1 research outputs found

    Measurement of cos2β\cos{2\beta} in B0D()h0B^{0} \to D^{(*)} h^{0} with DKS0π+πD \to K_{S}^{0} \pi^{+} \pi^{-} decays by a combined time-dependent Dalitz plot analysis of BaBar and Belle data

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    We report measurements of sin2β\sin{2\beta} and cos2β\cos{2\beta} from a time-dependent Dalitz plot analysis of B0D()h0B^{0} \to D^{(*)} h^{0} with DKS0π+πD \to K_{S}^{0} \pi^{+} \pi^{-} decays, where the light unflavored and neutral hadron h0h^{0} is a π0\pi^{0}, η\eta, or ω\omega meson. The analysis is performed with a combination of the final data sets of the \babar\ and Belle experiments containing 471×106471 \times 10^{6} and 772×106772 \times 10^{6} BBˉB\bar{B} pairs collected at the Υ(4S)\Upsilon\left(4S\right) resonance at the asymmetric-energy B factories PEP-II at SLAC and KEKB at KEK, respectively. We measure sin2β=0.80±0.14(stat.)±0.06(syst.)±0.03(model)\sin{2\beta} = 0.80 \pm 0.14 \,(\rm{stat.}) \pm 0.06 \,(\rm{syst.}) \pm 0.03 \,(\rm{model}) and cos2β=0.91±0.22(stat.)±0.09(syst.)±0.07(model)\cos{2\beta} = 0.91 \pm 0.22 \,(\rm{stat.}) \pm 0.09 \,(\rm{syst.}) \pm 0.07 \,(\rm{model}). The result for the direct measurement of the angle is β=(22.5±4.4(stat.)±1.2(syst.)±0.6(model))\beta = \left( 22.5 \pm 4.4 \,(\rm{stat.}) \pm 1.2 \,(\rm{syst.}) \pm 0.6 \,(\rm{model}) \right)^{\circ}. The last quoted uncertainties are due to the composition of the D0KS0π+πD^{0} \to K_{S}^{0} \pi^{+} \pi^{-} decay amplitude model, which is newly established by a Dalitz plot amplitude analysis of a high-statistics e+eccˉe^{+}e^{-} \to c\bar{c} data sample as part of this analysis. We find the first evidence for cos2β>0\cos2\beta>0 at the level of 3.73.7 standard deviations. The measurement excludes the trigonometric multifold solution π/2β=(68.1±0.7)\pi/2 - \beta = (68.1 \pm 0.7)^{\circ} at the level of 7.37.3 standard deviations and therefore resolves an ambiguity in the determination of the apex of the CKM Unitarity Triangle. The hypothesis of β=0\beta = 0^{\circ} is ruled out at the level of 5.15.1 standard deviations, and thus CP violation is observed in B0D()h0B^{0} \to D^{(*)} h^{0} decays
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