Hidden charmed decays of $X(3872)$ within the $D{\bar D}^*$ molecular framework
Abstract
The dipionic transition of the to the was investigated using an effective Lagrangian approach. In this study, the was assumed to be a bound state with the quantum numbers and to decay via triangle and box loops. It is found that the partial decay widths arising from the box loops are one order of magnitude greater than those from the triangle ones. The decay widths are model-dependent, as characterized by the cutoff parameter introduced in the form factor. Moreover, the charged and neutral configurations of the and its mass also influence the decay widths. With our model parameters, the decay widths for the can reach up to several tens of keV. We hope that the current calculations within the molecular interpretation will be helpful for the future experiments.
Cite
@article{arxiv.2503.20183,
title = {Hidden charmed decays of $X(3872)$ within the $D{\bar D}^*$ molecular framework},
author = {Hao-Dong Cai and Zhao-Sai Jia and Gang Li and Shi-Dong Liu},
journal= {arXiv preprint arXiv:2503.20183},
year = {2025}
}
Comments
9 pages, 4 figures, Accepted for publication in Physical Review D