Relating the Quark and Gluon Condensates Through the QCD Vacuum Energy
arXiv:hep-ph/9906299 · doi:10.1103/PhysRevD.61.054012
Abstract
Using the Cornwall-Jackiw-Tomboulis effective potential for composite operators we compute the QCD vacuum energy as a function of the dynamical quark and gluon propagators, which are related to their respective condensates as predicted by the operator product expansion. The identification of this result to the vacuum energy obtained from the trace of the energy-momentum tensor allow us to study the gluon self-energy, verifying that it is fairly represented in the ultraviolet by the asymptotic behavior predicted by the operator product expansion, and in the infrared it is frozen at its asymptotic value at one scale of the order of the dynamical gluon mass. We also discuss the implications of this identity for heavy and light quarks. For heavy quarks we recover, through the vacuum energy calculation, the relation $m_{f} <{\bar{ψ_f}}ψ_f> \sim - {1/12} \gc$ obtained many years ago with QCD sum rules.
21 pages, LaTeX, final version to appear in Physical Review D
Cited by in corpus (17)
- Non-perturbative comparison of QCD effective charges
- Relating a gluon mass scale to an infrared fixed point in pure gauge QCD
- Freezing of the QCD coupling constant and solutions of Schwinger-Dyson equations
- Power-law running of the effective gluon mass
- Dynamical gluon mass corrections in heavy quarkonia decays
- Energy criterion to select the behavior of dynamical masses in technicolor models
- Low-Energy Theorems from Holography
- On the dynamical mass generation in confining Yang-Mills theories
- Determination of the quantum part of the truly nonperturbative Yang-Mills vacuum energy density in the covariant gauge QCD
- Non-perturbative gluons in diffractive photo-production of J/Psi
- QED Energy-Momentum Trace as a Force in Astrophysics
- Meson Form Factors and Non-Perturbative Gluon Propagators
- A dynamical gluon mass solution in Mandelstam's approximation
- Vacuum energy as a c-function for theories with dynamically generated masses
- Confinement of Fermions in Tachyon Matter at Finite Temperature
- Gluon propagator in diffractive scattering
- QCD fixed points: Banks-Zaks scenario or dynamical gluon mass generation?