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Pion-nucleon sigma term revisited in covariant baryon chiral perturbation theory

Published 19 Oct 2017 in hep-ph and hep-lat | (1710.07164v2)

Abstract: We study the latest Nf=2+1+1N_f=2+1+1 and Nf=2N_f=2 ETMC lattice QCD simulations of the nucleon masses and extract the pion-nucleon sigma term utilizing the Feynman-Hellmann theorem in SU(2) baryon chiral perturbation theory with the extended-on-mass-shell scheme. We find that the lattice QCD data can be described quite well already at the next-to-next-to-leading order. The overall picture remains essentially the same at the next-to-next-to-next-to-leading order. Our final result is σπN=50.2(1.2)(2.0)\sigma_{\pi N}=50.2(1.2)(2.0) MeV, or equivalently, fu/d<sup>N=0.0535(13)(21)f_{u/d}<sup>N=0.0535(13)(21), where the first uncertainty is statistical and second is theoretical originated from chiral truncations, which is in agreement with that determined previously from the Nf=2+1N_f=2+1 and Nf=2N_f=2 lattice QCD data and that determined by the Cheng-Dashen theorem. In addition, we show that the inclusion of the virtual Δ(1232)\Delta(1232) does not change qualitatively our results.

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