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Quantum Field Theory – From Operators to Path Integrals 2e

Autor K Huang
en Limba Engleză Paperback – 23 mar 2010
A new, updated and enhanced edition of the classic work, which was welcomed for its general approach and self-sustaining organization of the chapters.
Written by a highly respected textbook writer and researcher, this book has a more general scope and adopts a more practical approach than other books. It includes applications of condensed matter physics, first developing traditional concepts, including Feynman graphs, before moving on to such key topics as functional integrals, statistical mechanics and Wilson's renormalization group. The author takes care to explain the connection between the latter and conventional perturbative renormalization. Due to the rapid advance and increase in importance of low dimensional systems, this second edition fills a gap in the market with its added discussions of low dimensional systems, including one-dimensional conductors.
All the chapters have been revised, while more clarifying explanations and problems have been added. A FREE SOLUTIONS MANUAL is available for lecturers from www.wiley-vch.de/textbooks.
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Specificații

ISBN-13: 9783527408467
ISBN-10: 3527408460
Pagini: 438
Ilustrații: 80 schwarz-weiße Abbildungen
Dimensiuni: 172 x 250 x 25 mm
Greutate: 0.84 kg
Ediția:2nd Edition
Editura: Wiley Vch
Locul publicării:Weinheim, Germany

Public țintă

Graduate Students, Physicists, Nuclear Physicists, Solid State Physicists, Materials Scientists, Electrical Engineers, Libraries at University Institutes, Libraries at Universities, Company Libraries

Notă biografică

Kerson Huang is Professor of Physics at the Massachusetts Institute of Technology, Cambridge, USA, and a leading authority on quantum physics. He is a highly experienced textbook writer and has written (among other books) Statistical Mechanics, also published by Wiley. Professor Huang?s research interests focus on Bose-Einstein condensates and non-renormalizable theories.

Cuprins

1. Introducing Quantum Fields 2. Scalar Fields 3. Relativistic Fields 4. Canonical Formalism 5. Electromagnetic Field 6. Dirac Equation 7. The Dirac Field 8. Dynamics of Interacting Fields 9. Feynman Graphs 10. Vacuum Correlation Functions 11. Quantum Electrodynamics 12. Processes in Quantum Electrodynamics 13. Perturbative Renormalization 14. Path Integrals 15. Broken Symmetry 16. Renormalization 17. The Gaussian Fixed Point 18. In Two Dimensions 19. Topological Excitations Appendix A. Background Material Appendix B. Superfluidity Appendix C. Polchinski's Renormalization Equation