We report on a lattice QCD calculation of the πNσ term, the scalar form factor, and ⟨N∣sˉs∣N⟩. The disconnected insertion part of \sg is found to be 1.8±0.1 times larger than the connected insertion contribution. The q2 dependence of \sg(q2) is about the same as GE(q2) of the proton so that \sg(2mπ2)−\sg(0)=6.6±0.6 MeV. The ratio y=\ss/\ud=0.36±0.03. Both results favor a \sg∼53 MeV, slightly larger than our direct calculation of \sg=49.7±2.6 MeV. We also compute Fs and Ds and find that the agreement with those from the octect baryon mass splittings crucially depends on the inclusion of the large disconnected insertion. Finally, we give our result for the KNσ term.
@article{arxiv.hep-ph/9602259,
title = {$\pi N \sigma$ Term , $\bar{s}s$ in Nucleon, and Scalar Form Factor --- a Lattice Study},
author = {S. J. Dong and J. -F. Lagaë and K. F. Liu},
journal= {arXiv preprint arXiv:hep-ph/9602259},
year = {2016}
}