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  1. Search for the isospin-violating decays χ c J Λ Σ ¯ 0 + c . c . and η c Λ Σ ¯ 0 + c . c .

    Using a sample of ( 2712.4 ± 14.3 ) × 10 6     ψ ( 3686 ) events collected with the BESIII detector, we perform a search for the isospin-violating decays χ c J → Λ Σ ¯   0 + c . c . ( J = 0 , 1 , 2 ) and η c → Λ Σ ¯   0 + c . c . No significant signal for χ c J or η c is observed in the Λ Σ ¯   0 invariant mass distribution. The upper limits on the branching fractions at the 90% confidencemore » level are set to be B ( χ c 0 → Λ Σ ¯   0 + c . c . ) < 1.5 × 10 − 6 , B ( χ c 1 → Λ Σ ¯   0 + c . c . ) < 1.6 × 10 − 6 , B ( χ c 2 → Λ Σ ¯   0 + c . c . ) < 1.7 × 10 − 6 , and B ( η c → Λ Σ ¯   0 + c . c . ) < 6.2 × 10 − 5 for the first time.« less
  2. A Linear Collider Vision for the Future of Particle Physics

    In this paper we review the physics opportunities at linear $e^+e^-$ colliders with a special focus on high centre-of-mass energies and beam polarisation, take a fresh look at the various accelerator technologies available or under development and, for the first time, discuss how a facility first equipped with a technology mature today could be upgraded with technologies of tomorrow to reach much higher energies and/or luminosities. In addition, we will discuss detectors and alternative collider modes, as well as opportunities for beyond-collider experiments and R&D facilities as part of a linear collider facility (LCF). The material of this paper willmore » support all plans for $e^+e^-$ linear colliders and additional opportunities they offer, independently of technology choice or proposed site, as well as R&D for advanced accelerator technologies. This joint perspective on the physics goals, early technologies and upgrade strategies has been developed by the LCVision team based on an initial discussion at LCWS2024 in Tokyo and a follow-up at the LCVision Community Event at CERN in January 2025. It heavily builds on decades of achievements of the global linear collider community, in particular in the context of CLIC and ILC.« less
  3. Partial wave analysis of 𝑒+⁢𝑒 → 𝜋+⁢𝜋⁢𝐽/𝜓 and cross section measurement of 𝑒+⁢𝑒 → 𝜋 ± ⁢𝑍𝑐⁢(3900) from 4.1271 to 4.3583 GeV

    Based on 12.0 fb−1 of 𝑒+⁢𝑒 collision data samples collected by the BESIII detector at center-of-mass energies from 4.1271 to 4.3583 GeV, a partial wave analysis is performed for the process 𝑒+⁢𝑒 → 𝜋+⁢𝜋⁢𝐽/𝜓. The cross sections for the subprocesses 𝑒+⁢𝑒 → 𝜋+⁢𝑍𝑐⁢(3900) + c.c. → 𝜋+⁢𝜋⁢𝐽/𝜓, 𝑓0⁡(980)⁢(→ 𝜋+⁢𝜋)⁢𝐽/𝜓, and (𝜋+⁢𝜋)S−wave⁢𝐽/𝜓 are measured for the first time. The mass and width of the 𝑍𝑐⁢(3900)± are determined to be 3884.6 ± 0.7 ± 3.3 MeV/𝑐2 and 37.2 ± 1.3 ± 6.6 MeV, respectively. The first errors are statistical and the second systematic. The final state (𝜋+⁢𝜋)S−wave⁢𝐽/𝜓 dominates the process 𝑒+⁢𝑒more » 𝜋+⁢𝜋⁢𝐽/𝜓. By analyzing the cross sections of 𝜋±⁢𝑍𝑐⁢(3900) and 𝑓0⁡(980)⁢𝐽/𝜓, 𝑌⁡(4220) has been observed. Its mass and width are determined to be 4225.7 ± 4.1 ± 3.4 MeV/𝑐2 and 57.5 ± 9.4 ± 12.1 MeV, respectively.« less
  4. Measurement of the phase between strong and electromagnetic amplitudes in the decay J/ψ → ϕη

    The first direct measurement of the relative phase between the strong and electromagnetic amplitudes for a J/ψ decaying into a vector-pseudoscalar final state is performed using 26 energy points of e+e annihilation data between 3.00 GeV and 3.12 GeV. The data sets were collected by the BESIII detector with a total integrated luminosity of 452 pb−1. By investigating the interference pattern in the cross section lineshape of e+e → ϕη, the relative phase between the strong and electromagnetic amplitudes of J/ψ decay is determined to be within [133°, 228°] at 68% confidence level.
  5. Amplitude analysis of ψ3686→γKS0KS0

    Using (2712 ± 14) × 106ψ(3686) events collected with the BESIII detector, we perform the first amplitude analysis of the radiative decay ψ3686→γKS0KS0$$$$ \psi (3686)\to \gamma {K}_S^0{K}_S^0 $$$$ within the mass region MKS0KS0<2.8$$$$ {M}_{K_S^0{K}_S^0}<2.8 $$$$ GeV/c2. Employing a one-channel K-matrix approach for the description of the dynamics of the KS0KS0$$$$ {K}_S^0{K}_S^0 $$$$ system, the data sample is well described with four poles for the f0-wave and three poles for the f2-wave. The determined pole positions are consistent with those of well-established resonance states. The observed f0 and f2 states are found to be in agreement with those produced in radiativemore » J/ψ decays. The production behaviors of f0 and f2 poles in ψ3686→γKS0KS0$$$$ \psi (3686)\to \gamma {K}_S^0{K}_S^0 $$$$ are qualified with their residues and the converted branching fractions. By comparing with J/ψ→γKS0KS0$$$$ J/\psi \to \gamma {K}_S^0{K}_S^0 $$$$ decay, the ratios Bψ3686→γf0,2BJ/ψ→γf0,2$$$$ \frac{\mathcal{B}\left(\psi (3686)\to \gamma {f}_{0,2}\right)}{\mathcal{B}\left(J/\psi \to \gamma {f}_{0,2}\right)} $$$$ are determined, which provides crucial experimental inputs on the internal structure of the f0,2 states, especially their potential mixing with glueball components.« less
  6. Observation of the W -Annihilation Process D s + ω ρ + and Measurement of D s + ϕ ρ + in D s + π + π + π π 0 π 0 Decays

    We present the first amplitude analysis and branching fraction measurement of the decay D s + π + π + π π 0 π 0 , using e + e collision data collected with the BESIII detector at center-of-mass energies between 4.128 and 4.226 GeV corresponding to an integrated luminosity of 7.33 fb 1 , and report the first observation of the pure W -annihilation decay more » D s + ω ρ + with a branching fraction of ( 0.99 ± 0.0 8 stat 0.07 + 0.05 syst ) % . In comparison to the low significance of the D wave in the decay D s + ϕ ρ + , the dominance of the D wave over the S and P waves, with a fraction of ( 51.85 ± 7.2 8 stat 7.90 + 4.83 syst ) % observed in the decay D s + ω ρ + , provides crucial information for the “polarization puzzle,” as well as for the understanding of charm meson decays. The branching fraction of D s + π + π + π π 0 π 0 is measured to be ( 4.41 ± 0.1 5 stat ± 0.1 3 syst ) % . Moreover, the branching fraction of D s + ϕ ρ + is measured to be ( 3.98 ± 0.3 3 stat 0.19 + 0.21 syst ) % , and the R ϕ = B ( ϕ π + π π 0 ) / B ( ϕ K + K ) is determined to be ( 0.222 ± 0.01 9 stat 0.016 + 0.016 syst ), which is consistent with the previous measurement based on charm meson decays, but deviates from the results from e + e annihilation and K N scattering experiments by more than 3 σ . Published by the American Physical Society 2025« less
  7. Observation of an Axial-Vector State in the Study of the Decay ψ ( 3686 ) ϕ η η

    Using ( 2712.4 ± 14.3 ) × 10 6 ψ ( 3686 ) events collected with the BESIII detector at BEPCII, a partial wave analysis of the decay ψ ( 3686 ) ϕ η η is performed with the covariant tensor approach. In addition to the established states h 1 ( 1900 ) and ϕ ( 2170 ) , an axial-vector state with a mass near more » 2.3 GeV / c 2 is observed for the first time. Its mass and width are measured to be 2316 ± 9 stat ± 3 0 syst MeV / c 2 and 89 ± 1 5 stat ± 2 6 syst MeV , respectively. The product branching fractions of B [ ψ ( 3686 ) X ( 2300 ) η ] B [ X ( 2300 ) ϕ η ] and B [ ψ ( 3686 ) X ( 2300 ) η ] B [ X ( 2300 ) ϕ η ] are determined to be ( 4.8 ± 1.3 stat ± 0.7 syst ) × 10 6 and ( 2.2 ± 0.7 stat ± 0.7 syst ) × 10 6 , respectively. The branching fraction B [ ψ ( 3686 ) ϕ η η ] is measured for the first time to be ( 3.14 ± 0.1 7 stat ± 0.2 4 syst ) × 10 5 . The first uncertainties are statistical and the second are systematic. Published by the American Physical Society 2025« less
  8. Measurement of the branching fractions of D + K + K π + π + π , ϕ π + π + π , K S 0 K + π + π π 0 , K S 0 K + η , and K S 0 K + ω decays

    Using 20.3 fb 1 of e + e collision data collected at a center-of-mass energy of 3.773 GeV with the BESIII detector operating at the BEPCII collider, the branching fractions of three hadronic charm meson decays, D + ϕ π + π + π , D + K S 0 K +more » π + π π 0 , and D + K S 0 K + ω , are measured for the first time to be ( 0.54 ± 0.19 ± 0.02 ) × 10 4 , ( 2.51 ± 0.34 ± 0.14 ) × 10 4 , and ( 2.02 ± 0.35 ± 0.10 ) × 10 4 , respectively. Futhermore, the branching fractions of D + K + K π + π + π and D + K S 0 K + η are measured with improved precision, yielding values of ( 0.66 ± 0.11 ± 0.03 ) × 10 4 and ( 2.27 ± 0.22 ± 0.05 ) × 10 4 , respectively. Published by the American Physical Society 2025« less
  9. Observation of the decay ψ ( 3686 ) Σ 0 Σ ¯ 0 ω

    Using a dataset of ( 27.12 ± 0.14 ) × 10 8 ψ ( 3686 ) events collected by the BESIII detector operating at the BEPCII collider, we report the first observation of the decay ψ ( 3686 ) Σ 0 Σ ¯ 0 ω with a statistical significance of 8.9 σ . The measured branching fraction is ( 1.24 ± 0.1 6 stat ± 0.1 1 sys ) × 10more » 5 , where the first uncertainty is statistical and the second is systematic. Additionally, we investigate potential intermediate states in the invariant mass distributions of Σ 0 ω , Σ ¯ 0 ω and Σ 0 Σ ¯ 0 . A hint of a resonance is observed in the invariant mass distribution of M Σ 0 ( Σ ¯ 0 ) ω , located around 2.06 GeV / c 2 , with a significance of 2.5 σ . Published by the American Physical Society 2025« less
  10. Study of the light scalar a 0 ( 980 ) through the decay D 0 a 0 ( 980 ) e + ν e with a 0 ( 980 ) η π

    Using 7.93 fb 1 of e + e collision data collected at a center-of-mass energy of 3.773 GeV with the BESIII detector, we present an analysis of the decay D 0 η π e + ν e . The branching fraction of the decay D more » 0 a 0 ( 980 ) e + ν e with a 0 ( 980 ) η π is measured to be ( 0.86 ± 0.1 7 stat ± 0.0 5 syst ) × 10 4 . The decay dynamics of this process is studied with a single-pole parametrization of the hadronic form factor and the Flatté formula describing the a 0 ( 980 ) line shape in the differential decay rate. The product of the form factor f + a 0 ( 0 ) and the Cabibbo-Kobayashi-Maskawa matrix element | V c d | is determined for the first time with the result f + a 0 ( 0 ) | V c d | = 0.126 ± 0.01 3 stat ± 0.00 3 syst . Published by the American Physical Society 2025« less
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