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arXiv:2212.12648·v2·High Energy Physics — Lattice

D-meson semileptonic decays to pseudoscalars from four-flavor lattice QCD

Alexei Bazavov🇺🇸 · Carleton DeTar🇺🇸 · Aida X. El-Khadra🇺🇸 · Elvira Gámiz🇪🇸 · Zechariah Gelzer🇺🇸 · Steven Gottlieb🇺🇸 · William I. Jay🇺🇸 · Hwancheol Jeong🇺🇸 · Andreas S. Kronfeld🇺🇸 · Ruizi Li🇺🇸 · Andrew T. Lytle🇺🇸 · Paul B. Mackenzie🇺🇸

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Abstract

We present lattice-QCD calculations of the hadronic form factors for the semileptonic decays , , and . Our calculation uses the highly improved staggered quark (HISQ) action for all valence and sea quarks and includes MILC ensembles with lattice spacings ranging from fm down to fm. At most lattice spacings, an ensemble with physical-mass light quarks is included. The HISQ action allows all the quarks to be treated with the same relativistic light-quark action, allowing for nonperturbative renormalization using partial conservation of the vector current. We combine our results with experimental measurements of the differential decay rates to determine and This result for is the most precise to date, with a lattice-QCD error that is, for the first time for the semileptonic extraction, at the same level as the experimental error. Using recent measurements from BES III, we also give the first-ever determination of from . Our results also furnish new Standard Model calculations of the lepton flavor universality ratios , , and , which are consistent within with experimental measurements. Our extractions of and , when combined with a value for , provide the most precise test of second-row CKM unitarity, finding agreement with unitarity at the level of one standard deviation.

Comments: 92 pages, V2 matches version accepted for publication in PRD. Expanded supplementary material for reconstructing our final results. An implementation of nonlinear shrinkage is also included

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