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We report results from a study of the charmed double strange baryons Omega_c^0 and Omega_c^{*0} at Belle. The Omega_c^0 is reconstructed using the Omega_c^0 --> Omega^- pi^+ decay mode, and its mass is measured to be (2693.6 pm 0.3 {+1.8 atop -1.5}) MeV/c^2. The Omega_c^{*0} baryon is reconstructed in the Omega_c^0 gamma mode. The mass difference M_{Omega_c^{*0}} - M_{Omega_c^0} is measured to be (70.7 pm 0.9 {+0.1 atop -0.9}) MeV/c^2. The analysis is performed using 673 fb^{-1} of data on and near the Upsilon(4S) collected with the Belle detector at the KEKB asymmetric-energy e^+e^- collider.
60 - R.Mizuk , R.Chistov , et al. 2008
We report the first observation of two resonance-like structures in the pi+ chi_c1 invariant mass distribution near 4.1 GeV/c^2 in exclusive B0-bar --> K- pi+ chi_c1 decays. From a Dalitz plot analysis in which the pi+ chi_c1 mass structures are repr esented by Breit-Wigner resonance amplitudes, we determine masses and widths of: M_1 = (4051 +-14 +20-41) MeV/c^2, Gamma_1 = (82 +21-17 +47-22) MeV, M_2 = (4248 +44-29 +180-35}) MeV/c^2, and Gamma_2 =(177 +54-39 +316-61) MeV; and product branching fractions of BF(B0-bar --> K- Z+_1,2) x BF(Z+_1,2 --> pi+ chi_c1) = (3.0 +1.5-0.8 +3.7-1.6) x 10^-5 and (4.0 +2.3-0.9 +19.7-0.5) x 10^-5 respectively. Here the first uncertainty is statistical, the second is systematic. The significance of each of the pi+ chi_c1 structures exceeds 5 sigma, including the systematic uncertainty from various fit models. This analysis is based on 657 x 10^6 BB-bar events collected at the Upsilon(4S) resonance with the Belle detector at the KEKB asymmetric-energy e+e- collider.
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