Isospin violation effect and three-body decays of the $T_{cc}^{+}$ state
Abstract
In this work, we make a study of 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 , and exchanges are comparable while in the long range the pion-exchange contribution is dominant. Based on the assumption that is a loosely bound state of , we focus on its three-body decay using the meson-exchange method. Considering that the difference between the thresholds of and is even larger than the binding energy of , the isospin-breaking effect is amplified by the small binding energy of . 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 while that of the isovector component is around for . Using the experimental value of the mass of as an input, we obtain the wave function of 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 is a hadronic molecule of .
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