Published December 15, 1992 | Version v1
Journal article

Transversally confined, noncausal gluons

Creators

  • 1. Physique Theorique, Institut Nonlineaire de Nice, Universite de Nice, 06108 Nice CEDEX 2 (France)

Description

A nonperturbative approach to the gluonic sector of four-dimensional QCD is defined, in which a gap equation is used to generate a mass scale M via dimensional transmutation in an arbitrary axial gauge, using a modification of Halpern's method of replacing conventional functional integration over gauge potentials by integration over equivalent field strengths. A consistency condition is used to show that, without further radiative corrections, the gluonic QCD system is apparently diaelectromagnetic against the insertion of color-electromagnetic fields when the spatial shape of the nonperturbative vacuum state is associated with tubes of color-electric or -magnetic flux. A final Gaussian approximation to the relevant functional integral over field strength leads to an extremely simple result of ''effective gluons'' propagating as ''free particles'' with a matrix-valued mass term, by means of a noncausal ''propagator'' that is effectively confined to the interior of a spatial tube, and that falls off with a large momentum k as [k2]-2. A non-Gaussian extension of this result for the effective gluon propagator (EGP) can be guessed. Either form of EGP may be used to compute a finite, gauge-invariant condensate left-angle g2F2 right-angle which corresponds to color-electric flux inside and color-magnetic flux outside the tube, or vice versa. The introduction of quarks leads to a ''modified QED'' in an external, tadpole-generated field, where the EGP replaces the bare photon propagator

Additional details

Publishing Information

Journal Title
Physical Review. D, Particles Fields
Journal Volume
46
Journal Issue
12
Journal Page Range
p. 5574-5589.
ISSN
0556-2821
CODEN
PRVDAQ