paper

High-Precision and HQET from Relativistic Lattice QCD

arXiv:1110.4510 · doi:10.1103/PhysRevD.85.031503

Abstract

We present a new determination of the leptonic decay constant from lattice QCD simulations that use gluon configurations from MILC and a highly improved discretization of the relativistic quark action for both valence quarks. Our result, \,GeV, is almost three times more accurate than previous determinations. We analyze the dependence of the decay constant on the heavy quark's mass and obtain the first empirical evidence for the leading dependence predicted by Heavy Quark Effective Theory (HQET). As a check, we use our analysis technique to calculate the mass difference. Our result agrees with experiment to within errors of (better than 2%). We discuss how to extend our analysis to other quantities in and physics, making 2%-precision possible for the first time.

5 pages, 3 figures