$X_0(2900)$ and $\chi_{c0}(3930)$ in process $B^+\to D^+ D^- K^+$
Abstract
This study investigates the nature of the and based on experimental results of the process . We focus on the S-wave and molecular states, which can be related to the and , respectively. Using effective Lagrangians, we construct the potential kernel of the and interactions with a one-boson-exchange model, and determine the scattering amplitudes and their poles through a quasipotential Bethe-Salpeter equation approach. By incorporating the potential kernel into the three-body decay process , we evaluate the and invariant mass spectra, as well as the Dalitz plot, with Monte Carlo simulation. A satisfactory fit to the and invariant mass spectra is achieved after introducing additional Breit-Wigner resonances, the , , and states. Prominent signals of the and states appear as peaks in the and invariant mass spectra near 2900 and 3930 MeV, respectively. Clear event concentration of the and states is evident as strips in the Dalitz plot. The results suggest that both and can be interpreted as molecular states, with the inclusion of and necessary to describe structures in the regions near 2900 and 3930 MeV.
Cite
@article{arxiv.2407.13503,
title = {$X_0(2900)$ and $\chi_{c0}(3930)$ in process $B^+\to D^+ D^- K^+$},
author = {Zuo-Ming Ding and Qi Huang and Jun He},
journal= {arXiv preprint arXiv:2407.13503},
year = {2024}
}
Comments
9 pages, 5figures