English

Strangeness in the Scalar Form Factor of the Nucleon

High Energy Physics - Phenomenology 2010-11-19 v1 Nuclear Theory

Abstract

The scalar form factor of the nucleon and related physical quantities are investigated in the framework of the semibosonized SU(3) Nambu-Jona-Lasinio soliton model. We take into account the rotational 1/Nc1/N_c corrections and linear msm_s corrections. The strangeness content of the nucleon in the scalar form factor is discussed in detail. In particular, it is found that the msm_s corrections play an essential role of reducing the NsˉsN\langle N | \bar{s} s | N \rangle arising from the leading order and rotational 1/Nc1/N_c contributions. We obtain the σπN(0)=40.80  \mboxMeV\sigma_{\pi N} (0)=40.80\;\mbox{MeV}, Δσ=σπN(2mπ2)σπN(0)=18.18  \mboxMeV\Delta \sigma = \sigma_{\pi N} (2m^{2}_{\pi})-\sigma_{\pi N} (0) = 18.18\;\mbox{MeV} and r2NS=1.50  \mboxfm2\langle r^2\rangle^{S}_{N} = 1.50\;\mbox{fm}^2. The results are in a remarkable agreement with empirical data analyzed by Gasser, Leutwyler, and Sainio~\cite{gls}.

Keywords

Cite

@article{arxiv.hep-ph/9508299,
  title  = {Strangeness in the Scalar Form Factor of the Nucleon},
  author = {Hyun-Chul Kim and Andree Blotz and Carsten Schneider and Klaus Goeke},
  journal= {arXiv preprint arXiv:hep-ph/9508299},
  year   = {2010}
}

Comments

13 pages, RevTex is used. 3 figures as uufiles are included