English

Inverse Mass Hierarchy of Light Scalar Mesons Driven by Anomaly-Induced Flavor Breaking

High Energy Physics - Phenomenology 2020-05-27 v2

Abstract

We propose a novel mechanism to reproduce the observed mass hierarchy for the scalar mesons lighter than 1 GeV (called the inverse hierarchy) regarding them as mesons made of a quark and an anti-quark (qqˉq\bar{q} mesons). The source is provided by the SU(3)-flavor symmetry-breaking induced by U(1) axial anomaly. In particular, the anomaly term including the explicit-chiral symmetry-breaking plays a significant role for the light scalar meson spectrum. To be concrete, we construct a linear sigma model for the scalar mesons of qqˉq\bar{q} type together with their pseudoscalar chiral partners, including an anomaly-induced explicit-chiral symmetry-breaking term. We find that, due to the proposed mechanism, the inverse hierarchy, i.e., m[a0(980)]m[f0(980)]>m[K0(700)]>m[f0(500)]m\left[ a_0 (980) \right] \simeq m\left[ f_0 (980) \right] > m \left[ K_0^\ast (700) \right] > m \left[ f_0(500) \right] is indeed realized. Consequently, the quark content of f0(500)f_0 (500) is dominated by the isoscalar uˉu+dˉd\bar uu+ \bar dd component, and f0(980)f_0 (980) is by the strange quark bilinear's, ssˉs\bar{s}.

Keywords

Cite

@article{arxiv.1910.09146,
  title  = {Inverse Mass Hierarchy of Light Scalar Mesons Driven by Anomaly-Induced Flavor Breaking},
  author = {Yoshiki Kuroda and Masayasu Harada and Shinya Matsuzaki and Daisuke Jido},
  journal= {arXiv preprint arXiv:1910.09146},
  year   = {2020}
}

Comments

15 pages, 2 figures