Experimental study of the reaction $Î^{0}n\rightarrowÎÎX$ using $Î^{0}$-nucleus scattering
arXiv:2512.04701
Abstract
Using $(10087\pm44)\times10^{6}$$J/Ï$ events collected with the BESIII detector operating at the BEPCII storage ring in $2009$, $2012$, $2018$, and $2019$, we perform a search for the reaction $Î^0n\rightarrowÎÎX$, where $X$ denotes any additional final particles. Given the highly suppressed phase space for producing extra pions, the $X$ consists of either nothing or a photon, corresponding to the processes $Î^0 n \rightarrow ÎÎ$ and $Î^{0}n\rightarrowÎΣ^0\rightarrowÎÎγ$. The $Î^0$ comes from the decay of $J/Ï\rightarrowÎ^0\barÎ^0$, while the neutron originates from material of the beam pipe. A signal is observed for the first time with a statistical significance of 6.4$Ï$. The cross section for the reaction $Î^0+{^9\rm{Be}}\rightarrowÎ+Î+X$ is measured to be $(43.6\pm10.5_{\text{stat}}\pm11.1_{\text{syst}})$ mb at $P_{Î^0}\approx0.818$ GeV/$c$, where the first uncertainty is statistical and the second systematic. No significant $H$-dibaryon signal is observed in the $ÎÎ$ final state.
9 pages, 3 figures