arXiv:hep-ph/9701279·v1·High Energy Physics — Phenomenology
Structure of the Gluon Propagator at Finite Temperature
H. Arthur Weldon
Abstract
The thermal self-energy of gluons generally depends on four Lorentz-invariant functions. Only two of these occur in the hard thermal loop approximation of Braaten and Pisarski because of the abelian Ward identity . However, for the exact self-energy . In linear gauges the Slavnov-Taylor identity is shown to require a non-linear relation among three of the Lorentz-invariant self-energy function: . This reduces the exact gluon propagator to a simple form containing only two types of poles: one that determines the behavior of transverse electric and magnetic gluons and one that controls the longitudinally polarized electric gluons.
Comments: 21 pages, latex, no figures