The Standard Model and Beyond, Second Edition, presents an advanced introduction to the physics and formalism of the standard model and other non-abelian gauge theories. It provides a solid background for understanding supersymmetry, string theory, extra dimensions, dynamical symmetry breaking, and cosmology. The book covers the
The Standard Model and Beyond, Second Edition, presents an advanced introduction to the physics and formalism of the standard model and other non-abelian gauge theories. It provides a solid background for understanding supersymmetry, string theory, extra dimensions, dynamical symmetry breaking, and cosmology. The book covers the
Produktdetails
Produktdetails
Series in High Energy Physics, Cosmology and Gravitation
Paul Langacker is an Emeritus Professor of Physics and Astronomy at the University of Pennsylvania. He is currently a Senior Scientist at Princeton University and a long-term visitor at the Institute for Advanced Study. His research has emphasized the connections between fundamental theory and experiment, and has included work in precision electroweak physics, grand unification, neutrino physics, Z' physics, and string phenomenology.
Inhaltsangabe
Notation and Conventions Review of Perturbative Field Theory Lie Groups, Lie Algebras, and Symmetries Gauge Theories The Strong Interactions and QCD Collider Physics The Weak Interactions The Standard Electroweak Theory Neutrino Mass and Mixing Beyond the Standard Model Appendix A: Canonical Commutation Rules Appendix B: Derivation of a Simple Feynman Diagram Appendix C: Unitarity, the Partial Wave Expansion, and the Optical Theorem Appendix D: Two, Three, and nBody Phase Space Appendix E: Calculation of the Anomalous Magnetic Moment of the Electron Appendix F: BreitWigner Resonances Appendix G: Implications of P, C, T, and Gparity for Nucleon Matrix Elements Appendix H: Quantum Mechanical Analogs of Symmetry Breaking
Notation and Conventions Review of Perturbative Field Theory Lie Groups, Lie Algebras, and Symmetries Gauge Theories The Strong Interactions and QCD Collider Physics The Weak Interactions The Standard Electroweak Theory Neutrino Mass and Mixing Beyond the Standard Model Appendix A: Canonical Commutation Rules Appendix B: Derivation of a Simple Feynman Diagram Appendix C: Unitarity, the Partial Wave Expansion, and the Optical Theorem Appendix D: Two, Three, and nBody Phase Space Appendix E: Calculation of the Anomalous Magnetic Moment of the Electron Appendix F: BreitWigner Resonances Appendix G: Implications of P, C, T, and Gparity for Nucleon Matrix Elements Appendix H: Quantum Mechanical Analogs of Symmetry Breaking
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