What's up with IR gluon and ghost propagators in Landau gauge? A puzzling answer from huge lattices
arXiv:0710.0412
Abstract
Several analytic approaches predict for SU(N_c) Yang-Mills theories in Landau gauge an enhanced ghost propagator G(p^2) and a suppressed gluon propagator D(p^2) at small momenta. This prediction applies to two, three and four space-time dimensions. Moreover, the gluon propagator is predicted to be null at p = 0. Numerical studies by several groups indeed support an enhanced ghost propagator when compared to the tree-level behavior and a finite infrared gluon propagator. However, the agreement between analytic and numerical studies is only at the qualitative level in three and in four dimensions. In particular, the infrared exponent of the ghost propagator seems to be smaller than the one predicted analytically and the gluon propagator seems to display a (finite) nonzero value at zero momentum. It has been argued that this discrepancy might go away once simulations are done on much larger lattice sizes than the ones used up to now. Here we present data in three and four space-time dimensions using huge lattices in the scaling region, i.e. up to 320^3 at beta = 3.0 and up to 128^4 at beta = 2.2, corresponding to V \approx (85 fm)^3 and V \approx (27 fm)^4. Simulations have been done on the IBM supercomputer at the University of Sao Paulo
7 pages, 1 table and 3 figures
References in corpus (8)
- Quark Confinement from Color Confinement
- Scaling behavior and positivity violation of the gluon propagator in full QCD
- Uniqueness of infrared asymptotics in Landau gauge Yang-Mills theory II
- Exploratory study of three-point Green's functions in Landau-gauge Yang-Mills theory
- Two- and three-point Green's functions in two-dimensional Landau-gauge Yang-Mills theory
- Improved Landau gauge fixing and the suppression of finite-volume effects of the lattice gluon propagator
- Just how different are SU(2) and SU(3) Landau-gauge propagators in the IR regime?
- Infrared-suppressed gluon propagator in 4d Yang-Mills theory in a Landau-like gauge
Cited by in corpus (35)
- Lattice gluodynamics computation of Landau-gauge Green's functions in the deep infrared
- IR finiteness of the ghost dressing function from numerical resolution of the ghost SD equation
- On the massive gluon propagator, the PT-BFM scheme and the low-momentum behaviour of decoupling and scaling DSE solutions
- On the Quark-Gluon Vertex and Quark-Ghost Kernel: combining Lattice Simulations with Dyson-Schwinger equations
- Lattice evidence for the family of decoupling solutions of Landau gauge Yang-Mills theory
- The low-momentum ghost dressing function and the gluon mass
- Properties of the Faddeev-Popov operator in the Landau gauge, matter confinement and soft BRST breaking
- On the elimination of infinitesimal Gribov ambiguities in non-Abelian gauge theories
- On non-primitively divergent vertices of Yang-Mills theory
- A local and renormalizable framework for the gauge-invariant operator in Euclidean Yang-Mills theories in linear covariant gauges
- Gauge invariant Ansatz for a special three-gluon vertex
- condensation and physical parameters
- Effect of the Quark-Gluon Vertex on Dynamical Chiral Symmetry Breaking
- The one loop MSbar static potential in the Gribov-Zwanziger Lagrangian
- Gluon mass through ghost synergy
- Linear Covariant Gauges on the Lattice
- The effects of a family non-universal Z-prime boson on B--->pipi decays
- The Podolsky propagator in gap and bound-state equations
- Gribov copies and anomalous scaling
- Exploring new horizons of the Gribov problem in Yang-Mills theories
- Nonextensive lattice gauge theories: algorithms and methods
- Gribov as a Phase Transition
- Features of the Refined Gribov-Zwanziger theory: propagators, BRST soft symmetry breaking and glueball masses
- Numerical test of the Gribov-Zwanziger scenario in Landau gauge
- Spectrum of a four-dimensional Yang-Mills theory
- Gluon Propagators in Linear Covariant Gauge
- Two-dimensional gluon propagators in maximally Abelian gauge in SU(2) Lattice QCD
- Lower dimensional Yang-Mills theory as a laboratory to study the infrared regime
- The Landau gauge gluon propagator at zero and finite temperature: accounting for the combined finite lattice spacing and finite volume effects
- Landau confining replica model from an explicitly breaking of a SU(3) group without auxiliary fields
- Bounds on free energy in QCD
- From Running Gluon Mass to Chiral Symmetry Breaking
- Infrared behavior of QCD from the Dyson-Schwinger formalism
- Unquenching the infrared sector of QCD
- Physical unitarity of a massive Yang-Mills theory without the Higgs field from a viewpoint of confinement