19 research outputs found

    Rediscovery of B0J/ψKL0B^0 \rightarrow J/\psi K^0_L at Belle II

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    We present preliminary results on the reconstruction of the B0J/ψKL0B^0\to J\mskip 1mu / \psi\mskip 2mu K^0_{\scriptscriptstyle L} decay, where J/ψμ+μJ\mskip 1mu / \psi\mskip 2mu\to\mu^+\mu^- or e+ee^+e^-. Using a dataset corresponding to a luminosity of 62.8\pm0.6\mbox{fb}^{-1} collected by the Belle II experiment at the SuperKEKB asymmetric energy e+ee^+e^- collider, we measure a total of 267±21267\pm21 candidates with J/ψμ+μJ\mskip 1mu / \psi\mskip 2mu\to\mu^+\mu^- and 226±20226\pm20 with with J/ψe+eJ\mskip 1mu / \psi\mskip 2mu\to e^+e^-. The quoted errors are statistical only

    Measurements of branching fractions and direct CP-violating asymmetries in B+K+π0B^+ \to K^+ \pi^0 and π+π0\pi^+ \pi^0 decays using 2019 and 2020 Belle II data

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    We report measurements of branching fractions (B\mathcal B) and direct CP{\it CP}-violating asymmetries (ACP\mathcal A_{\it CP}) for the decays B+K+π0B^+\to K^+\pi^0 and B+π+π0B^+ \to \pi^+\pi^0 reconstructed with the Belle II detector in a sample of asymmetric-energy electron-positron collisions at the Υ(4S)\Upsilon(4S) resonance corresponding to 62.8 fb1\text{fb}^{-1} of integrated luminosity. The results are B(B+K+π0)=[11.91.0+1.1(stat)±1.6(syst)]×106\mathcal{B}(B^+ \to K^+\pi^0) = [11.9 ^{+1.1}_{-1.0} (\rm stat)\pm 1.6(\rm syst)]\times 10^{-6}, B(B+π+π0)=[5.50.9+1.0(stat)±0.7(syst)]×106\mathcal{B}(B^+ \to \pi^+\pi^0) = [5.5 ^{+1.0}_{-0.9} (\rm stat)\pm 0.7(\rm syst)]\times 10^{-6}, ACP(B+K+π0)=0.09±0.09(stat)±0.03(syst)\mathcal A_{\it CP}(B^+ \to K^+\pi^0) = -0.09 \pm 0.09 (\rm stat)\pm 0.03(\rm syst), and ACP(B+π+π0)=0.04±0.17(stat)±0.06(syst)\mathcal A_{\it CP}(B^+ \to \pi^+\pi^0) = -0.04 \pm 0.17 (\rm stat)\pm 0.06(\rm syst). The results are consistent with previous measurements and show a detector performance comparable with early Belle performance

    Measurement of the BB^{-} \rightarrow DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell} Branching Fraction in 62.8 fb1^{-1} of Belle II data

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    We report a measurement of the branching fraction of the semileptonic decay BB^{-} \rightarrow DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell} (and its charge conjugate) using 62.8 fb1^{-1} of Υ\Upsilon(4SS) \rightarrow BBBˉ\bar{B} data recorded by the Belle II experiment at the SuperKEKB asymmetric-energy ee+^{+} ee^{-} collider. The neutral charm meson is searched for in the decay mode DD0^{0} \rightarrow KK^{-} π\pi+^{+} and combined with a properly charged identified lepton (electron or muon) to reconstruct this decay. No reconstruction of the second BB meson in the Υ\Upsilon(4SS) event is performed. We obtain BB(DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell}) = (2.29 ±\pm 0.05 stat_{stat} ±\pm 0.08syst_{syst}, in agreement with the world average of this decay. We also determine the ratio of the electron to muon branching fractions to be RR(ee/μ\mu) = 1.04 ±\pm 0.05stat_{stat} ±\pm 0.03syst_{syst} and observe no deviation from lepton universality

    Measurements of branching fractions and CP-violating charge asymmetries in multibody charmless BB decays reconstructed in 2019-2020 Belle II data

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    We report on measurements of branching fractions (B\mathcal{B}) and CP-violating charge asymmetries (ACP\mathcal{A}_{\rm CP}) of multibody charmless BB decays reconstructed by the Belle II experiment at the SuperKEKB electron-positron collider. We use a sample of collisions collected in 2019 and 2020 at the Υ(4S)\Upsilon(4S) resonance and corresponding to 62.862.8 fb1^{-1} of integrated luminosity. We use simulation to determine optimized event selections. The ΔE\Delta E and MbcM_{\rm bc} distributions of the resulting samples are fit to determine signal yields of approximately 690, 840, and 380 decays for the channels B+K+KK+B^+ \to K^+K^-K^+, B+K+ππ+B^+ \to K^+\pi^-\pi^+, and B0K+ππ0B^0 \to K^+\pi^-\pi^0, respectively. These yields are corrected for efficiencies determined from simulation and control data samples to obtain B(B+K+KK+)=[35.8±1.6(stat)±1.4(syst)]×106\mathcal{B}(B^+ \to K^+K^-K^+) = [35.8 \pm 1.6(\rm stat) \pm 1.4 (\rm syst)]\times 10^{-6}, B(B+K+ππ+)=[67.0±3.3(stat)±2.3(syst)]×106\mathcal{B}(B^+ \to K^+\pi^-\pi^+) = [67.0 \pm 3.3 (\rm stat)\pm 2.3 (\rm syst)]\times 10^{-6}, B(B0K+ππ0)=[38.1±3.5(stat)±3.9(syst)]×106\mathcal{B}(B^0 \to K^+\pi^-\pi^0) = [38.1 \pm 3.5 (\rm stat)\pm 3.9 (\rm syst)]\times 10^{-6}, ACP(B+K+KK+)=0.103±0.042(stat)±0.020(syst)\mathcal{A}_{\rm CP}(B^+ \to K^+K^-K^+) = -0.103 \pm 0.042(\rm stat) \pm 0.020 (\rm syst), ACP(B+K+ππ+)=0.010±0.050(stat)±0.021(syst)\mathcal{A}_{\rm CP}(B^+ \to K^+\pi^-\pi^+) = -0.010 \pm 0.050 (\rm stat)\pm 0.021(\rm syst), and ACP(B0K+ππ0)=0.207±0.088(stat)±0.011(syst)\mathcal{A}_{\rm CP}(B^0 \to K^+\pi^-\pi^0) = 0.207 \pm 0.088 (\rm stat)\pm 0.011(\rm syst). Results are consistent with previous measurements and demonstrate detector performance comparable with the best Belle results

    Angular analysis of B+ρ+ρ0B^+ \to \rho^+\rho^0 decays reconstructed in 2019-2020 Belle II data

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    We report on the first Belle II measurement of the branching fraction (B\mathcal{B}) and longitudinal polarization fraction (fLf_L) of B+ρ+ρ0B^+\to \rho^+\rho^0 decays. We reconstruct B+ρ+(π+π0(γγ))ρ0(π+π)B^+\to \rho^+(\to \pi^+\pi^0(\to \gamma\gamma))\rho^0(\to \pi^+\pi^-) decays in a sample of SuperKEKB electron-positron collisions collected by the Belle II experiment in 2019 and 2020 at the Υ\Upsilon(4S) resonance and corresponding to 62.862.8 fb1^{-1} of integrated luminosity. We fit the distributions of the difference between expected and observed BB candidate energy, continuum-suppression variable, dipion masses, and angular distributions of the resulting samples, to determine a signal yield of 104±16104\pm16 events. The signal yields are corrected for efficiencies determined from simulation and control data samples to obtain B(B+ρ+ρ0)=[20.6±3.2(stat)±4.0(syst)]×106\mathcal{B}(B^+ \to \rho^+\rho^0) = [20.6 \pm 3.2(\rm stat) \pm 4.0(\rm syst)]\times 10^{-6}, and fL(B+ρ+ρ0)=0.9360.041+0.049(stat)±0.021(syst)f_L(B^+ \to \rho^+\rho^0) = 0.936 ^{+0.049}_{-0.041}(\rm stat)\pm 0.021(\rm syst). This first Belle II B+ρ+ρ0B^+ \to \rho^+\rho^0 angular analysis yields results compatible with previous determinations, and indicates Belle II performance superior to early Belle results

    τ\tau lepton mass measurement at Belle II

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    The reconstruction of tau-pair production, e+eτ+τe^{+}e^{-} \to \tau^{+}\tau^{-}, from the subsequent 3-prong (τ+π+ππ+νˉτ\tau^{+} \rightarrow \pi^{+} \pi^{-} \pi^{+} \bar{\nu}_{\tau}) and 1-prong (τνˉντ\tau^{-} \to \ell^{-} \bar{\nu}_{\ell} \nu_{\tau}, τhντ\tau^{-} \to h^{-} \nu_{\tau} or τππ0ντ\tau^{-} \to \pi^{-} \pi^0 \nu_{\tau}) decays, is presented using 8.8 fb1^{-1} of e+ee^{+}e^{-} collision data of Belle II at the center-of-mass energy s=mΥ(4S)\sqrt{s} = m_{\Upsilon(4S)}. The pseudomass technique developed by the ARGUS experiment is used to measure the τ\tau-lepton mass mτm_{\tau} in the 3-prong τ+π+ππ+νˉτ\tau^{+} \to \pi^{+} \pi^{-} \pi^{+} \bar{\nu}_{\tau} decay, resulting in mτ=1777.28±0.75 (stat.)±0.33 (sys.) MeV/c2m_{\tau} = 1777.28 \pm 0.75~{\rm (stat.)} \pm 0.33 ~{\rm (sys.)}~{\rm{MeV}/\rm{c}^2}

    First search for direct CPCP-violating asymmetry in B0K0π0B^0 \to K^0 \pi^0 decays at Belle II

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    We report on the first measurement of the direct CPCP-violating asymmetry (A\mathcal{A}) in the charmless decay B0K0π0B^0 \to K^0\pi^0 at Belle II and an updated measurement of its branching fraction (B\mathcal{B}). We use a sample of electron-positron collisions collected in 2019 and 2020 at the Υ(4S)\Upsilon(4S) resonance and corresponding to 62.862.8fb1\text{fb}^{-1} of integrated luminosity. We reconstruct and select about 5050B0KS0π0B^0 \to K_S^0 \pi^0 candidates, and we measure AK0π0=0.400.44+0.46(stat)±0.04(syst)\mathcal{A}_{{K^0\pi^0}} = -0.40_{-0.44}^{+0.46} (\text{stat}) \pm 0.04 (\text{syst}) and B(B0K0π0)=[8.51.6+1.7(stat)±1.2(syst)]×106\mathcal{B}(B^0 \to K^0 \pi^0) = [8.5_{-1.6}^{+1.7} (\text{stat}) \pm 1.2 (\text{syst})] \times 10^{-6}. This is the first measurement of CPCP violation in B0K0π0B^0 \to K^0\pi^0 decays reported by Belle II. The results agree with previous determinations and show a detector performance comparable with the best Belle results

    Measurement of the BB^{-} \rightarrow DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell} Branching Fraction in 62.8 fb1^{-1} of Belle II data

    No full text
    We report a measurement of the branching fraction of the semileptonic decay BB^{-} \rightarrow DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell} (and its charge conjugate) using 62.8 fb1^{-1} of Υ\Upsilon(4SS) \rightarrow BBBˉ\bar{B} data recorded by the Belle II experiment at the SuperKEKB asymmetric-energy ee+^{+} ee^{-} collider. The neutral charm meson is searched for in the decay mode DD0^{0} \rightarrow KK^{-} π\pi+^{+} and combined with a properly charged identified lepton (electron or muon) to reconstruct this decay. No reconstruction of the second BB meson in the Υ\Upsilon(4SS) event is performed. We obtain BB(DD0^{0}\ell^{-}νˉ\bar{\nu}_{\ell}) = (2.29 ±\pm 0.05 stat_{stat} ±\pm 0.08syst_{syst}, in agreement with the world average of this decay. We also determine the ratio of the electron to muon branching fractions to be RR(ee/μ\mu) = 1.04 ±\pm 0.05stat_{stat} ±\pm 0.03syst_{syst} and observe no deviation from lepton universality

    Measurement of the branching fraction for B0π0π0B^{0} \rightarrow \pi^{0} \pi^{0} decays reconstructed in 2019-2020 Belle II data

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    International audienceWe report the first reconstruction of the B0π0π0B^{0} \to \pi^{0} \pi^{0} decay mode at Belle II using samples of 2019 and 2020 data that correspond to 62.8 fb1^{-1} of integrated luminosity. We find 14.05.6+6.814.0^{+6.8}_{-5.6} signal decays, corresponding to a significance of 3.4 standard deviations and determine a branching ratio of B(B0π0π0)=[0.980.39+0.48±0.27]×106\mathcal{B}(B^{0} \rightarrow \pi^{0} \pi^{0}) = [0.98^{+0.48}_{-0.39} \pm 0.27] \times 10^{-6}. The results agree with previous determinations and contribute important information to an early assessment of detector performance and Belle II's potential for future determinations of α/ϕ2\alpha/\phi_2 using BππB \rightarrow \pi \pi modes

    Angular analysis of B+ρ+ρ0B^+ \to \rho^+\rho^0 decays reconstructed in 2019-2020 Belle II data

    No full text
    We report on the first Belle II measurement of the branching fraction (B\mathcal{B}) and longitudinal polarization fraction (fLf_L) of B+ρ+ρ0B^+\to \rho^+\rho^0 decays. We reconstruct B+ρ+(π+π0(γγ))ρ0(π+π)B^+\to \rho^+(\to \pi^+\pi^0(\to \gamma\gamma))\rho^0(\to \pi^+\pi^-) decays in a sample of SuperKEKB electron-positron collisions collected by the Belle II experiment in 2019 and 2020 at the Υ\Upsilon(4S) resonance and corresponding to 62.862.8 fb1^{-1} of integrated luminosity. We fit the distributions of the difference between expected and observed BB candidate energy, continuum-suppression variable, dipion masses, and angular distributions of the resulting samples, to determine a signal yield of 104±16104\pm16 events. The signal yields are corrected for efficiencies determined from simulation and control data samples to obtain B(B+ρ+ρ0)=[20.6±3.2(stat)±4.0(syst)]×106\mathcal{B}(B^+ \to \rho^+\rho^0) = [20.6 \pm 3.2(\rm stat) \pm 4.0(\rm syst)]\times 10^{-6}, and fL(B+ρ+ρ0)=0.9360.041+0.049(stat)±0.021(syst)f_L(B^+ \to \rho^+\rho^0) = 0.936 ^{+0.049}_{-0.041}(\rm stat)\pm 0.021(\rm syst). This first Belle II B+ρ+ρ0B^+ \to \rho^+\rho^0 angular analysis yields results compatible with previous determinations, and indicates Belle II performance superior to early Belle results
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