First study of neutrino angle reconstruction using quasielasticlike interactions in MicroBooNE
Metadatos
Afficher la notice complèteEditorial
American Physical Society
Date
2025-06-27Referencia bibliográfica
MicroBooNE Collaboration. (2025). First study of neutrino angle reconstruction using quasielasticlike interactions in MicroBooNE. Physical Review. D. (2016), 111(11). https://doi.org/10.1103/f8nt-ygng
Résumé
We investigate the expected precision of the reconstructed neutrino direction using a νμ-argon
quasielasticlike event topology with one muon and one proton in the final state and the reconstruction
capabilities of the MicroBooNE liquid argon time projection chamber. This direction is of importance in the
context of DUNE sub-GeV atmospheric oscillation studies. MicroBooNE allows for a data-driven
quantification of this resolution by investigating the deviation of the reconstructed muon-proton system
orientation with respect to the well-known direction of neutrinos originating from the Booster Neutrino
Beam with an exposure of 1.3 × 1021 protons on target. Using simulation studies, we derive the expected
sub-GeV DUNE atmospheric-neutrino reconstructed simulated spectrum by developing a reweighting
scheme as a function of the true neutrino energy. We further report flux-integrated single- and doubledifferential cross section measurements of charged-current νμ quasielasticlike scattering on argon as a
function of the muon-proton system angle using the full MicroBooNE data sets. We also demonstrate the
sensitivity of these results to nuclear effects and final state hadronic reinteraction modeling.





