Study of $\psi(3686)\to\pi^0 h_c, h_c\to\gamma\eta_c$ via $\eta_c$ exclusive decays
The BESIII Collaboration: M. Ablikim, M. N. Achasov, O. Albayrak, D., J. Ambrose, F. F. An, Q. An, J. Z. Bai, Y. Ban, J. Becker, J. V. Bennett, M., Bertani, J. M. Bian, E. Boger, O. Bondarenko, I. Boyko, R. A. Briere, V., Bytev, X. Cai, O. Cakir, A. Calcaterra, G. F. Cao

TL;DR
This study precisely measures the properties of the $h_c$ and $ a_c$ charmonium states using $ o o$ decay channels, providing new decay mode data and improved mass and width measurements.
Contribution
It presents the first precise measurements of $h_c$ and $ a_c$ masses and widths, and reports five previously unmeasured $ a_c$ decay modes.
Findings
Mass of $h_c$ measured as 3525.31 MeV/$c^2$
Width of $h_c$ determined to be 0.70 MeV
Mass of $ a_c$ measured as 2984.49 MeV/$c^2$
Abstract
The process has been studied with a data sample of million events collected with the BESIII detector at the BEPCII storage ring. The mass and width of the -wave charmonium spin-singlet state are determined by simultaneously fitting distributions of the recoil mass for 16 exclusive decay modes. The results, \,MeV/ and \,MeV, are consistent with and more precise than previous measurements. We also determine the branching ratios for the 16 exclusive decay modes, five of which have not been measured previously. New measurements of the line-shape parameters in the transition are made by selecting candidates in the signal sample and…
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