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Gauge Theories of the Strong and Electroweak Interaction
(Englisch)
Manfred Böhm & Ansgar Denner & Hans Joos

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Produktbeschreibung

Professor Dr. Manfred Böhm, Universität Würzburg
Dr. Ansgar Denner, Villingen
Professor Dr. Hans Joos, Universität Hamburg
"Sehr gute zusammenfassende Darstellung des gesamten Themas. Auch zum Nachschlagen geeignet.? (Dr. rer. nat.Dietrich Wolf, Energietechnik, FH Aachen)
This textbook gives a comprehensive summary of the gauge theories of the fundamental interactions. The authors stress the intimate connection between the basic experimental facts and the formulation of gauge theories of the strong and electroweak interaction. The concepts and technical tools of quantum field theory are presented. They are used to derive precision results of quantum chromodynamics and the standard model of the electroweak interaction of experiments in elementary particle physics. The book includes the latest experimental results and presents the actual status of the theory.
Basic concepts: The fundamental constituents of matter and their interactions - Elements of relativistic quantum mechanics - The quark model of the hadrons - Phenomenology of the electroweak interaction - The quark parton model - Quantum theory of gauge fields - Quantum chromodynamics - Theory of the electroweak interaction - Outlook to grand unified theories and supersymmetry
Mathematical Physics
This textbook gives a comprehensive summary of the gauge theories of the fundamental interactions. The authors stress the intimate connection between the basic experimental facts and the formulation of gauge theories of the strong and electroweak interaction. The concepts and technical tools of quantum field theory are presented. They are used to derive precision results of quantum chromodynamics and the standard model of the electroweak interaction of experiments in elementary particle physics. The book includes the latest experimental results and presents the actual status of the theory.
From the contents:
Basic concepts: The fundamental constituents of matter and their interactions - Elements of relativistic quantum mechanics - The quark model of the hadrons - Phenomenology of the electroweak interaction - The quark parton model - Quantum theory of gauge fields - Quantum chromodynamics - Theory of the electroweak interaction - Outlook to grand unified theories and supersymmetry
Professor Dr. Manfred Böhm, Universität Würzburg
Dr. Ansgar Denner, Villingen
Professor Dr. Hans Joos, Universität Hamburg

Über den Autor



Professor Dr. Manfred Böhm, Universität Würzburg
Dr. Ansgar Denner, Villingen
Professor Dr. Hans Joos, Universität Hamburg


Inhaltsverzeichnis



Basic concepts: The fundamental constituents of matter and their interactions - Elements of relativistic quantum mechanics - The quark model of the hadrons - Phenomenology of the electroweak interaction - The quark parton model - Quantum theory of gauge fields - Quantum chromodynamics - Theory of the electroweak interaction - Outlook to grand unified theories and supersymmetry


Klappentext



This textbook gives a comprehensive summary of the gauge theories of the fundamental interactions. The authors stress the intimate connection between the basic experimental facts and the formulation of gauge theories of the strong and electroweak interaction. The concepts and technical tools of quantum field theory are presented. They are used to derive precision results of quantum chromodynamics and the standard model of the electroweak interaction of experiments in elementary particle physics. The book includes the latest experimental results and presents the actual status of the theory.




This textbook gives a comprehensive summary of the gauge theories of the fundamental interactions. The authors stress the intimate connection between the basic experimental facts and the formulation of gauge theories of the strong and electroweak interaction. The concepts and technical tools of quantum field theory are presented. They are used to derive precision results of quantum chromodynamics and the standard model of the electroweak interaction of experiments in elementary particle physics. The book includes the latest experimental results and presents the actual status of the theory.