Precise Measurement of Matter-Antimatter Asymmetry with Entangled Hyperon Antihyperon Pairs
arXiv:2602.20524 · doi:10.1103/c1fz-9r8q
Abstract
A search for $CP$ violation with an entangled system of $Î^-\barÎ^+$ pairs is performed, using $(10,087\pm44)\times10^{6}$ $J/Ï$ events collected with the BESIII experiment. A nine-dimensional helicity amplitude is used to fit $e^+e^- \to J/Ï\toÎ^-\barÎ^+$ and its subsequent decays. The $Î^-$ and $Î^+$ decay parameters are determined with higher precision compared to the best results reported so far. Furthermore, the strong phase difference, $(δ_P-δ_S)=(0.3\pm1.2\pm0.2)\times10^{-2}~\text{rad}$, and the weak phase difference, $(ξ_P-ξ_S)=(-0.2\pm1.2\pm0.1)\times10^{-2}~\text{rad}$, are directly determined. These are the most precise measurements to date. The $CP$ asymmetry observables $A_{CP}^Î=(-7.8\pm4.8\pm0.8)\times10^{-3}$ and $ÎÏ_{CP}^Î=(0.6\pm5.1\pm0.2)\times10^{-3}~\text{rad}$ are determined, which are consistent with $CP$ conservation. In addition, independent measurements of the $Î$ decay parameter and $CP$ asymmetry $A^Î_{CP}=(-2.9\pm4.3\pm0.7)\times10^{-3}$ are also obtained, which are in agreement with the previous measurements, but with much improved precision.
10 pages, 3 figures, consistent with the publication in Phys. Rev. Lett. 136, 201802 (2026)