English

Finite-Volume Electromagnetic Corrections to the Masses of Mesons, Baryons and Nuclei

High Energy Physics - Lattice 2014-10-07 v2 High Energy Physics - Phenomenology Nuclear Theory

Abstract

Now that Lattice QCD calculations are beginning to include QED, it is important to better understand how hadronic properties are modified by finite-volume QED effects. They are known to exhibit power-law scaling with volume, in contrast to the exponential behavior of finite-volume strong interaction effects. We use non-relativistic effective field theories describing the low-momentum behavior of hadrons to determine the finite-volume QED corrections to the masses of mesons, baryons and nuclei out to O(1/L^4) in a volume expansion, where L is the spatial extent of the cubic volume. This generalizes the previously determined expansion for mesons, and extends it by two orders in 1/L to include contributions from the charge radius, magnetic moment and polarizabilities of the hadron. We make an observation about direct calculations of the muon g-2 in a finite volume.

Keywords

Cite

@article{arxiv.1402.6741,
  title  = {Finite-Volume Electromagnetic Corrections to the Masses of Mesons, Baryons and Nuclei},
  author = {Zohreh Davoudi and Martin J. Savage},
  journal= {arXiv preprint arXiv:1402.6741},
  year   = {2014}
}

Comments

16 pages, 11 figures. v2: matches the published version. Eqs. (18) and (19) are updated to include a missing contribution at O(1/L^4). The main results and the conclusion are unchanged