A Guide To Feynman Diagrams In The Many Body Problem


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A Guide to Feynman Diagrams in the Many-Body Problem


A Guide to Feynman Diagrams in the Many-Body Problem

Author: Richard D. Mattuck

language: en

Publisher: Courier Corporation

Release Date: 2012-08-21


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Superb introduction for nonspecialists covers Feynman diagrams, quasi particles, Fermi systems at finite temperature, superconductivity, vacuum amplitude, Dyson's equation, ladder approximation, and more. "A great delight." — Physics Today. 1974 edition.

A Guide to Feynman Diagrams in the Many-body Problem


A Guide to Feynman Diagrams in the Many-body Problem

Author: Richard D. Mattuck

language: en

Publisher: Courier Corporation

Release Date: 1992-01-01


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Until this book, most treatments of this topic were inaccessible to nonspecialists. A superb introduction to important areas of modern physics, it covers Feynman diagrams, quasi particles, Fermi systems at finite temperature, superconductivity, vacuum amplitude, Dyson's equation, ladder approximation, and much more. "A great delight to read." — Physics Today. 1974 edition.

Introduction to Many-Body Physics


Introduction to Many-Body Physics

Author: Piers Coleman

language: en

Publisher: Cambridge University Press

Release Date: 2015-11-26


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A modern, graduate-level introduction to many-body physics in condensed matter, this textbook explains the tools and concepts needed for a research-level understanding of the correlated behavior of quantum fluids. Starting with an operator-based introduction to the quantum field theory of many-body physics, this textbook presents the Feynman diagram approach, Green's functions and finite-temperature many-body physics before developing the path integral approach to interacting systems. Special chapters are devoted to the concepts of Fermi liquid theory, broken symmetry, conduction in disordered systems, superconductivity and the physics of local-moment metals. A strong emphasis on concepts and numerous exercises make this an invaluable course book for graduate students in condensed matter physics. It will also interest students in nuclear, atomic and particle physics.