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Schwartz M.D. Quantum Field Theory and the Standard Model

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Schwartz M.D. Quantum Field Theory and the Standard Model
Cambridge University Press, 2013. — 851 pages. — ISBN: 1107034736
Providing a comprehensive introduction to quantum field theory, this textbook covers the development of particle physics from its foundations to the discovery of the Higgs boson. Its combination of clear physical explanations, with direct connections to experimental data, and mathematical rigor make the subject accessible to students with a wide variety of backgrounds and interests. Assuming only an undergraduate-level understanding of quantum mechanics, the book steadily develops the Standard Model and state-of-the art calculation techniques. It includes multiple derivations of many important results, with modern methods such as effective field theory and the renormalization group playing a prominent role. Numerous worked examples and end-of-chapter problems enable students to reproduce classic results and to master quantum field theory as it is used today. Based on a course taught by the author over many years, this book is ideal for an introductory to advanced quantum field theory sequence or for independent study.
Field Theory

Microscopic theory of radiation
Lorentz invariance and second quantization
Classical Field Theory
Old-fashioned perturbation theory
Cross sections and decay rates
The S-matrix and time-ordered products
Feynman rules
Quantum Electrodynamics
Spin 1 and gauge invariance
Scalar QED
Spinor solutions and CPT
Spin and statistics
Quantum electrodynamics
Path integrals
The Casimir effect
Vacuum polarization
The anomalous magnetic moment
Mass renormalization
Renormalized perturbation theory
Infrared divergences
Non-renormalizable theories
The renormalization group
Implications of Unitarity
The Standard Model
Yang–Mills theory
Quantum Yang-Mills theory
Gluon scattering and the spinor-helicity formalism
Spontaneous symmetry breaking
Weak interactions
Precision tests of the standard model
QCD and the parton model
Advanced Topics
Effective actions and Schwinger proper time
Background fields
Heavy-quark physics
Jets and effective field theory
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