The πNN form factor gπNN(q2) is obtained from a quenched lattice QCD calculation of the pseudoscalar form factor gP(q2) of the proton with pion pole dominance. We find that gπNN(q2) fitted with the monopole form agrees well with the Goldberger-Treiman relation and is much preferred over the dipole form. The monopole mass is determined to be 0.75±0.14GeV which shows that gπNN(q2) is rather soft. The extrapolated πN coupling constant gπNN=12.7±2.4 is quite consistent with the phenomenological values. We also compare gπNN(q2) with the axial form factor gA(q2) to check the pion dominance in the induced pseudoscalar form factor hA(q2) vis \`{a} vis chiral Ward identity.
@article{arxiv.hep-lat/9406007,
title = {$\pi NN$ and Pseudoscalar Form Factors from Lattice QCD},
author = {K. F. Liu and S. J. Dong and Terrence Draper and Walter Wilcox},
journal= {arXiv preprint arXiv:hep-lat/9406007},
year = {2009}
}
Comments
8 pages of text plus 4 postscript figures (128 kbytes)