The Hyperfine Splitting in Charmonium: Lattice Computations Using the Wilson and Clover Fermion Actions
Abstract
We compute the hyperfine splitting on the lattice, using both the Wilson and -improved (clover) actions for quenched quarks. The computations are performed on a lattice at , using the same set of 18 gluon configurations for both fermion actions. We find that the splitting is 1.83\err{13}{15} times larger with the clover action than with the Wilson action, demonstrating the sensitivity of the spin-splitting to the magnetic moment term which is present in the clover action. However, even with the clover action the result is less than half of the physical mass-splitting. We also compute the decay constants and , both of which are considerably larger when computed using the clover action than with the Wilson action. For example for the ratio we find 0.32\err{1}{2} with the Wilson action and with the clover action (the physical value is 0.44(2)).
Cite
@article{arxiv.hep-lat/9208018,
title = {The Hyperfine Splitting in Charmonium: Lattice Computations Using the Wilson and Clover Fermion Actions},
author = {UKQCD Collaboration and C. R. Allton and C. T. Sachrajda and S. P. Booth and K. C. Bowler and D. S. Henty and R. D. Kenway and B. J. Pendleton and D. G. Richards and J. N. Simone and A. D. Simpson and C. Michael and P. W. Stephenson},
journal= {arXiv preprint arXiv:hep-lat/9208018},
year = {2011}
}
Comments
LaTeX file, 8 pages and two postscript figures. Southampton Preprint: SHEP 91/92-27 Edinburgh Preprint: 92/510