Recent results studying the masses and widths of low-lying baryon resonances in lattice QCD are presented. The S-wave Nπ scattering lengths for both total isospins I=1/2 and I=3/2 are inferred from the finite-volume spectrum below the inelastic threshold together with the I=3/2P-wave containing the Δ(1232) resonance. A lattice QCD computation employing a combined basis of three-quark and meson-baryon interpolating operators with definite momentum to determine the coupled channel Σπ-NK scattering amplitude in the Λ(1405) region is also presented. Our results support the picture of a two-pole structure suggested by theoretical approaches based on SU(3) chiral symmetry and unitarity.
@article{arxiv.2310.08375,
title = {Low-lying baryon resonances from lattice QCD},
author = {John Bulava and Barbara Cid-Mora and Andrew D. Hanlon and Ben Hoerz and Daniel Mohler and Colin Morningstar and Joseph Moscoso and Amy Nicholson and Fernando Romero-Lopez and Sarah Skinner and Andre Walker-Loud},
journal= {arXiv preprint arXiv:2310.08375},
year = {2023}
}
Comments
5 pages, 3 figures, talk presented at the 20th International Conference on Hadron Spectroscopy and Structure (HADRON 2023) in Genova, Italy, June 5th to 9th 2023