Solution to Faddeev equations with two-body experimental amplitudes as input and application to J^P=1/2^+, S=0 baryon resonances
Nuclear Theory
2009-09-15 v2
Abstract
We solve the Faddeev equations for the two meson-one baryon system and coupled channels using the experimental two-body -matrices for the interaction as input and unitary chiral dynamics to describe the interaction between the rest of coupled channels. In addition to the obtained before with the channel, we obtain, for and total isospin of the three-body system , a resonance peak whose mass is around 2080 MeV and width of 54 MeV, while for we find a peak around 2126 MeV and 42 MeV of width. These two resonances can be identified with the and the , respectively. We obtain another peak in the isospin 1/2 configuration, around 1920 MeV which can be interpreted as a resonance in the and systems.
Keywords
Cite
@article{arxiv.0812.2235,
title = {Solution to Faddeev equations with two-body experimental amplitudes as input and application to J^P=1/2^+, S=0 baryon resonances},
author = {A. Martínez Torres and K. P. Khemchandani and E. Oset},
journal= {arXiv preprint arXiv:0812.2235},
year = {2009}
}
Comments
published version