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arXiv · 2609.18534

Search for Visible Dark Photon Decays at the Future SHINE Facility with the DarkSHINE Experiment

Abstract

We investigate the sensitivity of the proposed DarkSHINE experiment to displaced dark photon decays, $A'\to e^+e^-$, using an 8 GeV electron beam incident on a tungsten target. The study focuses on masses $2m_e<m_{A'}<2m_μ$ and assumes a unit branching fraction to electron and positron pairs. Signal production is calculated at tree level with CalcHEP, and the generated events are propagated through a detailed Geant4 detector simulation. A dedicated close tracker, the TrackNet algorithm based on a graph neural network, and displaced vertex selections suppress prompt backgrounds from pair production and photon conversion. Extrapolation of the residual background vertex distribution yields an expected background of 0.3 events for three years of operation, corresponding to $9\times10^{14}$ electrons on target. For this exposure, the median expected exclusion region at 90% confidence level spans dark photon masses of approximately 30--70 MeV and kinetic mixing parameters of approximately $5\times10^{-5}$--$2\times10^{-4}$, with mass-dependent coupling boundaries. This study establishes a visible decay search strategy at DarkSHINE that complements searches for invisible dark photon decays.

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Zejia Lu, Huayang Wang, Xiang Chen, Jiahui Wu, Yulei Zhang, Liang Li. 2026-09-16. Search for Visible Dark Photon Decays at the Future SHINE Facility with the DarkSHINE Experiment. https://arxiv.org/abs/2609.18534

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