English

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 ππN\pi\pi N and coupled channels using the experimental two-body tt-matrices for the πN\pi N interaction as input and unitary chiral dynamics to describe the interaction between the rest of coupled channels. In addition to the N(1710)N^*(1710) obtained before with the ππN\pi\pi N channel, we obtain, for Jπ=1/2+J^\pi=1/2^+ and total isospin of the three-body system I=1/2I=1/2, a resonance peak whose mass is around 2080 MeV and width of 54 MeV, while for I=3/2I=3/2 we find a peak around 2126 MeV and 42 MeV of width. These two resonances can be identified with the N(2100)N^* (2100) and the Δ(1910)\Delta (1910), respectively. We obtain another peak in the isospin 1/2 configuration, around 1920 MeV which can be interpreted as a resonance in the Na0(980)N a_0(980) and Nf0(980)N f_0(980) 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