Search for an anomalous excess of charged-current νe interactions without pions in the final state with the microboone experiment

HIGHLIGHTS

SUMMARY

    This article presents a measurement of the rate of charged-current (CC) electron neutrino interactions without pions in the final state and investigates the possibility of low-energy νe PHYS. Flux uncertainties have a 5%-10% impact on the event rate after selection and, for neutrinos with energy below 0.8 GeV, are dominated by hadron production uncertainties. B. Neutrino interaction model This section describes the tools used in this analysis to model the neutrino flux, neutrino interactions on argon, and the detector response, as well as the low-energy excess signal. MicroBooNE relies . . .

     

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