Chiral Logs in Quenched QCD
Abstract
The quenched chiral logs are examined on a lattice with Iwasaki gauge action and overlap fermions. The pion decay constant is used to set the lattice spacing, . With pion mass as low as , we see the quenched chiral logs clearly in and , the pseudoscalar decay constant. We analyze the data to determine how low the pion mass needs to be in order for the quenched one-loop chiral perturbation theory (PT) to apply. With the constrained curve-fitting method, we are able to extract the quenched chiral log parameter together with other low-energy parameters. Only for do we obtain a consistent and stable fit with a constant which we determine to be 0.24(3)(4) (at the chiral scale ). By comparing to the lattice, we estimate the finite volume effect to be about 2.7% for the smallest pion mass. We also fitted the pion mass to the form for the re-summed cactus diagrams and found that its applicable region is extended farther than the range for the one-loop formula, perhaps up to MeV. The scale independent is determined to be 0.20(3) in this case. We study the quenched non-analytic terms in the nucleon mass and find that the coefficient in the nucleon mass is consistent with the prediction of one-loop PT\@. We also obtain the low energy constant from . We conclude from this study that it is imperative to cover only the range of data with the pion mass less than in order to examine the chiral behavior of the hadron masses and decay constants in quenched QCD and match them with quenched one-loop PT\@.
Cite
@article{arxiv.hep-lat/0304005,
title = {Chiral Logs in Quenched QCD},
author = {Y. Chen and S. J. Dong and T. Draper and I. Horváth and F. X. Lee and K. F. Liu and N. Mathur and J. B. Zhang},
journal= {arXiv preprint arXiv:hep-lat/0304005},
year = {2016}
}
Comments
37 pages and 24 figures, pion masses are fitted to the form for the re-summed cactus diagrams, figures added, to appear in PRD