English

Nucleon-pion-state contamination in lattice computations of the nucleon electromagnetic form factors

High Energy Physics - Lattice 2021-10-01 v1

Abstract

The nucleon-pion-state contributions to QCD two-point and three-point functions relevant for lattice calculations of the nucleon electromagnetic form factors are studied in chiral perturbation theory. To leading order the results depend on a few experimentally known low-energy constants only, and the nucleon-pion-state contribution to the form factors can be estimated. The nucleon-pion-state contribution to the electric form factor GE(Q2)G_{\rm E}(Q^2) is at the +5 percent level for a source-sink separation of 2 fm, and it increases with increasing momentum transfer Q2Q^2. For the magnetic form factor the nucleon-pion-state contribution leads to an underestimation of GM(Q2)G_{\rm M}(Q^2) by about 5-5 percent that decreases with increasing Q2Q^2. For smaller source-sink separations that are accessible in present-day lattice simulations the impact is larger. Although the ChPT results may not be applicable for these time separations a comparison with recent lattice data works reasonably well.

Keywords

Cite

@article{arxiv.2109.14930,
  title  = {Nucleon-pion-state contamination in lattice computations of the nucleon electromagnetic form factors},
  author = {Oliver Bar and Haris Colic},
  journal= {arXiv preprint arXiv:2109.14930},
  year   = {2021}
}

Comments

9 pages, 4 figures. Talk given at the 38th International Symposium on Lattice Field Theory (LATTICE2021)