Extraction of HQE parameters from unquenched lattice data on pseudoscalar and vector heavy-light meson masses
Abstract
We present a precise lattice computation of pseudoscalar and vector heavy-light meson masses for heavy-quark masses ranging from the physical charm mass up to times the physical b-quark mass. We employ the gauge configurations generated by the European Twisted Mass Collaboration (ETMC) with dynamical quarks at three values of the lattice spacing ( fm) with pion masses in the range MeV. The heavy-quark mass is simulated directly on the lattice up to times the physical charm mass. The interpolation to the physical -quark mass is performed using the ETMC ratio method, based on ratios of the meson masses computed at nearby heavy-quark masses, and adopting the kinetic mass scheme. The extrapolation to the physical pion mass and to the continuum limit yields GeV, which corresponds to GeV in the scheme. The lattice data are analyzed in terms of the Heavy Quark Expansion (HQE) and the matrix elements of dimension-4 and dimension-5 operators are extracted with a good precision, namely: GeV, GeV and GeV. The data also allow for a rough estimate of the dimension-6 operator matrix elements. As the HQE parameters play a crucial role in the inclusive determination of the Cabibbo-Kobayashi-Maskawa matrix elements and , their precise determination on the lattice may eventually validate and improve the analyses based on fits to the semileptonic moments.
Keywords
Cite
@article{arxiv.1704.06105,
title = {Extraction of HQE parameters from unquenched lattice data on pseudoscalar and vector heavy-light meson masses},
author = {P. Gambino and A. Melis and S. Simula},
journal= {arXiv preprint arXiv:1704.06105},
year = {2017}
}
Comments
31 pages, 12 figures, 6 tables