A model-independent measurement of the CKM angle γ\gamma in partially reconstructed B±Dh±B^{\pm} \to D^{*} h^{\pm} decays with DKS0h+hD \to K_{S}^{0} h^{+}h^{-}(h=π,K)(h=\pi, K)

Abstract

International audienceA measurement of C ⁣PC\!P-violating observables in B±DK±B^{\pm} \to D^{*} K^{\pm} and B±Dπ±B^{\pm} \to D^{*} \pi^{\pm} decays is made where the photon or neutral pion from the DDγD^{*} \to D\gamma or DDπ0D^{*} \to D\pi^{0} decay is not reconstructed. The DD meson is reconstructed in the self-conjugate decay modes, DKS0π+πD \to K_{S}^{0} \pi^{+} \pi^{-} or DKS0K+KD \to K_{S}^{0} K^{+} K^{-}. The distribution of signal yields in the DD decay phase space is analysed in a model-independent way. The measurement uses a data sample collected in proton-proton collisions at centre-of-mass energies of 7, 8, and 13 TeV, corresponding to a total integrated luminosity of approximately 9 fb1^{-1}. The B±DK±B^{\pm} \to D^{*} K^{\pm} and B±Dπ±B^{\pm} \to D^{*} \pi^{\pm}C ⁣PC\!P-violating observables are interpreted in terms of hadronic parameters and the CKM angle γ\gamma, resulting in a measurement of γ=(9217+21)\gamma = (92^{+21}_{-17})^{\circ}. The total uncertainty includes the statistical and systematic uncertainties, and the uncertainty due to external strong-phase inputs

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    Last time updated on 02/12/2023