univ., Rajshahi, Bangladesh)

Chapter 4 - Perspectives of Superconducting Temperature Increase in HTSC Copper Oxides; pp. 93-123
(Svetlana G. Titova, John T.S. Irvine, State Institute of Metallurgy Ural Division of Russian Academy of Sciences)

Chapter 5 - Effect of Apical Oxygen Ordering on Tc of Cuprate Superconductors; pp. 125-148
(H. Yang, Q.Q. Liu, F.Y. Li, Laboratory for Extreme Condition Physics, Beijing National Laboratroy for Condensed Matter Physics, Institute of Physics, P.R. China)

Chapter 6 - Pairing Correlations in Copper Oxide Superconductors; pp. 149-166
(Rongchao Ma, Dept. of Physics, Univ. of Alberta, Edmonton, Alberta, Canada, Yuefei Ma, Xiamen Tungsten Co., Ltd, Haicang, Fujian, P.R. China)

Chapter 7 - Single Intrinsic Josephson Junction Fabricated From Mathrm Bi_2Sr_2CaCu_2O_(8+) (_x) Single Crystals; pp. 167-185
(L.X. You, A. Yurgens, D. Winkler, Quantum Device Physics Laboratory, Dept. of Microtechnology and Nanoscience, Chalmers Univ. of Technology, Goteborg, Sweden)

Chapter 8 - Rare Earth Modified (Bi,Pb)-2212 Superconductors;
pp. 187-222
(A. Biju, U. Syamaprasad, National Institute for Interdisciplinary Science and Technology, Trivandrum, India)

Chapter 9 - Novel Approaches to Describe Stability and Quench of HTS Devices; pp. 223-239
(V.S. Vysotsky, Russian Scientific R&D Cable Institute, Shosse Entuziastov, Moscow, Russia, A.L. Rakhmanov, Institute Theoretical and Applied Electrodynamics, Moscow, Russia, Yu. A. Ilyin, Twente Univ., Enschede, The Netherlands)


   Binding: Hardcover
   Pub. Date: 2008
   ISBN: 1-60021-848-2
   Status: AV
Status Code Description
AN Announcing
FM Formatting
PP Page Proofs
FP Final Production
EP Editorial Production
PR At Prepress
AP At Press
AV Available
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Superconductivity Research Developments