Two and three-point Green's functions in two-dimensional Landau-gauge Yang-Mills theory

Apr, 2007
14 pages
Published in:
  • Phys.Rev.D 75 (2007) 116004
e-Print:

Citations per year

20072011201520192023051015
Abstract: (arXiv)
The ghost and gluon propagator and the ghost-gluon and three-gluon vertex of two-dimensional SU(2) Yang-Mills theory in (minimal) Landau gauge are studied using lattice gauge theory. It is found that the results are qualitatively similar to the ones in three and four dimensions. The propagators and the Faddeev-Popov operator behave as expected from the Gribov-Zwanziger scenario. In addition, finite volume effects affecting these Green's functions are investigated systematically. The critical infrared exponents of the propagators, as proposed in calculations using stochastic quantization and Dyson-Schwinger equations, are confirmed quantitatively. For this purpose lattices of volume up to (42.7 fm)^2 have been used.
  • 12.38.Aw
  • 11.15.Ha
  • 11.10.Kk
  • gluon: propagator
  • ghost: propagator
  • finite size: effect
  • quantization: stochastic
  • Dyson-Schwinger equation
  • infrared problem
  • Landau gauge