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Observation of the decays $B_{(s)}^{0}\to D_{s1}(2536)^{\mp}K^{\pm}$ (2308.00587v2)

Published 1 Aug 2023 in hep-ex

Abstract: This paper reports the observation of the decays $B_{(s)}{0}\to D_{s1}(2536){\mp}K{\pm}$ using proton-proton collision data collected by the LHCb experiment, corresponding to an integrated luminosity of $9\,\mathrm{fb}{-1}$. The branching fractions of these decays are measured relative to the normalisation channel $B{0}\to \overline{D}{0}K{+}K{-}$. The $D_{s1}(2536){-}$ meson is reconstructed in the $\overline{D}{*}(2007){0}K{-}$ decay channel and the products of branching fractions are measured to be $$\mathcal{B}(B_{s}{0}\to D_{s1}(2536){\mp}K{\pm})\times\mathcal{B}(D_{s1}(2536){-}\to\overline{D}{*}(2007){0}K{-})=(2.49\pm0.11\pm0.12\pm0.25\pm0.06)\times 10{-5}, $$ $$\mathcal{B}(B{0}\to D_{s1}(2536){\mp}K{\pm})\times\mathcal{B}(D_{s1}(2536){-}\to\overline{D}{*}(2007){0}K{-}) = (0.510\pm0.021\pm0.036\pm0.050)\times 10{-5}.$$ The first uncertainty is statistical, the second systematic, and the third arises from the uncertainty of the branching fraction of the $B{0}\to \overline{D}{0}K{+}K{-}$ normalisation channel. The last uncertainty in the $B_{s}{0}$ result is due to the limited knowledge of the fragmentation fraction ratio, $f_{s}/f_{d}$. The significance for the $B_{s}{0}$ and $B{0}$ signals is larger than $10\,\sigma$. The ratio of the helicity amplitudes which governs the angular distribution of the $D_{s1}(2536){-}\to\overline{D}{*}(2007){0}K{-}$ decay is determined from the data. The ratio of the $S$- and $D$-wave amplitudes is found to be $1.11\pm0.15\pm 0.06$ and its phase $0.70\pm0.09\pm 0.04$ rad, where the first uncertainty is statistical and the second systematic.

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