Quenched charmonium spectrum
Abstract
We study charmonium using the standard relativistic formalism in the quenched approximation, on a set of lattices with isotropic lattice spacings ranging from 0.1 to 0.04 fm. We concentrate on the calculation of the hyperfine splitting between eta_c and J/psi, aiming for a controlled continuum extrapolation of this quantity. The splitting extracted from the non-perturbatively improved clover Dirac operator shows very little dependence on the lattice spacing for fm. The dependence is much stronger for Wilson and tree-level improved clover operators, but they still yield consistent extrapolations if sufficiently fine lattices, fm (), are used. Our result for the hyperfine splitting is 77(2)(6) MeV (where Sommer's parameter, r_0, is used to fix the scale). This value remains about 30% below experiment. Dynamical fermions and OZI-forbidden diagrams both contribute to the remainder. Results for the eta_c and J/psi wave functions are also presented.
Keywords
Cite
@article{arxiv.hep-lat/0307004,
title = {Quenched charmonium spectrum},
author = {S. Choe and Ph. de Forcrand and M. Garcia Perez and Y. Liu and A. Nakamura and I. -O. Stematescu and T. Takaishi and T. Umeda},
journal= {arXiv preprint arXiv:hep-lat/0307004},
year = {2014}
}
Comments
22 pages, 7 figures