Multidifferential cross section measurements of νμ-argon quasielasticlike reactions with the MicroBooNE detector
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American Physical Society
Date
2023-09-06Referencia bibliográfica
P. Abratenko et al. (MicroBooNE Collaboration). Multidifferential cross section measurements of νμ-argon quasielasticlike reactions with the MicroBooNE detector. Phys. Rev. D 108, 053002. [https://doi.org/10.1103/PhysRevD.108.053002]
Patrocinador
European Union’s Horizon 2020 Marie Sklodowska-Curie Actions; Fermi Research Alliance, LLC DE-AC02-07CH11359; Fundamental Interactions; High Energy Physics and Nuclear Physics; United Kingdom Research and Innovation; National Science Foundation NSF; U.S. Department of Energy DE-AC02-06CH11357 USDOE; Office of Science SC; Argonne National Laboratory ANL; Laboratory Directed Research and Development LDRD; UK Research and Innovation UKRI; Allen Institute for Artificial Intelligence AI2; Science and Technology Facilities Council STFC; Royal Society; Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung SNFRésumé
We report on a flux-integrated multidifferential measurement of charged-current muon neutrino scattering on argon with one muon and one proton in the final state using the Booster Neutrino Beam and MicroBooNE detector at Fermi National Accelerator Laboratory. The data are studied as a function of various kinematic imbalance variables and of a neutrino energy estimator, and are compared to a number of event generator predictions. We find that the measured cross sections in different phase-space regions are sensitive to nuclear effects. Our results provide precision data to test and improve the neutrino-nucleus interaction models needed to perform high-accuracy oscillation analyses. Specific regions of phase space are identified where further model refinements are most needed.