
Electroweak Interactions
An Introduction to the Physics of Quarks and Leptons
Peter Renton(Author)
Cambridge University Press
Published on 22. February 1990
Book
Hardback
609 pages
978-0-521-26603-1 (ISBN)
Article exhausted; check for reprint
Description
This book describes the theory of electroweak interactions, starting from a level understandable to students with only a first degree in physics. This theory, the Glashow-Salam-Weinberg (GSW) model, unifies the weak and electromagnetic forces of nature and gives a detailed description of the interactions between quarks and leptons, the basic building blocks of matter. The various experimental tests of the model that have been made and that are planned are described in detail, with reference to the fact that all results obtained so far are in agreement with the model. The interactions of quarks by the strong force, the theory of quantum chromodynamics, are also discussed. The GSW model, together with quantum chromodynamics, constitute the so-called 'standard model'. Theories proposing further unification of the forces of nature are outlined. This is a rapidly moving subject, and this up-to-date book will be of great value to researchers and beginning graduate students in high energy physics.
Reviews / Votes
"...an extremely valuable compendium of standard-model results and is strongly recommended as a reference to active researchers and to students and teachers of high-energy physics at the graduate level." Physics TodayMore details
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
Dimensions
Height: 228 mm
Width: 152 mm
Thickness: 36 mm
Weight
962 gr
ISBN-13
978-0-521-26603-1 (9780521266031)
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Book
02/1990
Cambridge University Press
€139.10
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Additional editions

Book
02/1990
Cambridge University Press
€139.10
Shipment within 15-20 days
Content
Preface; 1. Introduction; 2. Towards a quantum field theory; 3. Wave equations, propagators and fields; 4. Quantum electrodynamics; 5. From Fermi theory to standard model; 6. Purely leptonic interactions; 7. Deep inelastic scattering and quantum chromodynamics; 8. Weak hadronic currents, electroweak interference effects; 9. Quark and lepton oscillations; 10. The standard model and beyond; Appendixes; References; Index.