English

Baryon sigma terms in SU(3) BChPT x 1/Nc

High Energy Physics - Phenomenology 2019-04-16 v1 Nuclear Theory

Abstract

ChPT and the 1/Nc1/N_c expansion provide systematic frameworks for the strong interactions at low energy. A combined framework of both expansions has been developed and applied for baryons with three light-quark-flavors. The small scale expansion of the combined approach is identified as the ξ\xi-expansion, in which the power counting of the expansions is linked according to O(p)=O(1/Nc)=O(ξ)O(p)=O(1/N_c)=O(\xi). The physical baryon masses as well as lattice QCD baryon masses for different quark mass masses are analyzed to O(ξ3)O(\xi^3) in that framework. σ\sigma terms are addressed using the Feynman Hellmann theorem. For the nucleon, a useful connection between the deviation of the Gell-Mann-Okubo relation and the σ\sigma term σ8N\sigma_{8N} associated with the scalar density uˉu+dˉd2sˉs\bar u u+\bar d d-2\bar s s is identified. In particular, the deviation from the tree level relation σ8N=13(2mNmΣmΞ)\sigma_{8N}=\frac 13(2 m_N-m_\Sigma-m_\Xi), which gives rise to the so called σ\sigma-term puzzle, is studied in the ξ\xi-expansion. A large correction non-analytic in ξ\xi results for that relation, making plausible the resolution of the puzzle. Issues with the determination of the strangeness σ\sigma terms are discussed, emphasizing the need for lattice calculations at smaller msm_s for better understanding the range of validity of the effective theory. The analysis presented here leads to σπN=69(10)\sigma_{\pi N}=69(10)~MeV and σπΔ=60(10)\sigma_{\pi \Delta}=60(10)~MeV.

Keywords

Cite

@article{arxiv.1904.07112,
  title  = {Baryon sigma terms in SU(3) BChPT x 1/Nc},
  author = {Ishara P. Fernando and Jose L. Goity},
  journal= {arXiv preprint arXiv:1904.07112},
  year   = {2019}
}

Comments

13 pages, 4 figures, Proceedings of the 9th Chiral Dynamics International Workshop, Durham, NC, USA, 17-21 September, 2018