English

The reaction $\pi N \to \omega N$ in a dynamical coupled-channel approach

Nuclear Theory 2022-12-07 v3 High Energy Physics - Phenomenology Nuclear Experiment Computational Physics

Abstract

A refined investigation on light flavor meson-baryon scatterings is performed using a dynamical coupled-channel approach, the J\"ulich-Bonn model, that respects unitartiy and analyticity constraints. The channel space of πN\pi N, πΔ\pi \Delta, σN\sigma N, ρN\rho N, ηN\eta N, KΛK \Lambda and KΣK \Sigma is extended by adding the ωN\omega N final state. The spectra of NN^* and Δ\Delta resonances are extracted in terms of complex poles of the scattering amplitudes, based on the result of a global fit to a worldwide collection of data, in the energy region from the πN\pi N threshold to center-of-mass energy z=2.3z=2.3 GeV. A negative value of the ωN\omega N elastic spin-averaged scattering length is extracted, questioning the existence of bound states of the ω\omega meson in the nuclear matter.

Keywords

Cite

@article{arxiv.2208.03061,
  title  = {The reaction $\pi N \to \omega N$ in a dynamical coupled-channel approach},
  author = {Yu-Fei Wang and Deborah Rönchen and Ulf-G. Meißner and Yu Lu and Chao-Wei Shen and Jia-Jun Wu},
  journal= {arXiv preprint arXiv:2208.03061},
  year   = {2022}
}

Comments

23 pages, 16 figures, one supplemental material