Lectures on Classical and Quantum Theory of Fields [electronic resource] /by Henryk Arodź, Leszek Hadasz.
by Arodź, Henryk [author.]; Hadasz, Leszek [author.]; SpringerLink (Online service).
Material type:
BookPublisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2010.Description: IX, 351p. 30 illus. online resource.ISBN: 9783642156243.Subject(s): Physics | Field theory (Physics) | Quantum theory | Physics | Elementary Particles, Quantum Field Theory | Quantum Physics | Field Theory and PolynomialsDDC classification: 539.72 Online resources: Click here to access online | Item type | Current location | Call number | Status | Date due | Barcode |
|---|---|---|---|---|---|
| QC174.45-174.52 (Browse shelf) | Available | ||||
| Long Loan | MAIN LIBRARY | QC793-793.5 (Browse shelf) | Available |
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Introduction -- The Euler-Lagrange equations and Noether's theorem -- Scalar fields -- Vector fields -- Relativistic spinor fields -- The quantum theory of free fields -- Perturbative expansion in the phi44 model -- Renormalization -- Renormalization group -- Relativistic invariance and the spectral decomposition of G(2) -- Paths integrals in QFT -- The perturbative expansion for non-Abelian gauge fields -- The simplest supersymmetric models -- Anomalies -- Appendix: Some facts about generalized functions.
This textbook on classical and quantum theory of fields addresses graduate students starting to specialize in theoretical physics. It provides didactic introductions to the main topics in the theory of fields, while taking into account the contemporary view of the subject. The student will find concise explanations of basic notions essential for applications of the theory of fields as well as for frontier research in theoretical physics. One third of the book is devoted to classical fields. Each chapter contains exercises of varying degree of difficulty with hints or solutions, plus summaries and worked examples as useful. The textbook is based on lectures delivered to students of theoretical physics at Jagiellonian University. It aims to deliver a unique combination of classical and quantum field theory in one compact course.
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