Reprint

Modern Approaches to Non-Perturbative QCD and other Confining Gauge Theories

Edited by
March 2022
298 pages
  • ISBN978-3-0365-3329-2 (Hardback)
  • ISBN978-3-0365-3330-8 (PDF)

This book is a reprint of the Special Issue Modern Approaches to Non-Perturbative QCD and other Confining Gauge Theories that was published in

Physical Sciences
Summary

This book contains seven reviews and four research articles on the various modern approaches to the problem of quark confinement in quantum chromodynamics (QCD). These approaches include microscopic models of the Yang–Mills vacuum, which are based on the condensation of magnetic monopoles and center vortices, as well as the models of the confining quark-antiquark string. Possible applications of these models to the analysis of the novel superinsulating state, which emerges in such condensed-matter systems as Josephson junction arrays, are further discussed in one of the reviews. Two reviews from this collection discuss the approaches towards the analytic construction of effective confining theories, at the classical level and within the center-vortex model of the Yang–Mills vacuum. Other aspects of non-perturbative physics addressed by this collection include a possible connection between the localization of low-lying Dirac eigenmodes with the deconfinement and the chiral QCD phase transitions, as well as the role of topology in baryon-rich matter. Last but not least, a novel model of dark matter, based on ultralight axion particles, whose masses are arising due to distinct SU(2) Yang–Mills scales and the Planck mass, is suggested and developed in one of the contributed articles.

 

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
quantum chromodynamics; confinement; center vortex model; vacuum structure; cooling; quantum chromodynamics; confinement; center vortex model; vacuum structure; Lattice Gauge Theories; Effective String Theories; localization; QCD; lattice gauge theory; finite temperature; galaxy rotation curves; low surface brightness; dark matter; dark energy; ultralight axion particles; cores; halos; mass-density; profiles; pure Yang–Mills theory; monopoles; confinement; topological interactions; confinement; ensembles and effective fields; topological solitons; confinement; higher order theories; gauge theory; effective field theory; magnetic flux symmetry; QCD; chiral symmetry; monopole; lattice QCD; spontaneous symmetry breaking; Abelian projection; magnetic catalysis; magnetic disorder; confinement models; lattice QCD; center vortices; magnetic monopoles; quark condensate; QCD; topology; lattice field theory; dense matter; phase transitions; n/a