Chiral perturbation theory at O(a^2) for lattice QCD
Abstract
We construct the chiral effective Lagrangian for two lattice theories: one with Wilson fermions and the other with Wilson sea fermions and Ginsparg-Wilson valence fermions. For each of these theories we construct the Symanzik action through order . The chiral Lagrangian is then derived, including terms of order , which have not been calculated before. We find that there are only few new terms at this order. Corrections to existing coefficients in the continuum chiral Lagrangian are proportional to , and appear in the Lagrangian at order or higher. Similarly, O(4) symmetry breaking terms enter the Symanzik action at order , but contribute to the chiral Lagrangian at order or higher. We calculate the light meson masses in chiral perturbation theory for both lattice theories. At next-to-leading order, we find that there are no order corrections to the valence-valence meson mass in the mixed theory due to the enhanced chiral symmetry of the valence sector.
Keywords
Cite
@article{arxiv.hep-lat/0306021,
title = {Chiral perturbation theory at O(a^2) for lattice QCD},
author = {Oliver Baer and Gautam Rupak and Noam Shoresh},
journal= {arXiv preprint arXiv:hep-lat/0306021},
year = {2011}
}
Comments
25 pages, LaTeX2e; references added