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We report the first observation of the radiative decay with a statistical significance exceeding 10 standard deviations. The signal is observed in the continuum process, using combined data samples of from Belle and from Belle II, collected at the KEKB and SuperKEKB asymmetric-energy colliders, respectively. The branching fraction ratio is measured to be . This result provides crucial discrimination between theoretical models of the structure.more » « lessFree, publicly-accessible full text available June 1, 2027
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Using a data sample of collected by the Belle II detector at or near the and resonances, the cross sections for at center-of-mass energies ranging from 3.8 GeV or the production threshold to have been measured via initial-state radiation. The cross sections for the processes and are consistent with previously published results. The cross sections for these channels obtained by combining with previous Belle results are also given. The process is investigated for the first time. The yields are small and no significant structure is observed in the cross section versus energy. Searches for vector charmoniumlike states in the systems, and for associated intermediate states in the systems, are also presented.more » « lessFree, publicly-accessible full text available June 1, 2027
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We report a measurement of the branching fraction for the leptonic decay . This work presents the first result using Belle II data, an updated Belle measurement that supersedes the previous result, and their combination, which yields the most precise search to date. The analysis is based on of collision data collected at a center-of-mass energy of 10.58 GeV with the Belle and Belle II detectors at the KEKB and SuperKEKB colliders, respectively. We measure , where the first uncertainty is statistical and the second systematic. The observed significance relative to the background-only hypothesis is 2.4 standard deviations. We set a 90% confidence level upper limit of using a frequentist approach and a 90% credibility level upper limit of using a Bayesian approach. These are the most stringent limits to date. The result is interpreted as an exclusion region in the parameter space of type II and type III two-Higgs-doublet models. We search for stable sterile neutrinos with masses . No signal is observed, and the resulting exclusion on the squared mixing parameter provides improvement over previous limits. We report a measurement of the partial branching fraction of semileptonic decays with , obtaining . We present a model-dependent study of weak annihilation decays using the muon momentum spectrum. We observe a signal of 2.4 standard deviations above the background-only hypothesis in regions where the distribution resembles that of decays.more » « lessFree, publicly-accessible full text available June 1, 2027
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We report the first search for the flavor-changing neutral-current decays , where is a hadronic system with strangeness equal to 1, in data collected with the Belle II detector at the SuperKEKB asymmetric-energy collider. The data sample corresponds to an integrated luminosity of collected at the resonance and collected at a center-of-mass energy 60 MeV below resonance for estimation of continuum background. One of the mesons from the decay is fully reconstructed in a hadronic decay mode. The decay is reconstructed with a sum-of-exclusives approach that uses 30 decay modes. This approach provides high sensitivity to the inclusive decay, despite the presence of two undetected neutrinos. The search is performed in three regions of the mass, , chosen to separate contributions from , , and heavier strange final states. We do not observe a significant signal and set upper limits at 90% confidence level on the partial branching fractions for the regions , , and of , , and , respectively. Combining the three mass regions, we obtain the upper limit on the branching fraction, .more » « lessFree, publicly-accessible full text available June 1, 2027
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A<sc>bstract</sc> A search for Higgs boson (H) production at high transverse momentum (pT) in the WW decay channel is presented. The analysis uses proton-proton collisions at$$ \sqrt{s}=13 $$ TeV recorded by the CMS experiment in 2016–2018, corresponding to an integrated luminosity of 138 fb−1. The visible decay products of the Higgs boson are reconstructed as a single large-radius jet with one isolated lepton or none (1ℓand 0ℓ, respectively;ℓ= e,μ). The H-candidate jets are identified using an advanced transformer-based algorithm and are calibrated with the Lund jet plane reweighting technique. The 1ℓchannel is further split into gluon fusion, vector boson fusion, and associated production with hadronically decaying vector boson categories, while the 0ℓchannel considers all production processes inclusively. The measured cross section times the H→WW branching fraction relative to the standard model expectation is$$ \mu =-{0.19}_{-0.46}^{+0.48} $$ , indicating no evidence of a signal above the background. This measurement represents the first dedicated study of highly Lorentz-boosted H→WW decays, complementing earlier searches for high-pTHiggs boson in other decay channels.more » « lessFree, publicly-accessible full text available July 27, 2027
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A<sc>bstract</sc> Using data samples collected by the Belle and Belle II experiments at the Υ(4S) resonance with integrated luminosities of 571 fb−1and 365 fb−1, respectively, we measure the pseudoscalarB-meson mass difference to bem(B0) −m(B+) = (0.495 ± 0.024 ± 0.005) MeV/c2. The results are based on a simultaneous fit to the variable$${\overline{M} }_{bc}$$, which is related to theBmomentum, forB0andB+candidates; and to the energy dependence of$$\mathcal{R}=\sigma ({e}^{+}{e}^{-}\to {B}^{0}{\overline{B} }^{0}) / \sigma ({e}^{+}{e}^{-}\to {B}^{+}{B}^{-})$$, which is measured using changes in the average center-of-mass energy over the data taking periods. The phase-space hypothesis$$\mathcal{R}={({p}_{{B}^{0}} /{p}_{{B}^{+}})}^{3}$$, 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$$\mathcal{R}$$in a broader energy range than covered by the direct measurement and extract the energy dependence of$$\mathcal{R}$$in the range from the$$B\overline{B }$$threshold up to 10.59 GeV. We interpret the results using a phenomenological model and constrain the parameters of the$$B\overline{B }$$potential in the isovector channel.more » « lessFree, publicly-accessible full text available May 1, 2027
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A search for the pair production of heavy spin- or spin- resonances ( ) in proton-proton collisions at is presented. Data collected with the CMS detector at the CERN LHC from 2016 to 2018 corresponding to an integrated luminosity of are used. The analysis targets benchmark signal scenarios where one decays into a top quark ( ) and a photon ( ), and the other into a quark and a gluon ( ), i.e., . All-hadronic final states from the pair decay chain are selected using jet substructure techniques. The signal is probed as a function of the candidate mass, which is reconstructed using the photon and a top quark candidate jet. No significant deviation from the background-only hypothesis is found. Observed (expected) upper limits on the signal cross section at 95% confidence level are set, excluding masses of spin- particles below 930 (930) GeV and spin- particles below 1330 (1390) GeV. This analysis marks the first search for heavy resonances in the channel. Exploiting the high-energy photon to reduce the backgrounds, this search achieves sensitivity competitive with searches for spin- despite the small expected branching fraction.more » « lessFree, publicly-accessible full text available June 9, 2027
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Free, publicly-accessible full text available June 1, 2027
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We measure the time- and phase-space-integrated asymmetry in decays reconstructed in events collected by the Belle II experiment from 2019 to 2022. This sample corresponds to an integrated luminosity of . We require mesons to be produced in decays to determine their flavor at production. Control samples of decays are used to correct for reconstruction-induced asymmetries. The result, , where the first uncertainty is statistical and the second systematic, is the most precise result to date and is consistent with conservation.more » « lessFree, publicly-accessible full text available March 1, 2027
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