Published July 1, 1985 | Version v1
Journal article

Conjecture concerning the modes of excitation of the quark-gluon plasma

Creators

  • 1. Department of Physics, University of Utah, Salt Lake City, Utah 84112

Description

It is a widely held belief that at temperatures much higher than the confinement scale of quantum chromodynamics (QCD), quarks and gluons become free, giving rise to a new form of matter, called the quark-gluon plasma. It is conjectured here that the characterization of the plasma as a free or weakly interacting gas of quarks and gluons is valid only for short distances and short time scales of the order 1/T, but that at scales larger than 1/g2T (where g2 is the running QCD coupling) the plasma exhibits confining features similar to that of the low-temperature hadronic phase. The confining features are manifest in the long-range, i.e., long-wavelength, low-frequency, modes of the plasma. To examine the long-range real-time response of the plasma goes beyond the capabilities of current lattice-gauge-theory techniques. However, some properties of these modes can be determined indirectly. An attempt is made to characterize the long-range modes of excitation by examining the static high-temperature limit, focusing upon the static screening lengths of colored and neutral local operators. Since g2 is not small at temperatures likely to be accessible in heavy-ion collisions, the nonperturbative effects associated with vestiges of confinement are likely to be important in the phenomenological analysis of measurements made at accelerators

Additional details

Publishing Information

Journal Title
Phys. Rev., D
Journal Volume
32
Journal Issue
1
Series
Phys. Rev., D.
Journal Page Range
276-283
ISSN
0556-2821
CODEN
PRVDA