arXiv:hep-ph/9403367·v1·High Energy Physics — Phenomenology
Phase structure of Yang-Mills theory with global center symmetry
K. Sailer
Abstract
Retaining only the `timelike' component of the vector potential a skelet model with explicit global center symmetry is constructed for Yang-Mills theory. It is shown that the gluon vacuum is equivalent with the 4-dimensional Coulomb-gas. In 1--loop approximation, the effective theory of the skelet model exhibits non-local self-interaction. A coupling constant is found that governs the loop expansion. For the effective theory does not confine (the string tension vanishes), whereas for confinement (with non-vanishing string tension) takes place. In the deconfined phase the gluons exhibit non-zero rest mass and global center symmetry is broken by the vacuum state. Confinement sets on for when the rest mass of gluons vanishes and the global center symmetry of the vacuum is restored.
Comments: 37 pages, KLTE-DTP/1994/1