English

Hadronic molecule model for the doubly charmed state $T^{+}_{cc}$

High Energy Physics - Phenomenology 2022-06-29 v3 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

The mass, current coupling, and width of the doubly charmed four-quark meson Tcc+T_{cc}^{+} are explored by treating it as a hadronic molecule Mcc+D0D+ M_{cc}^{+}\equiv D^{0}D^{\ast +}. The mass and current coupling of this molecule are calculated using the QCD two-point sum rule method by including into analysis contributions of various vacuum condensates up to dimension 10 10 . The prediction for the mass m=(4060±130) MeVm=(4060\pm 130)~\mathrm{MeV} exceeds the two-meson D0D+D^{0}D^{\ast +} threshold 3875.1 MeV3875.1~\mathrm{MeV}, which makes decay of the molecule Mcc+M_{cc}^{+} to a pair of conventional mesons D0D+ D^{0}D^{\ast +} kinematically allowed process. The strong coupling GG of particles at the vertex Mcc+D0D+M_{cc}^{+}D^{0}D^{\ast +} is found by applying the QCD three-point sum rule approach, and used to evaluate the width of the decay Mcc+D0D+M_{cc}^{+} \to D^{0}D^{\ast +}. Obtained result for the width Γ=(3.8±1.7) MeV \Gamma=(3.8\pm 1.7)~\mathrm{MeV} demonstrates that Mcc+M_{cc}^{+} is wider than the resonance Tcc+T_{cc}^{+}.

Keywords

Cite

@article{arxiv.2201.02788,
  title  = {Hadronic molecule model for the doubly charmed state $T^{+}_{cc}$},
  author = {S. S. Agaev and K. Azizi and H. Sundu},
  journal= {arXiv preprint arXiv:2201.02788},
  year   = {2022}
}

Comments

13 Pages and 4 Figures

R2 v1 2026-06-24T08:43:34.246Z