arXiv:hep-lat/0008026·v2·High Energy Physics — Lattice
Numerical Study of Gluon Propagator and Confinement Scenario in Minimal Coulomb Gauge
Attilio Cucchieri (Universitaet Bielefeld)🇩🇪 · Daniel Zwanziger (New York University)🇺🇸
Abstract
We present numerical results in SU(2) lattice gauge theory for the space-space and time-time components of the gluon propagator at equal time in the minimal Coulomb gauge. It is found that the equal-time would-be physical 3-dimensionally transverse gluon propagator vanishes at when extrapolated to infinite lattice volume, whereas the instantaneous color-Coulomb potential is strongly enhanced at . This has a natural interpretation in a confinement scenario in which the would-be physical gluons leave the physical spectrum while the long-range Coulomb force confines color. Gribov's formula provides an excellent fit to our data for the 3-dimensionally transverse equal-time gluon propagator for relevant values of .
Comments: 23 pages, 12 figures, TeX file. Minor modifications, incorporating referee's suggestions