Improving the Kinetic Couplings in Lattice Non-Relativistic QCD
Abstract
We improve the non-relativistic QCD (NRQCD) action by comparing the dispersion relation to that of the continuum through in perturbation theory. The one-loop matching coefficients of the kinetic operators are determined, as well as the scale at which to evaluate in the -scheme for each quantity. We utilise automated lattice perturbation theory using twisted boundary conditions as an infrared regulator. The one-loop radiative corrections to the mass renormalisation, zero-point energy and overall energy-shift of an NRQCD -quark are also found. We also explore how a Fat-smeared NRQCD action and changes of the stability parameter affect the coefficients. Finally, we use gluon field ensembles at multiple lattice spacing values, all of which include , , and quark vacuum polarisation, to test how the improvements affect the non-perturbatively determined and kinetic masses, and the tuning of the quark mass.
Keywords
Cite
@article{arxiv.1812.11639,
title = {Improving the Kinetic Couplings in Lattice Non-Relativistic QCD},
author = {Christine T. H. Davies and Judd Harrison and Ciaran Hughes and Ronald R. Horgan and Georg M. von Hippel and Matthew Wingate},
journal= {arXiv preprint arXiv:1812.11639},
year = {2019}
}
Comments
19 pages, 14 figures, 9 tables