Gluon chain formation in presence of static charges
A.Ostrander, E.Santopinto, A.P.Szczepaniak, A.Vassallo

TL;DR
This paper explores the gluon chain model as a way to understand the chromoelectric flux between static quark-antiquark pairs, using large-N_C limit techniques in Coulomb gauge to incorporate magnetic confinement effects.
Contribution
It provides a theoretical derivation of the gluon chain model from the Coulomb gauge Hamiltonian with a background field, linking magnetic confinement to flux tube formation.
Findings
Gluon chain formation explained via Coulomb gauge Hamiltonian
Connection established between magnetic confinement and flux tubes
Theoretical framework for gluon chains in QCD
Abstract
We consider the origins of the gluon chain model. The model serves as a realization of the dynamics of the chromoelectric flux between static quark-antiquark sources. The derivation is based on the large-N_C limit of the Coulomb gauge Hamiltonian in the presence of a background field introduced to model magnetic confinement.
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