Role of the state in the and decays
arXiv:1509.08099 · doi:10.1016/j.physletb.2015.12.064
Abstract
We study the role of the resonance in the decays of and . The theoretical approach is based on the results of chiral unitary theory where the resonance is dynamically generated from the interaction. In order to further test the dynamical nature of the state, we investigate the decay close to the threshold and make predictions for the ratio of the invariant mass distributions of the decay and the partial decay width with all the parameters of the mechanism fixed in previous studies. The results can be tested in future experiments and therefore offer new clues on the nature of the state.
5 pages, 3 figures; accepted by Phys. Lett. B
References in corpus (9)
- Big-Bang Nucleosynthesis
- Glueballs, Hybrids, Multiquarks. Experimental facts versus QCD inspired concepts
- Constituent quark model study of the meson spectra
- A low-lying scalar meson nonet in a unitarized meson model
- decays into , and isospin breaking
- Study of J/psi->eta phi pi+pi- at BESIII
- Light axial vector mesons
- The decay of the and its nature as a molecule
- The reaction within an effective Lagrangian approach
Cited by in corpus (6)
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- Theoretical study in the and decays