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  1. We report the first search for the flavor-changing neutral-current decays B X s ν ν ¯ , where X s is a hadronic system with strangeness equal to 1, in data collected with the Belle II detector at the SuperKEKB asymmetric-energy e + e collider. The data sample corresponds to an integrated luminosity of 365 fb 1 collected at the ϒ ( 4 S ) resonance and 43 fb 1 collected at a center-of-mass energy 60 MeV below resonance for estimation of e + e q q ¯ continuum background. One of the B mesons from the ϒ ( 4 S ) B B ¯ decay is fully reconstructed in a hadronic decay mode. The B X s ν ν ¯ decay is reconstructed with a sum-of-exclusives approach that uses 30 X s 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 X s mass, M X s true , chosen to separate contributions from K , K * ( 892 ) , 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 0.0 < M X s true < 0.6 GeV / c 2 , 0.6 < M X s true < 1.0 GeV / c 2 , and 1.0 GeV / c 2 < M X s true of 2.2 × 10 5 , 9.3 × 10 5 , and 30.9 × 10 5 , respectively. Combining the three mass regions, we obtain the upper limit on the branching fraction, B ( B X s ν ν ¯ ) < 3.3 × 10 4
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    Free, publicly-accessible full text available June 1, 2027
  2. We report measurements of production cross sections for ρ + , ρ 0 , ω , K * + , K * 0 , ϕ , η , K S 0 , f 0 ( 980 ) , D + , D 0 , D s + , D * + , D * 0 , and D s * + in e + e collisions at a center-of-mass energy near 10.58 GeV. The data were recorded by the Belle experiment, consisting of 571 fb 1 at 10.58 GeV and 74 fb 1 at 10.52 GeV. Production cross sections are extracted as a function of the fractional hadron momentum x p . The measurements are compared to Monte Carlo generator predictions with various fragmentation settings, including those that have increased fragmentation into vector mesons over pseudoscalar mesons. The cross sections measured for light hadrons are consistent with no additional increase of vector over pseudoscalar mesons. The charmed-meson cross sections are compared to earlier measurements—when available—including older Belle results, which they supersede. They are in agreement before application of an improved initial-state radiation correction procedure that causes slight changes in their x p shapes. Published by the American Physical Society2025 
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  3. A<sc>bstract</sc> We study the processesχbJωandχbJ+ππ0)non−ω(J= 0, 1, 2) at center-of-mass energies$$\sqrt{s}$$from 10.73 to 11.02 GeV using a 142.5 fb−1data sample collected with the Belle detector at the KEKB asymmetric-energye+ecollider; and at$$\sqrt{s}\sim 10.75$$GeV using a 19.8 fb−1sample collected with Belle II at SuperKEKB. We find that the Υ(10753) state decays intoχbJωbut not intoχbJ+ππ0)non−ω, while the Υ(10860) state, in contrast, decays intoχbJ+ππ0)non−ωbut not intoχbJω. The mass and width of the Υ(10753) state are measured to be (10756.1 ± 3.4(stat.) ± 2.7(syst.)) MeV/c2and (32.2 ± 11.3(stat.) ± 14.9(syst.)) MeV. The products of the partial width toe+eand branching fractions for Υ(10753)→ χb1ωand Υ(10753)→ χb2ωare (1.57±0.27(stat.)±0.22(syst.)) eV and (1.39±0.41(stat.)±0.33(syst.)) eV. 
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    Free, publicly-accessible full text available April 1, 2027
  4. A<sc>bstract</sc> We report a search for the lepton-flavor-violating decaysτ±→ℓ±α(ℓ=e,μ), whereαis an undetected spin-0 particle, such as an axion-like particle using 736 × 106tau lepton pairs collected by the Belle detector at the KEKB asymmetric-energye+ecollider. We find no evidence of signal and obtain the most stringent upper limits on the branching fractions at 95% confidence level:$$\mathcal{B}$$(τ±→ e±α) < (0.4–6.4)×10−4and$$\mathcal{B}$$(τ±→ μ±α) < (0.2–3.5)×10−4at 95% confidence level for anαmass in the range 0.0≤ mα≤1.6 GeV/c2
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  5. We search for the e + e γ χ b J ( J = 0 , 1, 2) processes at center-of-mass energies s = 10.653 , 10.701, 10.746, and 10.804 GeV. These data were collected with the Belle II detector at the SuperKEKB collider and correspond to 3.5, 1.6, 9.8, and 4.7 fb 1 of integrated luminosity, respectively. We set upper limits at the 90% confidence level on the Born cross sections for e + e γ χ b J at each center-of-mass energy s near 10.746 GeV. The upper limits at 90% confidence level on the Born cross sections for e + e γ χ b 1 are significantly smaller than the corresponding measured values for e + e ω χ b 1 and e + e π + π ϒ ( 2 S ) at s = 10.746 GeV
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    Free, publicly-accessible full text available March 1, 2027
  6. We present an analysis of the processes e + e η ϒ ( 1 S ) , η ϒ ( 2 S ) , and γ X b with X b π + π χ b J , χ b J γ ϒ ( 1 S ) ( J = 1 , 2) reconstructed from γ γ π + π + ( = e , μ ) final states in 19.6 fb 1 of Belle II data collected at four energy points near the peak of the ϒ ( 10753 ) resonance. Here, X b is a hypothetical bottomonium-sector partner of the X ( 3872 ) . In the process e + e η ϒ ( 2 S ) , we observe a signal with a significance that exceeds 6.0 σ when all energy points are combined. A signal with a significance of 4.2 σ is observed at a center-of-mass energy of 10.653 GeV, close to the B * B ¯ * threshold. At this energy, we measure σ ( η ϒ ( 2 S ) ) / σ ( π + π ϒ ( 2 S ) ) > 23 at the 90% confidence level, indicating a strong violation of heavy-quark spin symmetry. No significant signal is observed for e + e η ϒ ( 1 S ) or γ X b . Upper limits on the Born cross sections for the processes e + e η ϒ ( 1 S ) and e + e γ X b with X b π + π χ b J are determined. 
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    Free, publicly-accessible full text available March 1, 2027
  7. A<sc>bstract</sc> Using the data samples of 102 million Υ(1S) and 158 million Υ(2S) events collected by the Belle detector, we search for a pentaquark state in thepJ/ψfinal state from Υ(1,2S) inclusive decays. Here, the charge-conjugate$$\overline{p }J/\psi $$is included. We observe clearpJ/ψproduction in Υ(1,2S) decays and measure the branching fractions to be$$\mathcal{B}[\Upsilon (1S)\to pJ/\psi +anything]=[8.1\pm 0.6(stat.)\pm 0.5(syst.)]\times {10}^{-5}$$and$$\mathcal{B}[\Upsilon (2S)\to pJ/\psi +anything]=[4.3\pm 0.5(stat.)\pm 0.4(syst.)]\times {10}^{-5}$$. We also measure the cross section of inclusivepJ/ψproduction ine+eannihilation to beσ(e+e→pJ/ψ+anything) = [108 ± 11(stat.) ± 6(syst.)] fb at$$\sqrt{s}=10.52$$GeV using an 89.5 fb−1continuum data sample. There is no significantPc(4312)+,Pc(4440)+orPc(4457)+signal found in thepJ/ψfinal states in Υ(1,2S) inclusive decays. We determine the upper limits of$$\mathcal{B}\left[\Upsilon \left({1},{2}S\right)\to {P}_{c}^{+}+anything\right]\cdot \mathcal{B}\left({P}_{c}^{+}\to pJ/\psi \right)$$to be at the 10−6level. 
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    Free, publicly-accessible full text available September 1, 2026
  8. A sample of 365 fb 1 of e + e ϒ ( 4 S ) B B ¯ data collected by the Belle II experiment is used to measure the partial branching fractions of charmless semileptonic B meson decays and determine the magnitude of the Cabibbo-Kobayashi-Maskawa (CKM) matrix element V u b . Events containing a signal electron or muon and a fully reconstructed hadronic B decay that constrains the signal kinematics are selected, while the rest of the event defines the hadronic system X u associated with the signal. To discriminate the signal from the 50-times larger background originating from CKM-favored semileptonic B decays, a template fit is performed in both signal and control regions after applying an optimized selection. The partial branching fraction measured for lepton energies greater than 1 GeV in the signal B meson rest frame is Δ B ( B X u ν ) = ( 1.54 ± 0.08 ( stat ) ± 0.12 ( syst ) ) × 10 3 . From this measurement, using the Gambino, Giordano, Ossola, Uraltsev theoretical framework, | V u b | = ( 4.01 ± 0.1 9 0.08 + 0.07 ) × 10 3 is determined, where the uncertainties are experimental and theoretical, respectively. This value is consistent with the world average obtained from previous inclusive measurements. Different theoretical predictions and partial branching fractions measured in other phase-space regions, defined by additional selections on the X u and leptonic system masses, are also used to determine | V u b | . This allows for a comparison of the resulting values across theoretical frameworks and phase-space regions. 
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    Free, publicly-accessible full text available February 1, 2027
  9. A<sc>bstract</sc> A measurement of the angular structure of inclusive jets and those containing a prompt D0meson in proton-proton collisions at the LHC at a center-of-mass energy of 5.02 TeV is presented. The data corresponding to an integrated luminosity of 301 pb−1were collected by the CMS experiment in 2017. Two jet grooming algorithms, late-kTand soft drop, are used to study the intrajet radiation pattern using iterative Cambridge-Aachen declustering. The splitting-angle distributions of jets with transverse momentum (pT) of around 100 GeV, obtained with these two algorithms, show that there is a shift of the distribution for jets containing a prompt D0meson with respect to inclusive jets. The suppression of emissions at small angles observed in the late-kTgrooming approach is consistent with the dead-cone effect, whereas the similar suppression for splittings selected with the soft-drop algorithm appears to be induced by gluon splitting to charm quark-antiquark pairs at large angles. The measured distributions are corrected to the particle level and can be used to constrain model predictions for the substructure of high-pTcharm quark jets. 
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    Free, publicly-accessible full text available May 1, 2027
  10. A hot and dense state of nuclear matter, known as the quark-gluon plasma, is created in collisions of ultrarelativistic heavy nuclei. Highly energetic quarks and gluons, collectively referred to as partons, lose energy as they travel through this matter, leading to suppressed production of particles with large transverse momenta ( p T ). Conversely, high- p T particle suppression has not been seen in proton-lead collisions, raising questions regarding the minimum system size required to observe parton energy loss. Oxygen-oxygen (OO) collisions examine a region of effective system size that lies between these two extreme cases. The CMS detector at the CERN LHC has been used to quantify charged-particle production in inclusive OO collisions for the first time via measurements of the nuclear modification factor ( R AA ). The R AA is derived by comparing particle production to expectations based on proton-proton ( p p ) data and has a value of unity in the absence of nuclear effects. The data for OO and p p collisions at a nucleon-nucleon center-of-mass energy s NN = 5.36 TeV correspond to integrated luminosities of 6.1 nb 1 and 1.02 pb 1 , respectively. The R AA is below unity with a minimum of 0.69 ± 0.04 around p T = 6 GeV . The data exhibit better agreement with theoretical models incorporating parton energy loss as compared to baseline models without energy loss. 
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    Free, publicly-accessible full text available April 1, 2027