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Superconductivity and Superfluidity
Hardback
Main Details
Title |
Superconductivity and Superfluidity
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Authors and Contributors |
By (author) T. Tsuneto
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Translated by Mikio Nakahara
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Physical Properties |
Format:Hardback | Pages:224 | Dimensions(mm): Height 244,Width 170 |
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Category/Genre | Electricity, electromagnetism and magnetism |
ISBN/Barcode |
9780521570732
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Classifications | Dewey:537.623 537.623 537.623 |
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Audience | Professional & Vocational | |
Illustrations |
7 Tables, unspecified; 1 Halftones, unspecified; 85 Line drawings, unspecified
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Publishing Details |
Publisher |
Cambridge University Press
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Imprint |
Cambridge University Press
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Publication Date |
10 December 1998 |
Publication Country |
United Kingdom
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Description
This book describes the physics of superconductivity and superfluidity, macroscopic quantum phenomena found in many conductors at low temperatures and in liquid helium 4 and helium 3. In the first part of the book the author presents the mean field theory of generalized pair condensation. This is followed by a description of the properties of ordinary superconductors using BCS theory. The book then proceeds with expositions of strong coupling theory and the Ginzberg-Landau theory. The remarkable properties of superfluid helium 3 are then described, as an example of a superfluid with internal degrees of freedom. The topics covered are dealt with in a coherent manner, with all necessary theoretical background given. Recent topics in the field, such as the copper-oxide high temperature superconductors and exotic superconductivity of heavy fermion systems are discussed in the final chapter. This book will be of interest to graduate students and researchers in condensed matter physics, especially those working in superconductivity and superfluidity.
Reviews' ... well organized and crisp ... The book should be useful to graduate students and those who have had some exposure to field-theoretic and diagrammatic methods.' Nature 'Tsuneto's book is a beautiful presentation of this subject useful for both graduate students and researchers.' P. Komarek, Cryogenics
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