English

Spontaneous chiral symmetry breaking in holographic soft wall models

High Energy Physics - Phenomenology 2022-01-05 v2 High Energy Physics - Lattice High Energy Physics - Theory

Abstract

We investigate non-linear extensions of the holographic soft wall model proposed by Karch, Katz, Son and Stephanov [1] including non-minimal couplings in the five-dimensional action. The non-minimal couplings bring a new parameter a0a_0 which controls the transition between spontaneous and explicit symmetry breaking near the limit of massless quarks (the chiral limit). In the physical region (positive quark mass), we show that above a critical value of the parameter a0a_0 the chiral condensate qˉq\langle \bar{q} q \rangle is finite in the chiral limit, signifying spontaneous chiral symmetry breaking. This result is supported by the lightest states arising in the spectrum of the pseudoscalar mesons, which become massless in the chiral limit and are therefore intrepreted as Nambu-Goldstone bosons. Moreover, the decay constants of the pseudoscalar mesons also support this conclusion, as well as the Gell-Mann-Oakes-Renner (GOR) relation satisfied by the lightest states. We also calculate the spectrum of scalar, vector, and axial-vector mesons with their corresponding decay constants. We describe the evolution of masses and decay constants with the increasing of the quark mass and for the physical mass we compare our results against available experimental data. Finally, we do not find instabilities in our model for the physical region (positive quark mass).

Keywords

Cite

@article{arxiv.2107.10983,
  title  = {Spontaneous chiral symmetry breaking in holographic soft wall models},
  author = {Alfonso Ballon-Bayona and Luis A. H. Mamani and Diego M. Rodrigues},
  journal= {arXiv preprint arXiv:2107.10983},
  year   = {2022}
}

Comments

V1 53 pages, 25 figures. V2: 55 pages, 26 figures, new subsection on the violation of the BF bound, references added