2,192 research outputs found
Dynamical quarks effects on the gluon propagation and chiral symmetry restoration
We exploit the recent lattice results for the infrared gluon propagator with
light dynamical quarks and solve the gap equation for the quark propagator.
Chiral symmetry breaking and confinement (intimately tied with the analytic
properties of QCD Schwinger functions) order parameters are then studied.Comment: Contribution to QCD-TNT-III: "From quarks and gluons to hadronic
matter: A bridge too far?
Quark Confinement from different Dressed Gluon Propagators
The gap equation in quantum chromodynamics is solved by incorporating differ-
ent gluon dressing functions, some of them derived from a quark-diquark potential
that exhibits a conformal symmetry. By using the bare vertex and working in the
Landau gauge, the quark mass function is found to have an infrared enhancement
that smoothly transitions to an asymptotically free behavior at high momentum,
which is consistent with the predictions of Schwinger-Dyson equations. Addi-
tionally, these quark propagators violate reflexion positivity, indicating that the
gluon dressing provides clear evidence of quark confinement
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