Gluon propagator and confinement scenario in Coulomb gauge
arXiv:hep-lat/0209068 · doi:10.1016/S0920-5632(03)01646-3
Abstract
We present numerical results in SU(2) lattice gauge theory for the instantaneous part of the gluon propagator in Coulomb gauge D_{44, inst} = V_{coul}(R) δ(t). Data are taken on lattice volumes 24^4 and 28^4 for 7 values of beta in the interval . The data are confronted with the confinement scenario in Coulomb gauge. They are consistent with a linearly rising color-Coulomb potential V_{coul}(R).
3 pages and 3 figures; talk presented by D. Zwanziger at Lattice2002(topology), Cambridge MA, USA, June 24-29, 2002
References in corpus (1)
Cited by in corpus (15)
- The QCD Running Coupling
- No confinement without Coulomb confinement
- Coulomb Energy, Remnant Symmetry, and the Phases of Non-Abelian Gauge Theories
- Confining Solution of the Dyson-Schwinger Equations in Coulomb Gauge
- Propagators in Coulomb gauge from SU(2) lattice gauge theory
- The effective Coulomb potential in SU(3) lattice Yang-Mills theory
- Properties of Color-Coulomb String Tension
- Infrared-suppressed gluon propagator in 4d Yang-Mills theory in a Landau-like gauge
- The Wilson loop from a Dyson equation
- Faddeev-Popov spectra at the Gribov horizon
- Equal-time two-point correlation functions in Coulomb gauge Yang-Mills theory
- Lattice QCD analysis for Faddeev-Popov eigenmodes in terms of gluonic momentum components in the Coulomb gauge
- Infrared and ultraviolet asymptotic solutions to gluon and ghost propagators in Yang-Mills theory
- Gauge Orbits and the Coulomb Potential
- The Coulomb flux tube revisited