
Gauge Theories in Particle Physics
Volume 1: From Relativistic Quantum MEchanics to QED
Ian J.R. Aitchison, Anthony J.G. Hey
Résumé
This book provides an accessible, practical and comprehensive introduction to the three gauge theories of the 'standard model' of particle physics: quantum electrodynamics (QED), quantum chromodynamics (QCD) and the electroweak theory. For each of them, the authors provide a thorough discussion of the main conceptual points; a detailed exposition of many practical calculations of physical quantities; and a comparison of these quantitative predictions with experimental results.
For this two-volume third edition, much of the book has been rewritten to reflect developments over the last decade in the curricula of university courses and in particle physics research. New introductory chapters provide a concise historical account of the properties of quarks and leptons, and a qualitative overview of the quantum field description of their interactions, at a level appropriate to third year courses. The chapter on relativistic quantum mechanics has been enlarged and supplemented by new sections on scattering theory and Green functions, in a form appropriate to fourth year courses. Since precision experiments now test the theories beyond lowest order in perturbation theory, an understanding of the data requires a more sophisticated knowledge of quantum field theory, including ideas of renormalization. The treatment of quantum field theory has therefore been considerably extended to provide a uniquely accessible and self-contained introduction to quantum field dynamics, as described by Feynman graphs; the level is suitable for advanced fourth year undergraduates and first year graduates.
Contents
PART 1 Introductory Survey, Electromagnetism as a Gauge Theory, and Relativ1stic Quantum Mechanics- Quarks and Leptons
- Particle Interactions in the Standard Model
- Electromagnetism as a Gauge Theory
- Relativistic Quantum Mechanics
- Quantum Field Theory I: the Free Scalar Field
- Quantum Field Theory II: Interacting Scalar Fields
- Quantum Field Theory III: Complex Scalar Fields, Dirac and Maxwell Fields; Introduction of Electromagnetic Interactions
- Elementary Processes in Scalar and Spinor Electrodynamics
- Deep Inelastic Electron-Nucleon Scattering and the Quark Parton Model
- Loops and Renormalization I: the ABC Theory
- Loops and Renormalization II: QED
- Appendix A Non-relativistic Quantum Mechanics
- Appendix B Natural Units
- Appendix C Maxwell's Equations: Choice of Units
- Appendix D Special Relativity: Invariance and Covariance
- Appendix E Dirac δ-Function
- Appendix F Contour Integration
- Appendix G Green Functions
- Appendix H Elements of Non-relativistic Scattering Theory
- Appendix I The Schrödinger and Heisenberg Pictures
- Appendix J Dirac Algebra and Trace Identities
- Appendix K Example of a Cross Section Calculation
- Appendix L Feynman Rules for Tree Graphs in QED
Caractéristiques techniques
PAPIER | |
Éditeur(s) | Institute of Physics (IOP) |
Auteur(s) | Ian J.R. Aitchison, Anthony J.G. Hey |
Parution | 07/02/2003 |
Édition | 3eme édition |
Nb. de pages | 422 |
Format | 15,6 x 23,4 |
Couverture | Broché |
Poids | 738g |
Intérieur | Noir et Blanc |
EAN13 | 9780750308649 |
ISBN13 | 978-0-7503-0864-9 |
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