Non-Abelian Ball-Chiu vertex for arbitrary Euclidean momenta

A. C. Aguilar, J. C. Cardona, M. N. Ferreira, and J. Papavassiliou
Phys. Rev. D 96, 014029 – Published 28 July 2017

Abstract

We determine the non-Abelian version of the four nontransverse form factors of the quark-gluon vertex, using exact expressions derived from the Slavnov-Taylor identity that this vertex satisfies. In addition to the quark and ghost propagators, a key ingredient of the present approach is the quark-ghost scattering kernel, which is computed within the one-loop dressed approximation. The vertex form factors obtained from this procedure are evaluated for arbitrary Euclidean momenta, and display features not captured by the well-known Ball-Chiu vertex, deduced from the Abelian (ghost-free) Ward identity. Particularly interesting in this analysis is the so-called soft-gluon limit, which, unlike other kinematic configurations considered, is especially sensitive to the approximations employed for the vertex entering in the quark-ghost scattering kernel, and may even be affected by a subtle numerical instability. As an elementary application of the results obtained, we evaluate and compare certain renormalization-point-independent combinations, which contribute to the interaction kernels appearing in the standard quark gap and Bethe-Salpeter equations. In doing so, even though all form factors of the quark-gluon vertex, and in particular the transverse ones which are unconstrained by our procedure, enter nontrivially in the aforementioned kernels, only the contribution of a single form factor, corresponding to the classical (tree-level) tensor, will be considered.

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  • Received 7 November 2016

DOI:https://doi.org/10.1103/PhysRevD.96.014029

© 2017 American Physical Society

Physics Subject Headings (PhySH)

  1. Research Areas
Particles & Fields

Authors & Affiliations

A. C. Aguilar1, J. C. Cardona1, M. N. Ferreira1, and J. Papavassiliou2

  • 1University of Campinas—UNICAMP, Institute of Physics “Gleb Wataghin,” 13083-859 Campinas, São Paulo, Brazil
  • 2Department of Theoretical Physics and IFIC, University of Valencia and CSIC, E-46100 Valencia, Spain

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Vol. 96, Iss. 1 — 1 July 2017

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