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Handbook of High -Temperature Superconductivity

Handbook of High -Temperature Superconductivity
Author: J. Robert Schrieffer
Publisher: Springer Science & Business Media
Total Pages: 627
Release: 2007-03-20
Genre: Technology & Engineering
ISBN: 0387687343

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Since the 1980s, a general theme in the study of high-temperature superconductors has been to test the BCS theory and its predictions against new data. At the same time, this process has engendered new physics, new materials, and new theoretical frameworks. Remarkable advances have occurred in sample quality and in single crystals, in hole and electron doping in the development of sister compounds with lower transition temperatures, and in instruments to probe structure and dynamics. Handbook of High-Temperature Superconductvity is a comprehensive and in-depth treatment of both experimental and theoretical methodologies by the the world's top leaders in the field. The Editor, Nobel Laureate J. Robert Schrieffer, and Associate Editor James S. Brooks, have produced a unified, coherent work providing a global view of high-temperature superconductivity covering the materials, the relationships with heavy-fermion and organic systems, and the many formidable challenges that remain.


Studies of High Temperature Superconductors

Studies of High Temperature Superconductors
Author: A. V. Narlikar
Publisher: Nova Publishers
Total Pages: 348
Release: 2006
Genre: Science
ISBN: 9781594549601

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This Golden Jubilee volume in the world's foremost series on superconductivity covers wide-ranging topics capturing the current excitement in the field. The broad areas include the advancement of high Tc theory, materials depicting unusual characteristics, materials' processing and defect structures for improved properties, their electromagnetic response, flux pinning, Josephson junctions and devices, and large scale applications.


Vortex Physics and Flux Pinning

Vortex Physics and Flux Pinning
Author: A. V. Narlikar
Publisher: Nova Publishers
Total Pages: 296
Release: 2005
Genre: Flux pinning
ISBN: 9781594543043

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Studies of High Temperature Superconductors, Volume 48 - Vortex Physics & Flux Pinning


Studies of High Temperature Superconductors

Studies of High Temperature Superconductors
Author: Anant Narlikar
Publisher: Nova Publishers
Total Pages: 266
Release: 1999
Genre: Science
ISBN: 9781560727354

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Studies Of High Temperature Superconductors Volume 29 -- Advances In Research & Applications


Studies of High Temperature Superconductors

Studies of High Temperature Superconductors
Author: A. V. Narlikar
Publisher: Nova Science Publishers
Total Pages: 428
Release: 1990
Genre: Science
ISBN:

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CONTENTS: Weak Coupling Theory of High Temperature Superconductors; Investigations of a Few Novel Series of Thallium Cuprate Superconductors Showing Possible Change in the Sign of Charge Carriers with Composition; Some Structural & Chemical Aspects of the Bi-Pb-Sr-Ca-Cu-O System; High Magnetic Field Studies of High Temperature Superconductors; Fabrication of Bi-Sr-Ca-Cu Oxide Superconductors with Controlled Numbers of Cu-0 Layers; Characterization of High Temperature Superconductors by High Excitation Spectroscopies; Mossbauer Spectroscopy of High Temperature Superconductors; RVB & Related Theories of HTSC; Fabrication of 107k Superconducting Films & Their Normal State Transport Properties; Ion Beam Analysis of High T Superconductors; Thermal Conductivity of High Temperature Superconductor; A New Theoretical Approach to Electron Pairing And Uperconductivity in High T Superconductors; High Resolution Polarized X-Ray Absorption Spectroscopy: Symmetry of the Hole States in High-T Superconductors; Phase Diagrams in the Y-Ba-Cu-O System & Crystal Growth of Ybco Superconductors; Index.


High-Temperature Superconductors: Materials, Properties, and Applications

High-Temperature Superconductors: Materials, Properties, and Applications
Author: Rainer Wesche
Publisher: Springer Science & Business Media
Total Pages: 448
Release: 2013-11-27
Genre: Technology & Engineering
ISBN: 1461550750

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The discovery by J. G. Bednorz and K. A. Mtllier in 1986 that the superconducting state can exist in oxides at temperatures above 30 K stimulated research in the field of superconductivity and opened up a new field of research. Within a few years a large number of cuprate superconductors with transition temperatures well above the boiling point of liquid nitrogen have been found. The possibility of using liquid nitrogen as coolant re-stimulated interest in power applications of supercon ductivity. In this book an overview of the known high-Te superconductors and their physical properties is presented. Aspects related to conductor fabrication and high-current applications are emphasised. The material should be suitable for use in graduate level courses on superconductivity. Researchers in the field may profit from the large number of tables and references describing its status at the end of 1997. An introduction to high-To superconductivity must be based on the fundamental physical principles of normal-state electrical conductivity and the well-known characteristics of conventional superconductors. In Chapter 2 this background is provided. Crystal structures, anisotropic properties and general trends of the critical temperatures of the cuprate superconductors are described in Chapters 3 and 4. The processing of superconductor powders addressed in Chapter 5 affects considerably the current-carrying capacity of high-T. wires. In Chapter 6 several fabrication techniques for superconducting wires are described. In addition, the factors limiting the transport critical currents ofhigh-Te wires are discussed.


Physical Properties Of High Temperature Superconductors Ii

Physical Properties Of High Temperature Superconductors Ii
Author: Donald M Ginsberg
Publisher: World Scientific
Total Pages: 718
Release: 1990-02-01
Genre: Science
ISBN: 9814507059

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Since the publication of Physical Properties of High Temperature Superconductors I, research in the field of high temperature superconductivity has continued at a rapid pace. Volume II will contain chapters on some of the major areas of activity which were not covered extensively in Volume I: structure, microstructure, thermodynamics, oxygen stoichiometry effects, nuclear magnetic and quadrupole resonance, Hall effect, electronic structure, and the pairing state. Like Volume I, it will present authoritative and comprehensive reviews written by recognized experts in the field. This book should be useful to all students, scientists, and engineers who desire to know more about high temperature superconductivity.


Physics and Materials Science of High Temperature Superconductors, II

Physics and Materials Science of High Temperature Superconductors, II
Author: R. Kossowsky
Publisher: Springer
Total Pages: 0
Release: 2013-10-05
Genre: Science
ISBN: 9789401050869

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Physics and Materials Science of High Temperature Superconductors, II represents the results of a fruitful dialogue between physicists and materials scientists which took place under the auspices of a NATO Advanced Study Institute in Porto Carras, Greece, between 18 and 31 August, 1991. It builds on and carries forward the success of NATO ASI 181 published in 1990. The theoretical side of the discussions reveal the basic premise of the phenomenological and Ginzburg-Landau theories of superconductivity, the implications of short coherence length, long penetration depth, the melting of flux lattices, and other matters, while the materials science includes discussions of microstructures, local inhomogeneities, deviations from ideal chemistry, the effects of systematic errors in materials preparation, the definition of imperfections, and the utilization of common materials analysis techniques. The reader will be made aware of the potential significance of Angstrom scale structural and chemical details, and the need to consider basic theoretical concepts when designing procedures to process viable, solid conductors, specifically the effects of oxygen stoichiometry and deviations from it, as well as the microstructural demands on pinning in the light of very short coherence lengths.