Low-energy scattering of the and system
arXiv:2601.18103 · doi:10.1016/j.physletb.2026.140765
Abstract
We investigate the low-energy interactions between the charmonium state and the light pseudoscalar mesons ( and ) within the framework of dispersion relations. We demonstrate that the symmetry-breaking terms in the chiral Lagrangian induce mixing between the bare charmonium fields, necessitating a diagonalization procedure to correctly identify the physical and states. Using the resulting diagonalized Lagrangian, we construct the crossed-channel amplitudes for and incorporate the and rescattering effects through dispersion relations. This framework is used consistently both in the phenomenological extraction of the transition parameters from and in the continuation of the crossed amplitudes to the near-threshold region. As a result, we determine both the scattering lengths and the effective ranges. We obtain the upper-bound estimates ~fm and ~fm, where the negative sign indicates an attractive interaction without a bound state in our convention. Our results show that the interaction is moderately enhanced relative to the pion channel, driven by explicit chiral symmetry breaking. Furthermore, a quantitative comparison of the coupled-channel mechanism, where and couple to open-charm channels, reveals that both and scatterings are predominantly governed by the soft-gluon exchange mechanism.
12 pages, 6 figures
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