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arXiv:1003.1929·v3·High Energy Physics — Lattice

The lowest-lying baryon masses in covariant SU(3)-flavor chiral perturbation theory

J. Martin-Camalich🇪🇸 · L.S. Geng🇨🇳 · M.J. Vicente Vacas🇪🇸

Abstract

We present an analysis of the baryon-octet and -decuplet masses using covariant SU(3)-flavor chiral perturbation theory up to next-to-leading order. Besides the description of the physical masses we address the problem of the lattice QCD extrapolation. Using the PACS-CS collaboration data we show that a good description of the lattice points can be achieved at next-to-leading order with the covariant loop amplitudes and phenomenologically determined values for the meson-baryon couplings. Moreover, the extrapolation to the physical point up to this order is found to be better than the linear one given at leading-order by the Gell-Mann-Okubo approach. The importance that a reliable combination of lattice QCD and chiral perturbation theory may have for hadron phenomenology is emphasized with the prediction of the pion-baryon and strange-baryon sigma terms.

Comments: Typos in formulas corrected

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