Search for $CP$ violation in $D_{(s)}^{+}\rightarrow h^{+}Ï^{0}$ and $D_{(s)}^{+}\rightarrow h^{+}η$ decays
arXiv:2103.11058 · doi:10.1007/JHEP06(2021)019
Abstract
Searches for $CP$ violation in the two-body decays $D_{(s)}^{+}\rightarrow h^{+}Ï^{0}$ and $D_{(s)}^{+} \rightarrow h^{+}η$ (where $h^{+}$ denotes a $Ï^{+}$ or $K^{+}$ meson) are performed using $pp$ collision data collected by the LHCb experiment corresponding to either 9 fb$^{-1}$ or 6 fb$^{-1}$ of integrated luminosity. The $Ï^{0}$ and $η$ mesons are reconstructed using the $e^{+}e^{-}γ$ final state, which can proceed as three-body decays $Ï^{0}\rightarrow e^{+}e^{-}γ$ and $η\rightarrow e^{+}e^{-}γ$, or via the two-body decays $Ï^{0}\rightarrow γγ$ and $η\rightarrowγγ$ followed by a photon conversion. The measurements are made relative to the control modes $D_{(s)}^{+}\rightarrow K_{S}^{0} h^{+}$ to cancel the production and detection asymmetries. The $CP$ asymmetries are measured to be \begin{align} \mathcal{A}_{CP}(D^{+}\rightarrow Ï^{+}Ï^{0}) &= (-1.3 \pm 0.9 \pm 0.6 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D^{+}\rightarrow K^{+}Ï^{0}) &= (-3.2 \pm 4.7 \pm 2.1 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D^{+}\rightarrow Ï^{+}η) &= (-0.2 \pm 0.8 \pm 0.4 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D^{+}\rightarrow K^{+}η) &= (-6 \pm 10 \pm 4 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D_{s}^{+}\rightarrow K^{+}Ï^{0}) &= (-0.8 \pm 3.9 \pm 1.2 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D_{s}^{+}\rightarrow Ï^{+}η) &= (0.8 \pm 0.7 \pm 0.5 )\%, \end{align} \begin{align} \mathcal{A}_{CP}(D_{s}^{+}\rightarrow K^{+}η) &= (0.9 \pm 3.7 \pm 1.1 )\%, \end{align} where the first uncertainties are statistical and the second systematic. These results are consistent with no $CP$ violation and mostly constitute the most precise measurements of $\mathcal{A}_{CP}$ in these decay modes to date.
All figures and tables, along with any supplementary material and additional information, are available at https://cern.ch/lhcbproject/Publications/p/LHCb-PAPER-2021-001.html (LHCb public pages)