English

From well-known tensor mesons to yet unknown axial-tensor mesons

High Energy Physics - Phenomenology 2022-08-31 v2

Abstract

While the ground-state tensor (JPC=2++J^{PC}=2^{++}) mesons a2(1320)a_{2}(1320), K2(1430)K_{2}^{\ast}(1430), f2(1270)f_{2}(1270), and f2(1525)f_{2}^{\prime}(1525) are well known experimentally and form an almost ideal nonet of quark-antiquark states, their chiral partners, the ground-states axial-tensor (JPC=2J^{PC}=2^{--}) mesons are poorly settled: only the kaonic member K2(1820)K_2(1820) of the nonet has been experimentally found, whereas the isovector state ρ2\rho_2 and two isoscalar states ω2\omega_2 and ϕ2\phi_2 are still missing. Here, we study masses, strong, and radiative decays of tensor and axial-tensor mesons within a chiral model that links them: the established tensor mesons are used to test the model and to determine its parameters, and subsequently various predictions for their chiral partners, the axial-tensor mesons, are obtained. The results are compared to current lattice QCD outcomes as well as to other theoretical approaches and show that the ground-state axial-tensor mesons are expected to be quite broad, the vector-pseudoscalar mode being the most prominent decay mode followed by the tensor-pseudoscalar one. Nonetheless, their experimental finding seems to be possible in ongoing and/or future experiments.

Keywords

Cite

@article{arxiv.2203.16585,
  title  = {From well-known tensor mesons to yet unknown axial-tensor mesons},
  author = {Shahriyar Jafarzade and Arthur Vereijken and Milena Piotrowska and Francesco Giacosa},
  journal= {arXiv preprint arXiv:2203.16585},
  year   = {2022}
}

Comments

28 pages, v2: small modifications of the main text; corrected typos; added references

R2 v1 2026-06-24T10:32:27.578Z