High-Temperature Superconductors
Autor Rainer Wescheen Limba Engleză Paperback – 12 sep 2014
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Specificații
ISBN-13: 9781461373087
ISBN-10: 1461373085
Pagini: 456
Ilustrații: XV, 437 p.
Dimensiuni: 156 x 234 x 23 mm
Greutate: 0.64 kg
Ediția:1998 edition
Editura: Springer Nature B.V.
Locul publicării:New York, NY, United States
ISBN-10: 1461373085
Pagini: 456
Ilustrații: XV, 437 p.
Dimensiuni: 156 x 234 x 23 mm
Greutate: 0.64 kg
Ediția:1998 edition
Editura: Springer Nature B.V.
Locul publicării:New York, NY, United States
Public țintă
ResearchCuprins
1. Introduction.- 2. The Superconducting State.- 2.1 The Electrical Resistivity.- 2.2 Characteristic Properties of the Superconducting State.- 2.3 Conventional Superconductors.- 2.4 Tunnelling Effects.- 2.5 The Electrodynamics of Superconductors.- 2.6 The Thermodynamics of Superconductors.- 2.7 Type II Superconductors.- 3. A Survey of Superconducting Cuprates.- 3.1 Major Families of Superconducting Cuprates.- 3.2 Crystal Structures.- 3.3 Critical Temperatures.- 3.4 Summary.- 4. Physical Properties of High-Tc Superconductors.- 4.1 Introduction.- 4.2 Superconducting Properties.- 4.3 Grain Boundary Weak Links.- 4.4 Flux Pinning.- 4.5 Transport Properties.- 4.6 Specific Heat.- 4.7 Summary.- 5. Processing of Superconducting Powders.- 5.1 Introduction.- 5.2 Y-Based Superconductors.- 5.3 Bi-Based Superconductors.- 5.4 Tl-Based Superconductors.- 5.5 Hg-Based Superconductors.- 5.6 High Pressure Phases.- 5.7 Summary.- 6. Conductor Fabrication.- 6.1 Introduction.- 6.2 Wire Fabrication Techniques.- 6.3 Factors Limiting the Transport Critical Current Densities.- 6.4 Critical Current Densities in Superconducting Wires and Tapes.- 6.5 Field- and Temperature-Dependencies.- 6.6 Strain Effects.- 6.7 Summary.- 7. Foundations of Applied Superconductivity.- 7.1 Introduction.- 7.2 Material Properties of Silver.- 7.3 Stability.- 7.4 Safety Aspects.- 7.5 AC Losses.- 7.6 Summary.- 8. Magnet and Energy Applications.- 8.1 A Survey of Possible Energy Applications.- 8.2 Current Leads.- 8.3 Magnet Applications.- 8.4 Superconducting Transformers.- 8.5 Superconducting Fault Current Limiter.- 8.6 Power Transmission Lines.- 8.7 Superconducting Motors.- 8.8 Magnetic Levitation.- 9. Outlook.- 10.References.- 11.Subject Index.
Notă biografică
Rainer Wesche studied physics at the University of Constance, Germany (M.Sc. in 1984) and received his Ph.D. in physics from the University of Constance, Germany, in 1988. From 1989 to 1993, he was a research scientist at the Paul Scherrer Institute, Switzerland, where he led an experimental study of high-current applications of high-Tc superconductivity funded by the Swiss National Science Foundation. Since 1994, he has been a research scientist at the Swiss Federal Institute of Technology Lausanne (Swiss Plasma Center (SPC)). His research has been in the field of applied superconductivity.
Textul de pe ultima copertă
This book describes the status of research and development in the field of high-temperature superconductivity reached in the mid of the twenty-twenties. Starting from the milestones in the history of superconductivity, the main characteristics of the superconducting state are presented. Special physical properties of high-temperature superconductors are highlighted. Main classes of superconducting materials are introduced with the focus on high-temperature superconductors (cuprates and iron-based superconductors) and MgB2. Besides the material properties relevant for applications, the deposition of superconductor films and the manufacture of high-temperature superconductor wires are described. An outlook toward the future is included, covering potential applications of high-temperature superconductors in magnet technology and the electric power system.
Caracteristici
Discusses concisely the fundamentals of the superconducting state, with focus on high-temperature superconductors Includes comments on economic aspects, as well as an outlook on applications in magnet technology and the power sector Provides up-to-date information on the properties of high-Tc superconductors, including iron-based and MgB2