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Many-body theory, used to describe the interaction of nuclear particles is widely studied in physics, but most of the literature on the topic is scattered and not always presented in a rigorous manner. Mathematical Methods of Many-Body Quantum Field Theory offers a comprehensive, mathematically rigorous treatment of many-body physics. It develops the mathematical tools for the description of quantum many-body systems and applies them to the many-electron system. The physical effects discussed include BCS superconductivity, s-wave and higher l-wave, and the fractional quantum Hall effect, and…mehr

Produktbeschreibung
Many-body theory, used to describe the interaction of nuclear particles is widely studied in physics, but most of the literature on the topic is scattered and not always presented in a rigorous manner. Mathematical Methods of Many-Body Quantum Field Theory offers a comprehensive, mathematically rigorous treatment of many-body physics. It develops the mathematical tools for the description of quantum many-body systems and applies them to the many-electron system. The physical effects discussed include BCS superconductivity, s-wave and higher l-wave, and the fractional quantum Hall effect, and the author provides a full introduction the Feldman, Knoerrer, and Trubowitx Fermio-liquid construction.
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Autorenporträt
Lehmann, Detlef