Radial Meson Excitations and Abelian Self-Dual Gluon Fields
arXiv:1511.03904 · doi:10.1142/S2010194515601052
Abstract
We briefly review motivation and results of the approach to QCD vacuum as a medium describable in terms of statistical ensemble of almost everywhere constant Abelian (anti-)self-dual gluon fields. An overview of the hadronization formalism based on this ensemble is presented. New results for radial excitations of light, heavy-light mesons and heavy quarkonia are presented. A possible interrelation between the present approach and holographic QCD with harmonic confinement is outlined.
Talk given at The 9th Joint International Hadron Structure '15 Conference, Horny Smokovec, Slovak Republic, 29 June-3 July 2015, to be published in International Journal of Modern Physics: Conference Series
References in corpus (7)
- Big-Bang Nucleosynthesis
- Linear Confinement and AdS/QCD
- Mass spectra and Regge trajectories of light mesons in the Bethe-Salpeter approach
- Gluon condensation and scaling exponents for the propagators in Yang-Mills theory
- Domain wall network as QCD vacuum and the chromomagnetic trap formation under extreme conditions
- Weyl group, CP and the kink-like field configurations in the effective SU(3) gauge theory
- Mass in Quantum Yang-Mills Theory