arXiv · 2606.18576
Semi-leptonic decays $B \to D^{(*)}(1S,2S)\ell \nu_{\ell}$ within the covariant light-front approach
Abstract
We present a systematic analysis of the semi-leptonic decays $B_{(s)}\to D_{(s)}(1S,2S)\ell\nu_\ell$ and $B_{(s)}\to D^*_{(s)}(1S,2S)\ell\nu_\ell$ with $\ell=e,\mu,\tau$ within the covariant light-front quark model (CLFQM). Using the form factors of the transitions $B_{(s)}\to D_{(s)}(1S,2S)$ and $B_{(s)}\to D^*_{(s)}(1S,2S)$, we calculate the branching ratios of the relevant semi-leptonic decays and find that $Br(B_{(s)}\to D_{(s)}\ell^\prime\nu_{\ell^\prime})$ and $Br(B_{(s)}\to D^*_{(s)}\ell^\prime\nu_{\ell^\prime})$ with $\ell^\prime=e,\mu$ are agree well with the data, while $Br(B_{(s)}\to D_{(s)}\tau\nu_{\tau})$ and $Br(B_{(s)}\to D^*_{(s)}\tau\nu_{\tau})$ are systematically smaller than the experimental measurements. This naturally gives rise to the so-called $\mathcal{R}(D)$ and $\mathcal{R}(D^*)$ anomalies. Our predictions $\mathcal{R}(D)=0.261\pm0.013$ and $\mathcal{R}(D^*)=0.228\pm0.026$ show $3.1\sigma$ and $2.1\sigma$ deviations from the current experimental world averages compiled by the Heavy Flavor Averaging Group (HFLAV), respectively, yet only deviate by $0.16\sigma$ and $1.5\sigma$ from the latest LHCb measurements. For the decays $B_{(s)}\to D_{(s)}(2S)\ell\nu_\ell$ and $B_{(s)}\to D^*_{(s)}(2S)\ell\nu_\ell$, their branching ratios lie in the range $10^{-4}\sim10^{-3}$, which are much larger than the results from the Bethe Salpeter (BS) equation , but agree with the relativistic quark model (RQM) calculations. Furthermore, we also calculate the forward-backward asymmetries $\mathcal{A}_{FB}$ and longitudinal polarization fractions $f_L$ for the corresponding decays. Our predictions are consistent with most other theoretical results and experimental data
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Zhi-Jie Sun, Zhi-Qing Zhang, Shi-Chen Xue, Feng-Zhou Wang. 2026-06-17. Semi-leptonic decays $B \to D^{(*)}(1S,2S)\ell \nu_{\ell}$ within the covariant light-front approach. https://arxiv.org/abs/2606.18576
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