English

On finite volume effects in the chiral extrapolation of baryon masses

High Energy Physics - Lattice 2014-09-17 v3 High Energy Physics - Phenomenology

Abstract

We perform an analysis of the QCD lattice data on the baryon octet and decuplet masses based on the relativistic chiral Lagrangian. The baryon self energies are computed in a finite volume at next-to-next-to-next-to leading order (N3^3LO), where the dependence on the physical meson and baryon masses is kept. The number of free parameters is reduced significantly down to 12 by relying on large-NcN_c sum rules. Altogether we describe accurately more than 220 data points from six different lattice groups, BMW, PACS-CS, HSC, LHPC, QCDSF-UKQCD and NPLQCD. Values for all counter terms relevant at N3^3LO are predicted. In particular we extract a pion-nucleon sigma term of 391+2_{-1}^{+2} MeV and a strangeness sigma term of the nucleon of σsN=84  4+28\sigma_{sN} = 84^{+ 28}_{-\;4} MeV. The flavour SU(3) chiral limit of the baryon octet and decuplet masses is determined with (802±4)(802 \pm 4) MeV and (1103±6)(1103 \pm 6) MeV. Detailed predictions for the baryon masses as currently evaluated by the ETM lattice QCD group are made.

Keywords

Cite

@article{arxiv.1401.7805,
  title  = {On finite volume effects in the chiral extrapolation of baryon masses},
  author = {M. F. M. Lutz and R. Bavontaweepanya and C. Kobdaj and K. Schwarz},
  journal= {arXiv preprint arXiv:1401.7805},
  year   = {2014}
}

Comments

44 pages, 10 figures and 6 tables - the revised manuscript contains the results of additional fits at the N^2LO level - 4 additional figures show the size of finite volume corrections for each lattice point - more technical details on the evaluation of finite volume effects are given