Electrodynamic Theory of Superconductors. Electromagnetics and Radar - Product Image

Electrodynamic Theory of Superconductors. Electromagnetics and Radar

  • ID: 3527746
  • Book
  • IET Books
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Electrodynamic Theory of Superconductors is the first book of its kind. It gives a unified and comprehensive theoretical treatment of electromagnetic, thermal and mechanical phenomena in superconductors. Basic concepts and principles in continuum electrodynamics are introduced, with particular emphasis on methodology. Electrodynamic models are developed to study magnetoelastic and thermoelastic superconductors. The author also introduces phenomenological London theory, Cinzburg-Landau theory, electrodynamic models for superconducting thin films, AC losses and Josephson junctions, and BCS microscopic theory of superconductivity. This book can be used as a post graduate level text and as a reference book for researchers and engineers working in the field of applied superconductivity and related areas.

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- Chapter 1: Introduction to Electrodynamics of Solids
- Chapter 2: Electrodynamics of Superconductors
- Chapter 3: Electromagneto-Mechanical Interactions in Superconductors
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Shu-Ang Zhou Ericsson Telecom AB, Sweden.

Shu-Ang Zhou received the BSc degree in Mathematics and Mechanics from Fudan University, Shanghai, China in 1982, then joined the Department of Applied Mechanics at Fudan University, where he worked on solid mechanics, in 1988, he was awarded a PhD degree in Mechanics from the Royal institute of Technology, Stockholm, Sweden. During 1988-1989, he was a post-doctoral fellow in the Faculty of Engineering of the University of Tokyo in Japan, engaged in research on the electrodynamics of superconductors. From 1989, he has been a researcher at the Department of Theoretical Physics in the Royal institute of Technology in Stockholm, and is currently a research engineer in Ericsson Telecom AB, Stockholm, Sweden. Dr. Zhou has given lectures in a number of universities and international conferences, and has had articles published on electromagnetics and mechanics in materials such as superconductors, in various professional journals. His current research interests include high temperature superconductors and their material modelling and engineering applications.

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