Constraining the NuMI neutrino flux using inverse muon decay reactions in MINERvA

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Abstract

Inverse muon decay, νμe-→μ-νe, is a reaction whose cross section can be predicted with very small uncertainties. It has a neutrino energy threshold of ≈11 GeV and can be used to constrain the high-energy part of the flux in the NuMI neutrino beam. This reaction is the dominant source of events which only contain high-energy muons nearly parallel to the direction of the neutrino beam. We have isolated a sample of hundreds of such events in neutrino and antineutrino enhanced beams, and have constrained the predicted high-energy flux.

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Ruterbories, D., Ahmad Dar, Z., Akbar, F., Ascencio, M. V., Bashyal, A., Bercellie, A., … Zazueta, L. (2021). Constraining the NuMI neutrino flux using inverse muon decay reactions in MINERvA. Physical Review D, 104(9). https://doi.org/10.1103/PhysRevD.104.092010

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