We report results on the nucleon structure obtained from the lattice quantum chromodynamics calculation. These include the axial, electromagnetic, πNN, and scalar form factors. The calculation is carried out at β=6 on a 163×24 lattice with 24 quenched gauge configurations. The chiral limit results are extrapolated from several light quark cases. For the disconnected insertion (sea-quark contribution), we used the stochastic estimation with the Z2 noise to calculate the diagonal and off-diagonal traces of the inverse matrices with a size of 106×106. It is found that the Z2 noise is the optimal choice and its comparison with the Gaussian noise for our quark matrix is given. For the sea-quark contribution, we report results on the strange condensate in the nucleon and the πNσ term.
@article{arxiv.hep-lat/9408007,
title = {Nucleon Structure from Lattice QCD},
author = {Keh-Fei Liu},
journal= {arXiv preprint arXiv:hep-lat/9408007},
year = {2009}
}
Comments
9 pages, 4 figures (uuencoded), UK/94-02. (A missing factor of 4 is included in the calculation of the disconnected insertion of the $\pi N \sigma$ term and the strange condensate in the nucleon.)