Measurement of higher-order multipole amplitudes in $\psi(3686)\rightarrow\gamma\chi_{c1,2}$ with $\chi_{c1,2}\to\gamma J/\psi$ and search for the transition $\eta_{c}(2S)\to\gamma J/\psi$
M. Ablikim, M. N. Achasov, X. C. Ai, O. Albayrak, M. Albrecht, D. J., Ambrose, A. Amoroso, F. F. An, Q. An, J. Z. Bai, R. Baldini Ferroli, Y. Ban,, D. W. Bennett, J. V. Bennett, M. Bertani, D. BettoniA, J. M. Bian, F., Bianchi, E. Boger, I. Boyko, R. A. Briere, H. Cai, X. Cai

TL;DR
This study measures higher-order multipole amplitudes in $\psi(3686)$ decays and searches for the $\eta_c(2S) o\gamma J/\psi$ transition, providing experimental data consistent with theoretical predictions and setting upper limits on unobserved processes.
Contribution
It provides the first measurement of multipole amplitudes beyond electric-dipole in $\psi(3686)$ decays and searches for the $\eta_c(2S)$ transition, with results aligning with theoretical models.
Findings
Magnetic-quadrupole amplitudes differ significantly from zero.
Ratios of M2 contributions agree with theoretical expectations.
No significant signal for $\eta_c(2S)$ transition observed.
Abstract
Using 106~million events collected with the BESIII detector, we measure multipole amplitudes for the decay beyond the dominant electric-dipole amplitudes. The normalized magnetic-quadrupole amplitude for and the normalized electric-octupole amplitudes for ,~ are determined. The M2 amplitudes for and are found to differ significantly from zero and are consistent with theoretical predictions. We also obtain the ratios of M2 contributions of and decays to , and , which agree well with…
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