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Journey to the Bound States
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Journey to the Bound States
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Journey to the Bound States/ by Paul Hoyer.
Author:
Hoyer, Paul.
Description:
XI, 166 p. 23 illus., 19 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Elementary particles (Physics). -
Online resource:
https://doi.org/10.1007/978-3-030-79489-7
ISBN:
9783030794897
Journey to the Bound States
Hoyer, Paul.
Journey to the Bound States
[electronic resource] /by Paul Hoyer. - 1st ed. 2021. - XI, 166 p. 23 illus., 19 illus. in color.online resource. - SpringerBriefs in Physics,2191-5431. - SpringerBriefs in Physics,.
Motivations and Outline -- Brief survey of present QED approaches to atoms -- Dirac bound states -- Fock expansion of bound states in temporal (A0 = 0) gauge -- Applications to Positronium atoms -- QED in D = 1+1 dimensions -- Applications to QCD bound states -- Bound state epilogue -- Appendix: Solutions to exercises.
This book is a graduate-level self-study guide of bound states in elementary particle physics and consequently in the standard model. The author first recalls the usual quantum electrodynamics (QED) approach to atoms in terms of Feynman diagrams, which assume free states at asymptotic times. Motivated by general principles and data, he then develops a novel method based on a Fock expansion of bound states in temporal gauge. The properties of relativistic bound states are discussed for Dirac states, atoms in motion, QED in D=1+1 dimensions, and hadrons in quantum chromodynamics (including color confinement). This book provides complementary material for quantum field theory courses and is accessible for graduate students and more senior researchers.
ISBN: 9783030794897
Standard No.: 10.1007/978-3-030-79489-7doiSubjects--Topical Terms:
1254811
Elementary particles (Physics).
LC Class. No.: QC793-793.5
Dewey Class. No.: 539.72
Journey to the Bound States
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This book is a graduate-level self-study guide of bound states in elementary particle physics and consequently in the standard model. The author first recalls the usual quantum electrodynamics (QED) approach to atoms in terms of Feynman diagrams, which assume free states at asymptotic times. Motivated by general principles and data, he then develops a novel method based on a Fock expansion of bound states in temporal gauge. The properties of relativistic bound states are discussed for Dirac states, atoms in motion, QED in D=1+1 dimensions, and hadrons in quantum chromodynamics (including color confinement). This book provides complementary material for quantum field theory courses and is accessible for graduate students and more senior researchers.
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