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Peter Weidenkaff

Publications and source records attributed to Peter Weidenkaff.

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Charm physics at BESIII

The study of mesons and baryons which contain at least one charm quark is referred to as open charm physics. It offers the possibility to study up-type quark transitions. Since the $c$ quark can not be treated in any mass limit, theoretical predictions are difficult and experimental input is crucial. BESIII collected large data samples of $e^{+}e^{-}$ collisions at several charm thresholds. The at-threshold decay topology offers special opportunities to study open charm decays. We present a selection of recent BESIII results. Branching fractions and the $D_{s}^{+}$ decay constant are measured using the leptonic decays to $μ^{+}ν$ and $τ^{+}ν$. From a data sample of $0.482 fb^{-1}$ collected at the $D_{s}^{+}D_{s}^{-}$ threshold we measure $f_{Ds}=(241 \pm 16.3(stat.) \pm 6.6(sys.)) MeV$. BESIII recently found preliminary evidence of the decay $D_{s}^{+}\rightarrowτ^{+}ν$ and with a significance larger than $4 σ$ using $2.81 fb^{-1}$ of data at the $D^0\overline{D^0}$ threshold. Using the same data sample the decay $D^0\rightarrow K^0_{S/L} π^0(π^0)$ is analysed. The branching fractions are measured and using the $CP$ eigenstates $K_{S/L}^0π^0$ the $D^0$ mixing parameter $y_{CP} = (0.98 \pm 2.43)\%$ is measured.

hep-ex

Observation of SCS decay $D^{+,0}\toωπ$ and branching fraction measurement of $D^0\to K_S^0K^+K^-$

Using a data set of 2.92 $fb^{-1}$ of $e^+e^-$ collisions at the $Ψ$(3770) mass accumulated with the BESIII experiment we present preliminary results from our study of the singly Cabibbo-suppressed decays $D\toωπ$ and the decay of $D^0\to K_S^0K^+K^-$. The decay $D^+\toωπ^+$ is observed for the first time with a significance of 5.4$σ$ and we find evidence of 4.1$σ$ for the decay $D^0\toωπ^0$. As a cross-check the branching fraction $D\toηπ$ is measured and is found to be compatible with the current PDG value. The branching fraction of the decay $D^0\to K_S^0K^+K^-$ is measured in an untagged analysis with 11743$\pm$113 signal events and is found to be (4.622$\pm$0.045(stat.)$\pm$0.181(sys.))$\times 10^{-3}$. This is compatible with previous measurements but with significant improved precision.

hep-ex