English

The radiative decay of the $\Lambda(1405)$ and its two-pole structure

High Energy Physics - Phenomenology 2008-11-26 v2

Abstract

We evaluate theoretically the radiative decay widths into γΛ\gamma\Lambda and γΣ0\gamma\Sigma^0 of the two poles of the Λ(1405)\Lambda(1405) found in chiral unitary theories and we find quite different results for each of the two poles. We show that, depending on which reaction is used to measure the Λ(1405)\Lambda(1405) radiative decays, one gives more weight to one or the other pole, resulting in quite different shapes in the γΛ(Σ0)\gamma\Lambda(\Sigma^0) invariant mass distributions. Our results for the high-energy pole agree with those of the empirical determination of the γΛ\gamma\Lambda and γΣ0\gamma\Sigma^0 radiative widths (based on an isobar model fitting of the KpK^-p atom data), which are sometimes referred to as ``experimental data''. We have made a detailed study of the Kpπ0γΛ(Σ0)K^-p\to\pi^0\gamma\Lambda(\Sigma^0) and πpK0γΛ(Σ0)\pi^-p\to K^0\gamma\Lambda(\Sigma^0) reactions and have shown that they, indeed, lead to different shapes for the γΛ(Σ0)\gamma\Lambda(\Sigma^0) invariant mass distributions.

Keywords

Cite

@article{arxiv.hep-ph/0702093,
  title  = {The radiative decay of the $\Lambda(1405)$ and its two-pole structure},
  author = {L. S. Geng and E. Oset and M. Doring},
  journal= {arXiv preprint arXiv:hep-ph/0702093},
  year   = {2008}
}

Comments

Version to appear in European Physical Journal A; a brief description of the chiral unitary coupled-channel approach added

R2 v1 2026-07-22T14:14:07.286Z