期刊
PHYSICS LETTERS B
卷 761, 期 -, 页码 444-449出版社
ELSEVIER
DOI: 10.1016/j.physletb.2016.08.065
关键词
Lattice simulations; Three-gluon vertex; Zero crossing; Schwinger-Dyson equations
资金
- Spanish MINECO [FPA2014-53631-C2-1-P, FPA2014-53631-C2-2-P, SEV-2014-0398]
- Generalitat Valenciana [Prometeo II/2014/066]
- Alexander von Humboldt Foundation
We report on new results on the infrared behavior of the three-gluon vertex in quenched Quantum Chromodynamics, obtained from large-volume lattice simulations. The main focus of our study is the appearance of the characteristic infrared feature known as 'zero crossing', the origin of which is intimately connected with the nonperturbative masslessness of the Faddeev-Popov ghost. The appearance of this effect is clearly visible in one of the two kinematic configurations analyzed, and its theoretical origin is discussed in the framework of Schwinger-Dyson equations. The effective coupling in the momentum subtraction scheme that corresponds to the three-gluon vertex is constructed, revealing the vanishing of the effective interaction at the exact location of the zero crossing. (C) 2016 The Authors. Published by Elsevier B.V.
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