We study the quark-gluon vertex in the limit of vanishing gluon momentum using lattice QCD with two flavors of O(a) improved Wilson fermions, for several lattice spacings and quark masses. We find that all three form factors in this kinematics have a significant infrared strength and that both the leading form factor λ1, multiplying the tree-level vertex structure, and the scalar, chiral symmetry breaking form factor λ3 are significantly enhanced in the infrared compared to the quenched (Nf=0) case. These enhancements are orders of magnitude larger than predicted by one-loop perturbation theory. We find only a weak dependence on the lattice spacing and quark mass
© 2008 Elsevier Inc. All rights reserved.The infrared behavior of the quark–gluon vertex of quenched...
We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lat...
We compute the quark-gluon vertex in quenched lattice QCD, in the Landau gauge using an off-shell me...
We study the quark-gluon vertex in the limit of vanishing gluon momentum using lattice QCD with two ...
We study the quark-gluon vertex in the limit of vanishing gluon momentum using lattice QCD with two ...
The original publication can be found at www.springerlink.com Submitted to Cornell University’s onli...
We compute the quark-gluon vertex in quenched lattice QCD, in the Landau gauge using an off-shell m...
The Dyson–Schwinger quark equation is solved for the quark-gluon vertex using the most recent lattic...
Abstract The Dyson–Schwinger quark equation is solved for the quark-gluon vertex using the most rece...
The quark-gluon vertex in Landau gauge is studied in the quenched approximation using the Sheikholes...
We investigate the dressed quark-gluon vertex combining two established nonperturbative approaches t...
The quark-gluon vertex is an important object of QCD. Studies have shown that this quantity is relev...
Copyright © 2001. Submitted to Cornell University’s online archive www.arXiv.org in 2001 by Dr. Anth...
Abstract The soft gluon limit of the longitudinal part of the quark-gluon vertex is studied by resor...
We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lat...
© 2008 Elsevier Inc. All rights reserved.The infrared behavior of the quark–gluon vertex of quenched...
We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lat...
We compute the quark-gluon vertex in quenched lattice QCD, in the Landau gauge using an off-shell me...
We study the quark-gluon vertex in the limit of vanishing gluon momentum using lattice QCD with two ...
We study the quark-gluon vertex in the limit of vanishing gluon momentum using lattice QCD with two ...
The original publication can be found at www.springerlink.com Submitted to Cornell University’s onli...
We compute the quark-gluon vertex in quenched lattice QCD, in the Landau gauge using an off-shell m...
The Dyson–Schwinger quark equation is solved for the quark-gluon vertex using the most recent lattic...
Abstract The Dyson–Schwinger quark equation is solved for the quark-gluon vertex using the most rece...
The quark-gluon vertex in Landau gauge is studied in the quenched approximation using the Sheikholes...
We investigate the dressed quark-gluon vertex combining two established nonperturbative approaches t...
The quark-gluon vertex is an important object of QCD. Studies have shown that this quantity is relev...
Copyright © 2001. Submitted to Cornell University’s online archive www.arXiv.org in 2001 by Dr. Anth...
Abstract The soft gluon limit of the longitudinal part of the quark-gluon vertex is studied by resor...
We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lat...
© 2008 Elsevier Inc. All rights reserved.The infrared behavior of the quark–gluon vertex of quenched...
We report on a novel and extensive lattice QCD analysis for the three-gluon vertex from quenched lat...
We compute the quark-gluon vertex in quenched lattice QCD, in the Landau gauge using an off-shell me...