Measurement of branching fraction ratios for $B^+\to D^{*+}D^-K^+$, $B^+\to D^{*-}D^+K^+$, and $B^0\to D^{*-}D^0K^+$ decays
Abstract: A measurement of four branching-fraction ratios for three-body decays of $B$ mesons involving two open-charm hadrons in the final state is presented. Run 1 and Run 2 $pp$ collision data are used, recorded by the LHCb experiment at centre-of-mass energies $7$, $8$, and $13$ TeV and corresponding to an integrated luminosity of $9$ fb${-1}$. The measured branching-fraction ratios are [ \begin{eqnarray} \frac{\mathcal{B} (B+\to D{*+}D-K+)}{\mathcal{B} (B+\to \kern 0.2em\overline{\kern -0.2em D}{}0 D0 K+)} &=& 0.517 \pm 0.015 \pm 0.013 \pm 0.011 , \ \frac{\mathcal{B} (B+\to D{*-}D+K+)}{\mathcal{B} (B+\to \kern 0.2em\overline{\kern -0.2em D}{}0 D0 K+)} &=& 0.577 \pm 0.016 \pm 0.013 \pm 0.013 , \ \frac{\mathcal{B} (B0\to D{*-}D0K+)}{\mathcal{B} (B0\to D- D0 K+)} &=& 1.754 \pm 0.028 \pm 0.016 \pm 0.035 , \ \frac{\mathcal{B} (B+\to D{*+}D-K+)}{\mathcal{B} (B+\to D{*-}D+K+)} &=& 0.907 \pm 0.033 \pm 0.014 ,\end{eqnarray} ] where the first of the uncertainties is statistical, the second systematic, and the third is due to the uncertainties on the $D$-meson branching fractions. These are the most accurate measurements of these ratios to date.
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.