Using data samples collected by the Belle and Belle II experiments at the Υ(4S) resonance with integrated luminosities of 571 fb−1 and 365 fb−1, respectively, we measure the pseudoscalar B-meson mass difference to be m(B0) − m(B+) = (0.495 ± 0.024 ± 0.005) MeV/c2. The results are based on a simultaneous fit to the variable, which is related to the B momentum, for B0 and B+ candidates; and to the energy dependence of, which is measured using changes in the average center-of-mass energy over the data taking periods. The phase-space hypothesis, upon which previous measurements rely, is strongly disfavored by our fit; the measured mass-difference value for the phase-space hypothesis also differs significantly from our measurement. We constrain in a broader energy range than covered by the direct measurement and extract the energy dependence of in the range from the threshold up to 10.59 GeV. We interpret the results using a phenomenological model and constrain the parameters of the potential in the isovector channel.

Measurements of the mass difference m(B0) − m(B+) and the energy dependence of the cross-section ratio σ(e+e− → B0 ¯B0) / σ(e+e− → B+B−) at Belle and Belle II

Antonioli, C.;Gaz, A.;Lin, S.;Stroili, R.;
2026

Abstract

Using data samples collected by the Belle and Belle II experiments at the Υ(4S) resonance with integrated luminosities of 571 fb−1 and 365 fb−1, respectively, we measure the pseudoscalar B-meson mass difference to be m(B0) − m(B+) = (0.495 ± 0.024 ± 0.005) MeV/c2. The results are based on a simultaneous fit to the variable, which is related to the B momentum, for B0 and B+ candidates; and to the energy dependence of, which is measured using changes in the average center-of-mass energy over the data taking periods. The phase-space hypothesis, upon which previous measurements rely, is strongly disfavored by our fit; the measured mass-difference value for the phase-space hypothesis also differs significantly from our measurement. We constrain in a broader energy range than covered by the direct measurement and extract the energy dependence of in the range from the threshold up to 10.59 GeV. We interpret the results using a phenomenological model and constrain the parameters of the potential in the isovector channel.
2026
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3615552
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