English

Heavy-meson chiral Lagrangians, effective flavored couplings, SU(4) flavor breaking and their consequences

High Energy Physics - Phenomenology 2022-09-21 v3 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Theory

Abstract

We review heavy quark flavor and spin symmetries, their exploitation in heavy meson effective theories and the flavored couplings of charmed and light mesons in the definition of their effective Lagrangians. We point out how nonperturbative continuum QCD approaches based on Dyson-Schwinger and Bethe-Salpeter equations can be used to calculate strong and leptonic decays of open-charm mesons and heavy quarkonia. The strong decay DDπD^*\to D\pi serves as a benchmark, as it is the only physical open-charm observable that can be related to the effective Lagrangian's couplings. Nonetheless, a quantitative comparison of DDπD^*D\pi, ρDD\rho DD, ρDD\rho D^*D and ρDD\rho D^* D^* couplings for a range of off-shell momenta of the ρ\rho-meson invalidates SU(4)F_F symmetry relations between these couplings. Thus, besides the breaking of flavor symmetry by mass terms in the Lagrangians, the flavor-symmetry breaching in couplings and their dependence on the ρ\rho-meson virtuality cannot be ignored. We also take the opportunity to present new results for the effective J/ψDDJ/\psi DD and J/ψDDJ/\psi D^*D couplings. We conclude this contribution with a discussion on how the description of pseudoscalar and vector DD, DsD_s, BB and BsB_s meson properties can be drastically improved with a modest modification of the flavor-dependence in the Bethe-Salpeter equation.

Keywords

Cite

@article{arxiv.2109.08076,
  title  = {Heavy-meson chiral Lagrangians, effective flavored couplings, SU(4) flavor breaking and their consequences},
  author = {Bruno El-Bennich and Fernando E. Serna},
  journal= {arXiv preprint arXiv:2109.08076},
  year   = {2022}
}

Comments

Contribution to the proceedings of the 10th International Workshop on Charm Physics (CHARM 2020), 26 pages, 4 tables, 5 figures. Additional references, typo in tensor basis of vector mesons corrected. Published in PoS