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arXiv:2605.10946·v1·High Energy Physics — Lattice

Continuum-Limit HQET LCDAs from Lattice QCD for Tightening B Decay Uncertainties

Xue-Ying Han🇨🇳 · Hao-Fei Gao🇨🇳 · Jun Hua🇨🇳 · Xiangdong Ji🇨🇳 · Xiangyu Jiang🇨🇳 · Cai-Dian Lü🇨🇳 · Andreas Schäfer🇩🇪 · Jin-Xin Tan🇨🇳 · Ji-Hao Wang🇨🇳 · Wei Wang🇨🇳 · Ji Xu🇨🇳 · Yi-Bo Yang🇨🇳

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Abstract

Heavy meson HQET light-cone distribution amplitudes (LCDAs) are critical for precision predictions of meson weak decays, but currently are one of dominant theoretical uncertainties that obscure interpretations of anomalies and CP-violating measurements. Building on the established HQLaMET framework, supplemented by lattice QCD calculations of the OPE moments, we present a precise lattice QCD calculation of HQET LCDAs by employing multi-ensemble simulations for continuum and physical pion mass extrapolation, quantifying comprehensive systematic errors, and validating results through OPE moment cross-validation. Details of the lattice calculations are provided in a companion paper \cite{HeavymesonDA_long_paper}. Our final results for key inverse moments (at GeV) are GeV and , with the total uncertainty reduced by a factor of three relative to the previous analysis. These results can greatly reduce the uncertainty in the form factors in the large-recoil region. This work resolves the long-standing bottleneck in first-principles predictions of heavy meson LCDAs, advancing precision flavor physics to new frontiers.

Comments: 6 pages, 5 figures

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