First determination of the spin-parity of Ξc(3055)+,0{\Xi}_{c}(3055)^{+,0} baryons

Abstract

International audienceThe Ξb0()Ξc(3055)+(0)(D+(0)Λ)π{{\Xi}_{b}^{0(-)}\to{\Xi}_{c}(3055)^{+(0)}(\to D^{+(0)}{\Lambda}){\pi}^{-}} decay chains are observed, and the spin-parity of Ξc(3055)+(0){\Xi}_{c}(3055)^{+(0)} baryons is determined for the first time. The measurement is performed using proton-proton collision data at a center-of-mass energy of s=13TeV\sqrt{s}=13\,\text{TeV}, corresponding to an integrated luminosity of 5.4fb15.4\,\text{fb}^{-1}, recorded by the~LHCb\text{LHCb} experiment between 2016 and 2018. The spin-parity of the Ξc(3055)+(0){\Xi}_{c}(3055)^{+(0)} baryons is determined to be 3/2+3/2^{+} with a significance of more than 6.5σ6.5\sigma (3.5σ3.5\sigma) compared to all other tested hypotheses. The up-down asymmetries of the Ξb0()Ξc(3055)+(0)π{{\Xi}_{b}^{0(-)}\to{\Xi}_{c}(3055)^{+(0)}{\pi}^{-}} transitions are measured to be 0.92±0.10±0.05-0.92\pm0.10\pm0.05 (0.92±0.16±0.22-0.92\pm0.16\pm0.22), consistent with maximal parity violation, where the first uncertainty is statistical and the second is systematic. These results support the hypothesis that the Ξc(3055)+(0){\Xi}_{c}(3055)^{+(0)} baryons correspond to the first DD-wave λ\lambda-mode excitation of the Ξc{\Xi}_{c} flavor triplet

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