English

Determination of compositeness of the Lambda(1405) resonance from its radiative decay

Nuclear Theory 2014-02-26 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

The radiative decay of Λ(1405)\Lambda (1405) is investigated from the viewpoint of compositeness, which corresponds to the amount of two-body states composing resonances as well as bound states. For a KˉN(I=0)\bar{K}N (I=0) bound state without couplings to other channels, we establish a relation between the radiative decay width and the compositeness. Especially the radiative decay width of the bound state is proportional to the compositeness. Applying the formulation to Λ(1405)\Lambda (1405), we observe that the decay to Λγ\Lambda \gamma is dominated by the KpK^{-}p component inside Λ(1405)\Lambda (1405), because in this decay π+Σ\pi ^{+} \Sigma ^{-} and πΣ+\pi ^{-} \Sigma ^{+} strongly cancel each other and the πΣ\pi \Sigma component can contribute to the Λγ\Lambda \gamma decay only through the slight isospin breaking. This means that the decay Λ(1405)Λγ\Lambda (1405) \to \Lambda \gamma is suitable for the study of the KˉN\bar{K} N component in Λ(1405)\Lambda (1405). Fixing the Λ(1405)\Lambda (1405)-πΣ\pi \Sigma coupling constant from the usual decay of Λ(1405)πΣ\Lambda (1405) \to \pi \Sigma, we show a relation between the absolute value of the KˉN\bar{K} N compositeness for Λ(1405)\Lambda (1405) and the radiative decay width of Λ(1405)Λγ\Lambda (1405) \to \Lambda \gamma and Σ0γ\Sigma ^{0} \gamma, and we find that large decay width to Λγ\Lambda \gamma implies large KˉN\bar{K}N compositeness for Λ(1405)\Lambda (1405). By using the "experimental" data on the radiative decay widths, which is based on an isobar model fitting of the KpK^{-}p atom data, we estimate the KˉN\bar{K}N compositeness for Λ(1405)\Lambda (1405). We also discuss the pole position dependence of our relation on the Λ(1405)\Lambda (1405) radiative decay width and the effects of the two-pole structure for Λ(1405)\Lambda (1405).

Keywords

Cite

@article{arxiv.1311.4637,
  title  = {Determination of compositeness of the Lambda(1405) resonance from its radiative decay},
  author = {T. Sekihara and S. Kumano},
  journal= {arXiv preprint arXiv:1311.4637},
  year   = {2014}
}

Comments

13 pages, 7 figures; Added references; version accepted for publication in Phys. Rev. C