Schwinger mechanism for gluons from lattice QCD

Continuum and lattice analyses have revealed the existence of a mass-scale in the gluon two-point Schwinger function. It has long been conjectured that this expresses the action of a Schwinger mechanism for gauge boson mass generation in quantum chromodynamics (QCD). For such to be true, it is neces...

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Veröffentlicht in:Physics letters. B 2023-06, Vol.841, p.137906, Article 137906
Hauptverfasser: Aguilar, A.C., De Soto, F., Ferreira, M.N., Papavassiliou, J., Pinto-Gómez, F., Roberts, C.D., Rodríguez-Quintero, J.
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Sprache:eng
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Zusammenfassung:Continuum and lattice analyses have revealed the existence of a mass-scale in the gluon two-point Schwinger function. It has long been conjectured that this expresses the action of a Schwinger mechanism for gauge boson mass generation in quantum chromodynamics (QCD). For such to be true, it is necessary and sufficient that a dynamically-generated, massless, colour-carrying, scalar gluon+gluon correlation emerges as a feature of the dressed three-gluon vertex. Working with results on elementary Schwinger functions obtained via the numerical simulation of lattice-regularised QCD, we establish with an extremely high level of confidence that just such a feature appears; hence, confirm the conjectured origin of the gluon mass scale.
ISSN:0370-2693
1873-2445
DOI:10.1016/j.physletb.2023.137906