Minimum Of QCD Effective Action As Test Of QCD Confinement Parameter
Abstract
A new approach to the non-perturbative regime of QCD is proposed by introducing a (non-hermitian) field related to the usual gluon field by = where goes to zero after differentiation, and is a parameter which `runs' with momentum (). An exact treatment yields a structure for the gluon propagator, where =, showing confinement in the instantaneous limit. This propagator was recently employed to evaluate some basic condensates and their temperature dependence (in the cosmological context), which were all reproduced for (termed the `confinement scale parameter'), in association with the QCD scale parameter [hep-ph/0109278]. This paper seeks to provide a formal basis for the ratio by employing the minimality condition for the effective action , up to the 2-loop level, using the Cornwall-Jackiw formalism for composite operators. To that end the mass function , determined via the Schwinger-Dyson equation (as a zero of the functional derivative of w.r.t ), acts as a feeder, and the stationarity condition on as function of and gives the ratio = 0.246, in fair accord with the value 0.20 given above. Inclusion of a two-loop is crucial for the agreement. \\ Keywords: confinement scale, QCD effective action, minimality condition, -field.
Keywords
Cite
@article{arxiv.hep-ph/0207258,
title = {Minimum Of QCD Effective Action As Test Of QCD Confinement Parameter},
author = {A. N. Mitra},
journal= {arXiv preprint arXiv:hep-ph/0207258},
year = {2007}
}
Comments
LaTex file, 12 pages on dvi