Simultaneous Dalitz-plot decomposition of the processes in the 4.13-4.36 GeV region using dispersive final-state interactions
arXiv:2606.07225
Abstract
We present a joint analysis of the processes and at center-of-mass energies from 4.13 to 4.36 GeV. The amplitudes are constructed using the Dalitz-plot decomposition formalism, with the energy dependence encoded through the and resonant structures together with a non-resonant production mechanism. The scalar final-state interaction is treated dispersively using a coupled-channel Omnès representation. This allows us to describe the measured total cross sections and one-dimensional invariant-mass distributions with a single set of energy-independent parameters. We find that a purely resonant description of the BESIII data is insufficient, requiring a non-resonant term at the amplitude level which undergoes rescattering. Within the present isobar model, we extract Breit-Wigner parameters for the , , and states, and determine the corresponding subprocess cross sections.
15 pages, 12 figures, 4 tables