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D-wave Superconductivity
Hardback
Main Details
Title |
D-wave Superconductivity
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Authors and Contributors |
By (author) Tao Xiang
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By (author) Congjun Wu
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Physical Properties |
Format:Hardback | Pages:360 | Dimensions(mm): Height 250,Width 175 |
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Category/Genre | Materials science |
ISBN/Barcode |
9781009218597
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Classifications | Dewey:537.623 |
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Audience | Postgraduate, Research & Scholarly | |
Illustrations |
Worked examples or Exercises
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Publishing Details |
Publisher |
Cambridge University Press
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Imprint |
Cambridge University Press
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Publication Date |
9 June 2022 |
Publication Country |
United Kingdom
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Description
This volume provides a comprehensive introduction to the theory of d-wave superconductivity, focused on d-wave pairing symmetry and its physical consequences in the superconducting state. It discusses the basic concepts and methodologies related to high-temperature superconductivity and compares experimental phenomena with theoretical predictions. After a brief introduction to the basic theory of superconductivity and several models for high-temperature superconductivity, this book presents detailed derivations and explanations for various single-particle and collective properties of d-wave superconductors that can be monitored experimentally, including thermodynamics, angular-resolved photo-emission, single-particle and Josephson tunnelling, impurity scattering, magnetic and superfluid responses, transport and optical properties and mixed states. Various universal behaviours of d-wave superconductors are highlighted. Aimed primarily at graduate students and research scientists in condensed matter and materials physics, this text enables readers to understand systematically the physical properties of high-temperature superconductors.
Author Biography
Tao Xiang is a Professor at the Institute of Physics, Chinese Academy of Sciences (CAS), working on Condensed Matter Physics. He is an elected CAS member and a fellow of the World Academy of Sciences. He received the He-Leung-He-Lee Prize for Scientific and Technological Progress and several other awards. Congjun Wu is a Professor at Westlake University, working on exploring new states of matter in condensed matter and cold atom systems, including superconductivity, magnetism, orbital physics, topological states, and quantum Monte-Carlo simulations. He was elected to be a fellow of American Physical Society in 2018, and awarded Sloan Research Fellowship in 2008.
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