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  1. 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
  2. We present an analysis of the processes e+eηϒ(1S) , ηϒ(2S) , and γXb with Xbπ+π χbJ , χbJ γϒ(1S) ( J=1 , 2) reconstructed from γγπ+π+ (=e,μ) final states in 19.6fb1 of Belle II data collected at four energy points near the peak of the ϒ(10753) resonance. Here, Xb is a hypothetical bottomonium-sector partner of the X(3872) . In the process e+eηϒ(2S) , we observe a signal with a significance that exceeds 6.0σ when all energy points are combined. A signal with a significance of 4.2σ is observed at a center-of-mass energy of 10.653 GeV, close to the B*B¯* threshold. At this energy, we measure σ(ηϒ(2S))/σ(π+πϒ(2S))>23 at the 90% confidence level, indicating a strong violation of heavy-quark spin symmetry. No significant signal is observed for e+eηϒ(1S) or γXb . Upper limits on the Born cross sections for the processes e+eηϒ(1S) and e+eγXb with Xbπ+π χbJ are determined. 
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    Free, publicly-accessible full text available March 1, 2027
  3. A<sc>bstract</sc> We present the result of a search for the charged-lepton-flavor violating decaysτ→ e±, whereℓis a muon or an electron, using a data sample with an integrated luminosity of 428 fb−1recorded by the Belle II experiment at the SuperKEKBe+ecollider. The selection ofe+e→ τ+τevents containing a signal candidate is based on an inclusive-tagging reconstruction and on a boosted decision tree to suppress background. Upper limits on the branching fractions between 1.3 and 2.5 × 10−8are set at the 90% confidence level. These results are the most stringent bounds to date for four of the modes. 
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    Free, publicly-accessible full text available December 1, 2026
  4. We present a measurement of the branching fraction and fraction of longitudinal polarization of B0ρ+ρ decays, which have two π0 ’s in the final state. We also measure time-dependent CP violation parameters for decays into longitudinally polarized ρ+ρ pairs. This analysis is based on a data sample containing (387±6)×106 ϒ(4S) mesons collected with the Belle II detector at the SuperKEKB asymmetric-energy e+e collider in 2019–2022. We obtain B(B0ρ+ρ)=(2.8 90.22+0.23 0.27+0.29 )×105 , fL =0.92 10.025+0.024 0.015+0.017 , S=0.26±0.19±0.08 , and C=0.02±0.1 20.05+0.06 , where the first uncertainties are statistical and the second are systematic. We use these results to perform an isospin analysis to constrain the Cabibbo-Kobayashi-Maskawa angle ϕ2 and obtain two solutions; the result consistent with other Standard Model constraints is ϕ2 =( 92.64.7+4.5 )° . Published by the American Physical Society2025 
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  5. A<sc>bstract</sc> Using data samples of 983.0 fb−1and 427.9 fb−1accumulated with the Belle and Belle II detectors operating at the KEKB and SuperKEKB asymmetric-energye+ecolliders, singly Cabibbo-suppressed decays$$ {\Xi}_c^{+}\to p{K}_S^0 $$ Ξc+pKS0 ,$$ {\Xi}_c^{+}\to \Lambda {\pi}^{+} $$ Ξc+Λπ+ , and$$ {\Xi}_c^{+}\to {\Sigma}^0{\pi}^{+} $$ Ξc+Σ0π+ are observed for the first time. The ratios of branching fractions of$$ {\Xi}_c^{+}\to p{K}_S^0 $$ Ξc+pKS0 ,$$ {\Xi}_c^{+}\to \Lambda {\pi}^{+} $$ Ξc+Λπ+ , and$$ {\Xi}_c^{+}\to {\Sigma}^0{\pi}^{+} $$ Ξc+Σ0π+ relative to that of$$ {\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+} $$ Ξc+Ξπ+π+ are measured to be$$ {\displaystyle \begin{array}{c}\frac{\mathcal{B}\left({\Xi}_c^{+}\to p{K}_S^0\right)}{\mathcal{B}\left({\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+}\right)}=\left(2.47\pm 0.16\pm 0.07\right)\%,\\ {}\frac{\mathcal{B}\left({\Xi}_c^{+}\to \Lambda {\pi}^{+}\right)}{\mathcal{B}\left({\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+}\right)}=\left(1.56\pm 0.14\pm 0.09\right)\%,\\ {}\frac{\mathcal{B}\left({\Xi}_c^{+}\to {\Sigma}^0{\pi}^{+}\right)}{\mathcal{B}\left({\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+}\right)}=\left(4.13\pm 0.26\pm 0.22\right)\%.\end{array}} $$ B Ξc+pKS0 B Ξc+Ξπ+π+ = 2.47±0.16±0.07 %, B Ξc+Λπ+ B Ξc+Ξπ+π+ = 1.56±0.14±0.09 %, B Ξc+Σ0π+ B Ξc+Ξπ+π+ = 4.13±0.26±0.22 %. Multiplying these values by the branching fraction of the normalization channel,$$ \mathcal{B}\left({\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+}\right)=\left(2.9\pm 1.3\right)\% $$ B Ξc+Ξπ+π+ = 2.9±1.3 % , the absolute branching fractions are determined to be$$ {\displaystyle \begin{array}{c}\mathcal{B}\left({\Xi}_c^{+}\to p{K}_S^0\right)=\left(7.16\pm 0.46\pm 0.20\pm 3.21\right)\times {10}^{-4},\\ {}\mathcal{B}\left({\Xi}_c^{+}\to \Lambda {\pi}^{+}\right)=\left(4.52\pm 0.41\pm 0.26\pm 2.03\right)\times {10}^{-4},\\ {}\mathcal{B}\left({\Xi}_c^{+}\to {\Sigma}^0{\pi}^{+}\right)=\left(1.20\pm 0.08\pm 0.07\pm 0.54\right)\times {10}^{-3}.\end{array}} $$ B Ξc+pKS0 = 7.16±0.46±0.20±3.21 ×104, B Ξc+Λπ+ = 4.52±0.41±0.26±2.03 ×104, B Ξc+Σ0π+ = 1.20±0.08±0.07±0.54 ×103. The first and second uncertainties above are statistical and systematic, respectively, while the third ones arise from the uncertainty in$$ \mathcal{B}\left({\Xi}_c^{+}\to {\Xi}^{-}{\pi}^{+}{\pi}^{+}\right) $$ B Ξc+Ξπ+π+
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  6. A<sc>bstract</sc> We perform the first search forCPviolation in$$ {D}_{(s)}^{+}\to {K}_S^0{K}^{-}{\pi}^{+}{\pi}^{+} $$ Ds+ KS0Kπ+π+ decays. We use a combined data set from the Belle and Belle II experiments, which studye+ecollisions at center-of-mass energies at or near the Υ(4S) resonance. We use 980 fb−1of data from Belle and 428 fb−1of data from Belle II. We measure sixCP-violating asymmetries that are based on triple products and quadruple products of the momenta of final-state particles, and also the particles’ helicity angles. We obtain a precision at the level of 0.5% for$$ {D}^{+}\to {K}_S^0{K}^{-}{\pi}^{+}{\pi}^{+} $$ D+KS0Kπ+π+ decays, and better than 0.3% for$$ {D}_s^{+}\to {K}_S^0{K}^{-}{\pi}^{+}{\pi}^{+} $$ Ds+KS0Kπ+π+ decays. No evidence ofCPviolation is found. Our results for the triple-product asymmetries are the most precise to date for singly-Cabibbo-suppressedD+decays. Our results for the other asymmetries are the first such measurements performed for charm decays. 
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  7. We present a search for the rare flavor-changing neutral-current decay B0K*0τ+τ with data collected by the Belle II experiment at the SuperKEKB electron-positron collider. The analysis uses a 365fb1 data sample recorded at the center-of-mass energy of the ϒ (4S) resonance. One of the B mesons produced in the ϒ (4S) B0 B¯ 0 process is fully reconstructed in a hadronic decay mode, while its companion B meson is required to decay into a K*0 and two τ leptons of opposite charge. The τ leptons are reconstructed in final states with a single electron, muon, charged pion or charged ρ meson, and additional neutrinos. We set an upper limit on the branching fraction of B(B0K*0τ+τ)<1.8×103 at the 90% confidence level, which is the most stringent constraint reported to date. 
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    Free, publicly-accessible full text available October 1, 2026
  8. We measure the branching fraction and CP -violating flavor-dependent rate asymmetry of B0π0π0 decays reconstructed using the Belle II detector in an electron-positron collision sample containing 387×106 ϒ (4S) mesons. Using an optimized event selection, we find 125±20 signal decays in a fit to background-discriminating and flavor-sensitive distributions. The resulting branching fraction is (1.25±0.23)×106 and the CP -violating asymmetry is 0.03±0.30 . Published by the American Physical Society2025 
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  9. We measure the time-integrated CP asymmetry in D0KS0KS0 decays reconstructed in e+e cc¯ events collected by the Belle and Belle II experiments. The corresponding data samples have integrated luminosities of 980 and 428fb1 , respectively. The D0 decays are required to originate from the D*+D0π+ decay, which determines the charm flavor at production time. A control sample of D0K+K decays is used to correct for production and detection asymmetries. The result, (1.4±1.3(stat)±0.1(syst))% , is consistent with previous determinations and with CP symmetry. Published by the American Physical Society2025 
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  10. We measure the branching fraction of the decay B0J/ψω using data collected with the Belle II detector at the SuperKEKB collider. The data contain (387±6)×106B B¯ meson pairs produced in energy-asymmetric e+e collisions at the ϒ(4S) resonance. The measured branching fraction B(B0J/ψω)=(2.16±0.30±0.14)×105 , where the first uncertainty is statistical and the second is systematic, is more precise than previous results and constitutes the first observation of the decay with a significance of 6.5 standard deviations. Published by the American Physical Society2025 
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