D-wave Superconductivity

D-wave Superconductivity by Tao Xiang, published by Cambridge University Press on June 9, 2022, is a comprehensive resource that delves into the theory of d-wave superconductivity. This new edition spans 360 pages and is presented in English, offering an in-depth exploration of d-wave pairing symmetry and its implications within the superconducting state. The book introduces fundamental concepts and methodologies related to high-temperature superconductivity, while also comparing experimental phenomena with theoretical predictions.
Readers will find detailed derivations and explanations of various properties of d-wave superconductors, including thermodynamics, angular-resolved photo-emission, and transport properties. The text emphasizes the universal behaviors of d-wave superconductors and is designed primarily for graduate students and research scientists in the fields of condensed matter and materials physics. This volume serves as a systematic guide to understanding the physical properties of high-temperature superconductors, making it a valuable addition to the literature on superconductivity and materials science.
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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.
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