Models of hadron structure are associated with a hadronic scale which allows by perturbative evolution to calculate observables in the deep inelastic region. The resolution of Dyson-Schwinger equations leads to the freezing of the QCD running coupling (effective charge) in the infrared, which is best understood as a dynamical generation of a gluon mass function, giving rise to a momentum dependence which is free from infrared divergences. We use this new development to understand why perturbative treatments are working reasonably well despite the smallness of the hadronic scale
The condition for the global minimum of the vacuum energy for a non-Abelian gauge theory with a dyna...
The non-perturbative behaviour of the non-Abelian gauge theory of strong interactions, namely QCD, i...
Using Mandelstam's approximation to the gluon Dyson-Schwinger equation we calculate the gluon self-e...
Models of hadron structure are associated with a hadronic scale which allows by perturbative evoluti...
Recent progress in the solution of Schwinger-Dyson equations (SDE), as well as lattice simulation of...
We discuss phenomenological tests for the frozen infrared behavior of the running coupling constant ...
We present recent developments on the role of the running coupling constant at the intersection of p...
The possibility that the QCD coupling constant (alpha(s)) has an infrared finite behavior (freezing)...
AbstractThe QCD running coupling αs(Q2) sets the strength of the interactions of quarks and gluons a...
The low energy behavior of a recently proposed model for the massive analytic running coupling of QC...
A new model for the QCD analytic running coupling, which incorporates the effects due to the π meson...
The dynamically generated effective gluon mass is known to depend non-trivially on the momentum, dec...
Using Mandelstam`s approximation to the gluon Dyson-Schwinger equation we calculate the gluon self-e...
The summary of nonperturbative results for the QCD invariant coupling bar{alpha}_s obtained by latti...
We present approximate non-perturbative solutions for the propagators as well as the running couplin...
The condition for the global minimum of the vacuum energy for a non-Abelian gauge theory with a dyna...
The non-perturbative behaviour of the non-Abelian gauge theory of strong interactions, namely QCD, i...
Using Mandelstam's approximation to the gluon Dyson-Schwinger equation we calculate the gluon self-e...
Models of hadron structure are associated with a hadronic scale which allows by perturbative evoluti...
Recent progress in the solution of Schwinger-Dyson equations (SDE), as well as lattice simulation of...
We discuss phenomenological tests for the frozen infrared behavior of the running coupling constant ...
We present recent developments on the role of the running coupling constant at the intersection of p...
The possibility that the QCD coupling constant (alpha(s)) has an infrared finite behavior (freezing)...
AbstractThe QCD running coupling αs(Q2) sets the strength of the interactions of quarks and gluons a...
The low energy behavior of a recently proposed model for the massive analytic running coupling of QC...
A new model for the QCD analytic running coupling, which incorporates the effects due to the π meson...
The dynamically generated effective gluon mass is known to depend non-trivially on the momentum, dec...
Using Mandelstam`s approximation to the gluon Dyson-Schwinger equation we calculate the gluon self-e...
The summary of nonperturbative results for the QCD invariant coupling bar{alpha}_s obtained by latti...
We present approximate non-perturbative solutions for the propagators as well as the running couplin...
The condition for the global minimum of the vacuum energy for a non-Abelian gauge theory with a dyna...
The non-perturbative behaviour of the non-Abelian gauge theory of strong interactions, namely QCD, i...
Using Mandelstam's approximation to the gluon Dyson-Schwinger equation we calculate the gluon self-e...