We present the general derivation of the full nonperturbative equation that governs the momentum evolution of the dynamically generated gluon mass, in the Landau gauge. The entire construction hinges crucially on the inclusion of longitudinally coupled vertices containing massless poles of nonperturbative origin, which preserve the form of the fundamental Slavnov-Taylor identities of the theory. The mass equation is obtained from a previously unexplored version of the Schwinger-Dyson equation for the gluon propagator, particular to the pinch technique-background field method formalism, which involves a reduced number of two-loop dressed diagrams, thus simplifying the calculational task considerably. The two-loop contributions turn out to be...
The dynamically generated effective gluon mass is known to depend non-trivially on the momentum, dec...
We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson e...
In this article we study the general structure and special properties of the Schwinger-Dyson equatio...
We present a pedagogical overview of the nonperturbative mechanism that endows gluons with a dynamic...
In this article we derive the integral equation that controls the momentum dependence of the effecti...
The effective gluon propagator constructed with the pinch technique is governed by a Schwinger-Dyson...
The effective gluon propagator constructed with the pinch technique is governed by a Schwinger-Dyson...
We discuss the solutions obtained for the gluon propagador in Landau gauge within two distinct appro...
We obtain a solution for the gluon propagador in Landau gauge within two distinct approximations for...
We discuss the solutions obtained for the gluon propagador in Landau gauge within two distinct appro...
We present a detailed, all-order study of gluon mass generation within the massless bound-state form...
We present a detailed, all-order study of gluon mass generation within the massless bound-state form...
We discuss the pure gauge Schwinger-Dyson equation for the gluon propagator in the Landau gauge with...
We review the Pinch Technique - Background Field Method (PT-BFM) framework for formulating and solvi...
We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson e...
The dynamically generated effective gluon mass is known to depend non-trivially on the momentum, dec...
We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson e...
In this article we study the general structure and special properties of the Schwinger-Dyson equatio...
We present a pedagogical overview of the nonperturbative mechanism that endows gluons with a dynamic...
In this article we derive the integral equation that controls the momentum dependence of the effecti...
The effective gluon propagator constructed with the pinch technique is governed by a Schwinger-Dyson...
The effective gluon propagator constructed with the pinch technique is governed by a Schwinger-Dyson...
We discuss the solutions obtained for the gluon propagador in Landau gauge within two distinct appro...
We obtain a solution for the gluon propagador in Landau gauge within two distinct approximations for...
We discuss the solutions obtained for the gluon propagador in Landau gauge within two distinct appro...
We present a detailed, all-order study of gluon mass generation within the massless bound-state form...
We present a detailed, all-order study of gluon mass generation within the massless bound-state form...
We discuss the pure gauge Schwinger-Dyson equation for the gluon propagator in the Landau gauge with...
We review the Pinch Technique - Background Field Method (PT-BFM) framework for formulating and solvi...
We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson e...
The dynamically generated effective gluon mass is known to depend non-trivially on the momentum, dec...
We study the necessary conditions for obtaining infrared finite solutions from the Schwinger-Dyson e...
In this article we study the general structure and special properties of the Schwinger-Dyson equatio...