4.7 Article

Ghost dynamics in the soft gluon limit

期刊

PHYSICAL REVIEW D
卷 104, 期 5, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevD.104.054028

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资金

  1. CNPq [307854/2019-1, 464898/2014-5]
  2. FAPESP [2017/05685-2, 2019/05656-8, 2020/12795-1]
  3. Spanish MICINN [FPA2017-84543-P, PID2019107844-GB-C2]
  4. Generalitat Valenciana [Prometeo/2019/087]
  5. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior-Brasil (CAPES) [001]
  6. regional Andalusian Project [P18-FR-5057]

向作者/读者索取更多资源

In this study, the dynamics of the ghost sector in quenched QCD in the Landau gauge have been investigated using large-volume lattice simulations as key inputs. The results show excellent agreement between numerical treatments and lattice data, indicating a high level of consistency in both physical concepts and computational schemes.
We present a detailed study of the dynamics associated with the ghost sector of quenched QCD in the Landau gauge, where the relevant dynamical equations are supplemented with key inputs originating from large-volume lattice simulations. In particular, we solve the coupled system of Schwinger-Dyson equations that governs the evolution of the ghost dressing function and the ghost-gluon vertex, using as input for the gluon propagator lattice data that have been cured from volume and discretization artifacts. In addition, we explore the soft gluon limit of the same system, employing recent lattice data for the three-gluon vertex that enters in one of the diagrams defining the Schwinger-Dyson equation of the ghost-gluon vertex. The results obtained from the numerical treatment of these equations are in excellent agreement with lattice data for the ghost dressing function, once the latter have undergone the appropriate scale-setting and artifact elimination refinements. Moreover, the coincidence observed between the ghost-gluon vertex in general kinematics and in the soft gluon limit reveals an outstanding consistency of physical concepts and computational schemes.

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