arXiv · 1903.01883
Theoretical description of the $\boldsymbol{J/\psi \to \eta (\eta') h_1(1380)}$, $\boldsymbol{J/\psi \to \eta (\eta') h_1(1170)}$ and $\boldsymbol{J/\psi \to \pi^0 b_1(1235)^0}$ reactions
Abstract
We have made a study of the $J/\psi \to \eta' h_1, \eta h_1$ (with $h_1$ being $h_1(1170)$ and $h_1(1380)$) and $J/\psi \to \pi^0 b_1(1235)^0$ assuming the axial vector mesons to be dynamically generated from the pseudoscalar-vector meson interaction. We have taken the needed input from previous studies of the $J/\psi \to \phi \pi \pi, \omega \pi \pi$ reactions. We obtain fair agreement with experimental data and provide an explanation on why the recent experiment on $J/\psi \to \eta' h_1(1380), h_1(1380) \to K^{*+} K^- +c.c.$ observed in the $K^+ K^- \pi^0$ mode observes the peak of the $h_1(1380)$ at a higher energy than its nominal mass.
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Wei-Hong Liang, S. Sakai, E. Oset. 2019-03-05. Theoretical description of the $\boldsymbol{J/\psi \to \eta (\eta') h_1(1380)}$, $\boldsymbol{J/\psi \to \eta (\eta') h_1(1170)}$ and $\boldsymbol{J/\psi \to \pi^0 b_1(1235)^0}$ reactions. https://doi.org/10.1103/physrevd.99.094020
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