
The Theory and Applications of Instanton Calculations
Manu Paranjape(Author)
Cambridge University Press
Published on 9. February 2023
Book
Paperback/Softback
324 pages
978-1-009-29123-1 (ISBN)
Description
Instantons, or pseudoparticles, are solutions to the equations of motion in classical field theories on a Euclidean spacetime. Instantons are found everywhere in quantum theories as they have many applications in quantum tunnelling. Diverse physical phenomena may be described through quantum tunnelling, for example: the Josephson effect, the decay of meta-stable nuclear states, band formation in tight binding models of crystalline solids, the structure of the gauge theory vacuum, confinement in 2+1 dimensions, and the decay of superheated or supercooled phases. Drawing inspiration from Sidney Coleman's Erice lectures, this volume provides an accessible, detailed introduction to instanton methods, with many applications, making it a valuable resource for graduate students in many areas of physics, from condensed matter, particle and nuclear physics, to string theory. This title, first published in 2017, has been reissued as an Open Access publication on Cambridge Core.
More details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
Product notice
Paperback (trade)
Illustrations
Worked examples or Exercises
Dimensions
Height: 243 mm
Width: 169 mm
Thickness: 18 mm
Weight
536 gr
ISBN-13
978-1-009-29123-1 (9781009291231)
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Manu Paranjape
The Theory and Applications of Instanton Calculations
Book
02/2023
Cambridge University Press
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Content
Preface; 1. Introduction; 2. Quantum mechanics and the path integral; 3. The symmetric double well; 4. Decay of a meta-stable state; 5. Quantum field theory and the path integral; 6. Decay of the false vacuum; 7. Large orders in perturbation theory; 8. Quantum electrodynamics in 1+1 dimensions; 9. The Polyakov proof of confinement; 10. Monopole pair production; 11. Quantum chromodynamics (QCD); 12. Instantons, supersymmetry and Morse theory; Appendix A. As aside on 0(4); Appendix B. Asymptotic analysis; Bibliography; Index.