$B$- and $D$-meson leptonic decay constants from four-flavor lattice QCD
Abstract
We calculate the leptonic decay constants of heavy-light pseudoscalar mesons with charm and bottom quarks in lattice quantum chromodynamics on four-flavor QCD gauge-field configurations with dynamical , , , and quarks. We analyze over twenty isospin-symmetric ensembles with six lattice spacings down to ~fm and several values of the light-quark mass down to the physical value . We employ the highly-improved staggered-quark (HISQ) action for the sea and valence quarks; on the finest lattice spacings, discretization errors are sufficiently small that we can calculate the -meson decay constants with the HISQ action for the first time directly at the physical -quark mass. We obtain the most precise determinations to-date of the - and -meson decay constants and their ratios, ~MeV, ~MeV, , ~MeV, ~MeV, , where the errors include statistical and all systematic uncertainties. Our results for the -meson decay constants are three times more precise than the previous best lattice-QCD calculations, and bring the QCD errors in the Standard-Model predictions for the rare leptonic decays , , and to well below other sources of uncertainty. As a byproduct of our analysis, we also update our previously published results for the light-quark-mass ratios and the scale-setting quantities , , and . We obtain the most precise lattice-QCD determination to date of the ratio ~MeV.
Keywords
Cite
@article{arxiv.1712.09262,
title = {$B$- and $D$-meson leptonic decay constants from four-flavor lattice QCD},
author = {A. Bazavov and C. Bernard and N. Brown and C. DeTar and A. X. El-Khadra and E. Gámiz and Steven Gottlieb and U. M. Heller and J. Komijani and A. S. Kronfeld and J. Laiho and P. B. Mackenzie and E. T. Neil and J. N. Simone and R. L. Sugar and D. Toussaint and R. S. Van de Water},
journal= {arXiv preprint arXiv:1712.09262},
year = {2019}
}
Comments
Errors related to the standard model prediction for the rare leptonic decays are fixed in the abstract and Eqs. (7.44), (7.45), and (8.3)