Classical Solutions in Quantum Field Theory
eBook - PDF

Classical Solutions in Quantum Field Theory

Solitons and Instantons in High Energy Physics

  1. English
  2. PDF
  3. Available on iOS & Android
eBook - PDF

Classical Solutions in Quantum Field Theory

Solitons and Instantons in High Energy Physics

About this book

Classical solutions play an important role in quantum field theory, high-energy physics and cosmology. Real-time soliton solutions give rise to particles, such as magnetic monopoles, and extended structures, such as domain walls and cosmic strings, that have implications for early universe cosmology. Imaginary-time Euclidean instantons are responsible for important nonperturbative effects, while Euclidean bounce solutions govern transitions between metastable states. Written for advanced graduate students and researchers in elementary particle physics, cosmology and related fields, this book brings the reader up to the level of current research in the field. The first half of the book discusses the most important classes of solitons: kinks, vortices and magnetic monopoles. The cosmological and observational constraints on these are covered, as are more formal aspects, including BPS solitons and their connection with supersymmetry. The second half is devoted to Euclidean solutions, with particular emphasis on Yang–Mills instantons and on bounce solutions.

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Yes, you can access Classical Solutions in Quantum Field Theory by Erick J. Weinberg in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Mathematical & Computational Physics. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover
  2. CLASSICAL SOLUTIONS IN QUANTUM FIELD THEORY
  3. Title
  4. Copyright
  5. Dedication
  6. Contents
  7. Preface
  8. 1 Introduction
  9. 2 One-dimensional solitons
  10. 3 Solitons in more dimensions—Vortices and strings
  11. 4 Some topology
  12. 5 Magnetic monopoles with U (1) charges
  13. 6 Magnetic monopoles in larger gauge groups
  14. 7 Cosmological implications and experimental bounds
  15. 8 BPS solitons, supersymmetry, and duality
  16. 9 Euclidean solutions
  17. 10 Yang–Mills instantons
  18. 11 Instantons, fermions, and physical consequences
  19. 12 Vacuum decay
  20. Appendix A: Roots and weights
  21. Appendix B: Index theorems for BPS solitons
  22. References
  23. Index