English

Isospin violation effect and three-body decays of the $T_{cc}^{+}$ state

High Energy Physics - Phenomenology 2024-11-18 v1

Abstract

In this work, we make a study of Tcc+T_{cc}^+ state observed by the LHCb collaboration in 2021. In obtaining the effective potentials using the One-Boson-Exchange Potential Model we use an exponential form factor, and find that in the short and medium range, the contributions of the π\pi, ρ\rho and ω\omega exchanges are comparable while in the long range the pion-exchange contribution is dominant. Based on the assumption that Tcc+T_{cc}^+ is a loosely bound state of DDD^*D, we focus on its three-body decay using the meson-exchange method. Considering that the difference between the thresholds of D+D0D^{*+}D^0 and D0D+D^{*0}D^+ is even larger than the binding energy of Tcc+T_{cc}^+, the isospin-breaking effect is amplified by the small binding energy of Tcc+T_{cc}^+. Explicitly including such an isospin-breaking effect we obtain, by solving the Schr\"{o}dinger equation, that the probability of the isoscalar component is about 91%91\% while that of the isovector component is around 9%9\% for Tcc+T_{cc}^+. Using the experimental value of the mass of Tcc+T_{cc}^+ as an input, we obtain the wave function of Tcc+T_{cc}^+ and further obtain its width via the three-body hadronic as well as the radiative decays. The total width we obtain is in agreement with the experimental value of the LHCb measurement with a unitarised Breit-Wigner profile. Conversely, the current results support the conclusion that Tcc+T_{cc}^+ is a hadronic molecule of DDD^*D.

Keywords

Cite

@article{arxiv.2405.00525,
  title  = {Isospin violation effect and three-body decays of the $T_{cc}^{+}$ state},
  author = {Zhi-Feng Sun and Ning Li and Xiang Liu},
  journal= {arXiv preprint arXiv:2405.00525},
  year   = {2024}
}

Comments

10 pages, 2 figures