Confinement from Correlated Instanton-Dyon Ensemble in SU(2) Yang-Mills Theory
arXiv:1903.02684 · doi:10.1103/PhysRevD.99.114013
Abstract
We study the confinement phase transition in Yang-Mills theory, based on a statistical ensemble model of correlated instanton-dyons. We show for the first time that such a model provides a quantitative description, in light of the lattice data, for the temperature dependence of the order parameter. We characterize the short-range interaction which plays a crucial role for the properties of such ensemble. The chromo-magnetic charge density as well as the spatial correlations is found to be consistent with known lattice and phenomenological information.
References in corpus (11)
- Toward a solution to the and puzzle for heavy quarks
- Strongly coupled plasma with electric and magnetic charges
- Angular Dependence of Jet Quenching Indicates Its Strong Enhancement Near the QCD Phase Transition
- Magnetic Component of Quark-Gluon Plasma is also a Liquid!
- Quark confinement: dual superconductor picture based on a non-Abelian Stokes theorem and reformulations of Yang-Mills theory
- Confining ensemble of dyons
- Quark Confinement: The Hard Problem of Hadron Physics
- Magnetic monopoles in the high temperature phase of Yang-Mills theories
- The role of monopoles in a Gluon Plasma
- QCD Topology at Finite Temperature: Statistical Mechanics of Selfdual Dyons
- The Role of QCD Monopoles in Jet Quenching