English

Strange Baryon Electromagnetic Form Factors and SU(3) Flavor Symmetry Breaking

High Energy Physics - Lattice 2014-11-18 v2

Abstract

We study the nucleon, Sigma and cascade octet baryon electromagnetic form factors and the effects of SU(3) flavor symmetry breaking from 2+1-flavor lattice calculations. We find that electric and magnetic radii are similar; the maximum discrepancy is about 10%. In the pion-mass region we explore, both the quark-component and full-baryon moments have small SU(3) symmetry breaking. We extrapolate the charge radii and the magnetic moments using three-flavor heavy-baryon chiral perturbation theory (HBXPT). The systematic errors due to chiral and continuum extrapolations remain significant, giving rise to charge radii for pp and Σ\Sigma^- that are 3--4 standard deviations away from the known experimental ones. Within these systematics the predicted Σ+\Sigma^+ and Ξ\Xi^- radii are 0.67(5) and 0.306(15) fm2^2 respectively. When the next-to-next-to-leading order of HBXPT is included, the extrapolated magnetic moments are less than 3 standard deviations away from PDG values, and the discrepancy is possibly due to remaining chiral and continuum extrapolation errors.

Keywords

Cite

@article{arxiv.0812.4456,
  title  = {Strange Baryon Electromagnetic Form Factors and SU(3) Flavor Symmetry Breaking},
  author = {Huey-Wen Lin and Kostas Orginos},
  journal= {arXiv preprint arXiv:0812.4456},
  year   = {2014}
}

Comments

26 pages, 17 figures