Measurement of main parameters of the \psi(2S) resonance
V.V.Anashin, V.M.Aulchenko, E.M.Baldin, A.K.Barladyan, A.Yu.Barnyakov,, M.Yu.Barnyakov, S.E.Baru, I.Yu.Basok, O.L.Beloborodova, A.E.Blinov,, V.E.Blinov, A.V.Bobrov, V.S.Bobrovnikov, A.V.Bogomyagkov, A.E.Bondar,, A.R.Buzykaev, S.I.Eidelman, D.N.Grigoriev, Yu.M.Glukhovchenko

TL;DR
This paper presents a high-precision measurement of the S resonance parameters, including mass and widths, using e+e- collision data, significantly improving the accuracy over previous results.
Contribution
The study provides the most precise measurements to date of the S resonance parameters, accounting for interference effects and model dependencies in the analysis.
Findings
Mass of S resonance: 3686.114 MeV
Electron partial width: 2.282 keV
Total width: 296 keV
Abstract
A high-precision determination of the main parameters of the \psi(2S) resonance has been performed with the KEDR detector at the VEPP-4M e^{+}e^{-} collider in three scans of the \psi(2S) -- \psi(3770) energy range. Fitting the energy dependence of the multihadron cross section in the vicinity of the \psi(2S) we obtained the mass value M = 3686.114 +- 0.007 +- 0.011 ^{+0.002}_{-0.012} MeV and the product of the electron partial width by the branching fraction into hadrons \Gamma_{ee}*B_{h} = 2.233 +- 0.015 +- 0.037 +- 0.020 keV. The third error quoted is an estimate of the model dependence of the result due to assumptions on the interference effects in the cross section of the single-photon e^{+}e^{-} annihilation to hadrons explicitly considered in this work. Implicitly, the same assumptions were employed to obtain the charmonium leptonic width and the absolute branching…
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