Charm as a domain wall fermion in quenched lattice QCD
Abstract
We report a study describing the charm quark by a domain-wall fermion (DWF) in lattice quantum chromodynamics (QCD). Our study uses a quenched gauge ensemble with the DBW2 rectangle-improved gauge action at a lattice cutoff of GeV. We calculate masses of heavy-light (charmed) and heavy-heavy (charmonium) mesons with spin-parity and , leptonic decay constants of the charmed pseudoscalar mesons ( and ), and the - mixing parameter. The charm quark mass is found to be GeV. The mass splittings in charmed-meson parity partners and are degenerate within statistical errors, in accord with experiment, and they satisfy a relation , also consistent with experiment. A C-odd axial vector charmonium state, \chi_{c1}m_{h_{c}} = 3533(11)_{\rm stat.}\chi_{c1}) mass. However, in this regard, we emphasize significant discrepancies in the calculation of hyperfine splittings on the lattice. The leptonic decay constants of and mesons are found to be MeV and , where the first error is statistical, the second a systematic due to chiral extrapolation and the third error combination of other known systematics. The - mixing bag parameter, which enters the transition amplitude, is found to be .
Keywords
Cite
@article{arxiv.hep-lat/0607035,
title = {Charm as a domain wall fermion in quenched lattice QCD},
author = {Huey-Wen Lin and Shigemi Ohta and Amarjit Soni and Norikazu Yamada},
journal= {arXiv preprint arXiv:hep-lat/0607035},
year = {2009}
}
Comments
49 pages, 15 figures