Observation of a threshold enhancement in the $Ï^+Ï^-$ spectrum in $Ï(3686) \rightarrow Ï^{+}Ï^{-}J/Ï$ decays
arXiv:2509.23761 · doi:10.1103/5h6z-p6nl
Abstract
Based on the $(2712.4\pm14.4)\times 10^{6}$ $Ï(3686)$ events collected with the BESIII detector, we present a high-precision study of the $Ï^+Ï^-$ mass spectrum in $Ï(3686)\rightarrowÏ^{+}Ï^{-}J/Ï$ decays. A clear resonance like structure is observed near the $Ï^+Ï^-$ mass threshold for the first time. A fit with a Breit-Wigner function yields a mass of $285.6\pm 2.5~{\rm MeV}/c^2$ and a width of $16.3\pm 0.9~{\rm MeV}$ with a statistical significance exceeding 10$Ï$. To interpret the data, we incorporate final state interactions (FSI) within two theoretical frameworks: chiral perturbation theory (ChPT) and QCD multipole expansion (QCDME). ChPT describes the spectrum above 0.3 GeV/$c^2$ but fails to reproduce the threshold enhancement. In contrast, the QCDME model assuming the $Ï(3686)$ is an admixture of S and D wave charmonium reproduces the data well. The pronounced dip near 0.3 GeV/$c^2$ offers new insight into the interplay between chiral dynamics and low-energy QCD.