Attention:The NSF Public Access Repository (PAR) system and access will be unavailable from 5:00 PM ET until 8:00 PM ET on Friday, September 11 due to maintenance. We apologize for the inconvenience.


Search for: All records

Creators/Authors contains: "Li, S. X."

Note: When clicking on a Digital Object Identifier (DOI) number, you will be taken to an external site maintained by the publisher. Some full text articles may not yet be available without a charge during the embargo (administrative interval).
What is a DOI Number?

Some links on this page may take you to non-federal websites. Their policies may differ from this site.

  1. We report the first observation of the radiative decay Ds0* (2317)+ Ds*+ γ with a statistical significance exceeding 10 standard deviations. The signal is observed in the continuum e+ecc¯ process, using combined data samples of 980.4fb1 from Belle and 427.9fb1 from Belle II, collected at the KEKB and SuperKEKB asymmetric-energy e+e colliders, respectively. The branching fraction ratio B[ Ds0* (2317)+ Ds*+ γ]/B[ Ds0* (2317)+ Ds+ π0] is measured to be [7.13±0.70(stat)±0.26(syst)]% . This result provides crucial discrimination between theoretical models of the Ds0* (2317)+ structure. 
    more » « less
    Free, publicly-accessible full text available June 1, 2027
  2. We report the first search for the flavor-changing neutral-current decays BXsνν¯ , where Xs 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 365fb1 collected at the ϒ(4S) resonance and 43fb1 collected at a center-of-mass energy 60 MeV below resonance for estimation of e+eqq¯ continuum background. One of the B mesons from the ϒ(4S)B B¯ decay is fully reconstructed in a hadronic decay mode. The BXsνν¯ decay is reconstructed with a sum-of-exclusives approach that uses 30 Xs 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 Xs mass, MXstrue , 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 Xs true <0.6GeV/c2 , 0.6< MXstrue <1.0GeV/c2 , and 1.0GeV/c2< MXstrue of 2.2×105 , 9.3×105 , and 30.9×105 , respectively. Combining the three mass regions, we obtain the upper limit on the branching fraction, B(B Xs ν ν¯ )<3.3×104
    more » « less
    Free, publicly-accessible full text available June 1, 2027
  3. 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. 
    more » « less
    Free, publicly-accessible full text available March 1, 2027
  4. We search for excited charmed baryons in the Λc+η system using a data sample corresponding to an integrated luminosity of 980fb1 . The data were collected by the Belle detector at the KEKB e+e asymmetric-energy collider. No significant signals are found in the Λc+η mass spectrum, including the known Λc(2880)+ and Λc(2940)+ . Clear Λc(2880)+ and Λc(2940)+ signals are observed in the pD0 mass spectrum. We set upper limits at 90% credibility level on ratios of branching fractions of Λc(2880)+ and Λc(2940)+ decaying to Λc+η relative to Σc(2455)π of <0.13 for the Λc(2880)+ and <1.11 for the Λc(2940)+ . We measure ratios of branching fractions of Λc(2880)+ and Λc(2940)+ decaying to pD0 relative to Σc(2455)π of 0.75±0.03(stat)±0.07(syst) for the Λc(2880)+ and 3.59±0.21(stat)±0.56(syst) for the Λc(2940)+ . Published by the American Physical Society2024 
    more » « less
  5. We present a determination of the Cabibbo-Kobayashi-Maskawa matrix element | Vcb | from the decay BDν using a 365fb1 e+eϒ(4S)BB¯ data sample recorded by the Belle II experiment at the SuperKEKB collider. The semileptonic decay of one B meson is reconstructed in the modes B0D(K+ππ)+ν and B+D¯0(K+π)+ν , where denotes either an electron or a muon. Charge conjugation is implied. The second B meson in the ϒ(4S) event is not reconstructed explicitly. Using an inclusive reconstruction of the unobserved neutrino momentum, we determine the recoil variable w=vB·vD , where vB and vD are the four-velocities of the B and D mesons. We measure the total decay branching fractions to be B(B0D+ ν )=(2.06±0.05(stat)±0.10(sys))% and B(B+D¯0+ν)=(2.31±0.04(stat)±0.09(sys))% . We probe lepton flavor universality by measuring B(BDeνe)/B(BDμνμ)= 1.020±0.020(stat)±0.022(sys) . Fitting the partial decay branching fraction as a function of w and using the average of lattice QCD calculations of the BD form factor, we obtain | Vcb |=(39.2±0.4(stat)±0.6(sys)±0.5(th))×103
    more » « less
    Free, publicly-accessible full text available December 1, 2026
  6. 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. 
    more » « less
    Free, publicly-accessible full text available December 1, 2026
  7. A<sc>bstract</sc> We report measurements of the absolute branching fractions$$\mathcal{B}\left({B}_{s}^{0}\to {D}_{s}^{\pm }X\right)$$,$$\mathcal{B}\left({B}_{s}^{0}\to {D}^{0}/{\overline{D} }^{0}X\right)$$, and$$\mathcal{B}\left({B}_{s}^{0}\to {D}^{\pm }X\right)$$, where the latter is measured for the first time. The results are based on a 121.4 fb−1data sample collected at the Υ(10860) resonance by the Belle detector at the KEKB asymmetric-energye+ecollider. We reconstruct one$${B}_{s}^{0}$$meson in$${e}^{+}{e}^{-}\to \Upsilon\left(10860\right)\to {B}_{s}^{*}{\overline{B} }_{s}^{*}$$events and measure yields of$${D}_{s}^{+}$$,D0, andD+mesons in the rest of the event. We obtain$$\mathcal{B}\left({B}_{s}^{0}\to {D}_{s}^{\pm }X\right)=\left(68.6\pm 7.2\pm 4.0\right)\%$$,$$\mathcal{B}\left({B}_{s}^{0}\to {D}^{0}/{\overline{D} }^{0}X\right)=\left(21.5\pm 6.1\pm 1.8\right)\%$$, and$$\mathcal{B}\left({B}_{s}^{0}\to {D}^{\pm }X\right)=\left(12.6\pm 4.6\pm 1.3\right)\%$$, where the first uncertainty is statistical and the second is systematic. Averaging with previous Belle measurements gives$$\mathcal{B}\left({B}_{s}^{0}\to {D}_{s}^{\pm }X\right)=\left(63.4\pm 4.5\pm 2.2\right)\%$$and$$\mathcal{B}\left({B}_{s}^{0}\to {D}^{0}/{\overline{D} }^{0}X\right)=\left(23.9\pm 4.1\pm 1.8\right)\%$$. For the$${B}_{s}^{0}$$production fraction at the Υ(10860), we find$${f}_{s}=\left({21.4}_{-1.7}^{+1.5}\right)\%$$. 
    more » « less
  8. Abstract A series of data samples was collected with the Belle II detector at the SuperKEKB collider from March 2019 to June 2022. We determine the integrated luminosities of these data samples using three distinct methodologies involving Bhabha (), digamma (), and dimuon () events. The total integrated luminosity obtained with Bhabha, digamma, and dimuon events is (426.88 ± 0.03 ± 2.61) fb−1, (429.28 ± 0.03 ± 2.62) fb−1, and (423.99 ± 0.04 ± 3.83) fb−1, where the first uncertainties are statistical and the second are systematic. The resulting total integrated luminosity obtained from the combination of the three methods is (427.87 ± 2.01) fb−1
    more » « less
  9. We report measurements of time-dependent CP asymmetries in B0KS0π0γ decays based on a data sample of (388±6)×106B B¯ events collected at the ϒ(4S) resonance with the Belle II detector. The Belle II experiment operates at the SuperKEKB asymmetric-energy e+e collider. We measure decay-time distributions to determine CP -violating parameters S and C . We determine these parameters for two ranges of KS0π0 invariant mass: m( KS0 π0) (0.8,1.0)GeV/c2 , which is dominated by B0K*0( KS0 π0)γ decays, and a complementary region m( KS0 π0) (0.6,0.8)(1.0,1.8)GeV/c2 . Our results have improved precision as compared to previous measurements and are consistent with theory predictions. Published by the American Physical Society2025 
    more » « less
  10. A<sc>bstract</sc> We present a study of$$ {\Xi}_c^0\to {\Xi}^0{\pi}^0 $$ Ξc0Ξ0π0 ,$$ {\Xi}_c^0\to {\Xi}^0\eta $$ Ξc0Ξ0η , and$$ {\Xi}_c^0\to {\Xi}^0{\eta}^{\prime } $$ Ξc0Ξ0η decays using the Belle and Belle II data samples, which have integrated luminosities of 980 fb−1and 426 fb−1, respectively. We measure the following relative branching fractions$$ {\displaystyle \begin{array}{c}\mathcal{B}\left({\Xi}_c^0\to {\Xi}^0{\pi}^0\right)/\mathcal{B}\left({\Xi}_c^0\to {\Xi}^{-}{\pi}^{+}\right)=0.48\pm 0.02\left(\textrm{stat}\right)\pm 0.03\left(\textrm{syst}\right),\\ {}\mathcal{B}\left({\Xi}_c^0\to {\Xi}^0\eta \right)/\mathcal{B}\left({\Xi}_c^0\to {\Xi}^{-}{\pi}^{+}\right)=0.11\pm 0.01\left(\textrm{stat}\right)\pm 0.01\left(\textrm{syst}\right),\\ {}\mathcal{B}\left({\Xi}_c^0\to {\Xi}^0{\eta}^{\prime}\right)/\mathcal{B}\left({\Xi}_c^0\to {\Xi}^{-}{\pi}^{+}\right)=0.08\pm 0.02\left(\textrm{stat}\right)\pm 0.01\left(\textrm{syst}\right)\end{array}} $$ B Ξc0Ξ0π0 /B Ξc0Ξπ+ =0.48±0.02stat±0.03syst, B Ξc0Ξ0η /B Ξc0Ξπ+ =0.11±0.01stat±0.01syst, B Ξc0Ξ0η /B Ξc0Ξπ+ =0.08±0.02stat±0.01syst for the first time, where the uncertainties are statistical (stat) and systematic (syst). By multiplying by the branching fraction of the normalization mode,$$ \mathcal{B}\left({\Xi}_c^0\to {\Xi}^{-}{\pi}^{+}\right) $$ B Ξc0Ξπ+ , we obtain the following absolute branching fraction results$$ {\displaystyle \begin{array}{c}\mathcal{B}\left({\Xi}_c^0\to {\Xi}^0{\pi}^0\right)=\left(6.9\pm 0.3\left(\textrm{stat}\right)\pm 0.5\left(\textrm{syst}\right)\pm 1.3\left(\operatorname{norm}\right)\right)\times {10}^{-3},\\ {}\mathcal{B}\left({\Xi}_c^0\to {\Xi}^0\eta \right)=\left(1.6\pm 0.2\left(\textrm{stat}\right)\pm 0.2\left(\textrm{syst}\right)\pm 0.3\left(\operatorname{norm}\right)\right)\times {10}^{-3},\\ {}\mathcal{B}\left({\varXi}_c^0\to {\Xi}^0{\eta}^{\prime}\right)=\left(1.2\pm 0.3\left(\textrm{stat}\right)\pm 0.1\left(\textrm{syst}\right)\pm 0.2\left(\operatorname{norm}\right)\right)\times {10}^{-3},\end{array}} $$ B Ξc0Ξ0π0 = 6.9±0.3stat±0.5syst±1.3norm ×103, B Ξc0Ξ0η = 1.6±0.2stat±0.2syst±0.3norm ×103, B Ξc0Ξ0η = 1.2±0.3stat±0.1syst±0.2norm ×103, where the third uncertainties are from$$ \mathcal{B}\left({\Xi}_c^0\to {\Xi}^{-}{\pi}^{+}\right) $$ B Ξc0Ξπ+ . The asymmetry parameter for$$ {\Xi}_c^0\to {\Xi}^0{\pi}^0 $$ Ξc0Ξ0π0 is measured to be$$ \alpha \left({\Xi}_c^0\to {\Xi}^0{\pi}^0\right)=-0.90\pm 0.15\left(\textrm{stat}\right)\pm 0.23\left(\textrm{syst}\right) $$ α Ξc0Ξ0π0 =0.90±0.15stat±0.23syst
    more » « less