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Production of dark sector particles via resonant positron annihilation on atomic electrons
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abstract
Resonant positron annihilation on atomic electrons provides a powerful method to search for light new particles coupled to $e^+e^-$. Reliable estimates of production rates require a detailed characterization of electron momentum distributions. We describe a general method that harnesses the target material Compton profile to properly include electron velocity effects in resonant annihilation cross-sections. We additionally find that high $Z$ atoms can efficiently act as particle physics accelerators, providing a density of relativistic electrons that allows to extend by several times the experimental mass reach.
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Cited by 1 Pith paper
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Production of lepton-flavor-violating scalars through resonant positive-muon annihilation on atomic electrons
Relativistic bound-electron momentum distributions broaden the mu+ e- -> phi resonance, and one day of the proposed HIAF-PKMu exposure could exclude g_phi down to ~10^-5 in the 100-200 MeV window.
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