Measurement of the Multi-Neutron Charged Current Differential Cross Section at Low Available Energy on Hydrocarbon
arXiv:2310.17014
Abstract
Neutron production in antineutrino interactions can lead to bias in energy reconstruction in neutrino oscillation experiments, but these interactions have rarely been studied. MINERvA previously studied neutron production at an average antineutrino energy of ~3 GeV in 2016 and found deficiencies in leading models. In this paper, the MINERvA 6 GeV average antineutrino energy data set is shown to have similar disagreements. A measurement of the cross section for an antineutrino to produce two or more neutrons and have low visible energy is presented as an experiment-independent way to explore neutron production modeling. This cross section disagrees with several leading models' predictions. Neutron modeling techniques from nuclear physics are used to quantify neutron detection uncertainties on this result.
25 pages, 11 figures; Added ancillary files with cross section values as .csv Matches preprint accepted by publisher
References in corpus (10)
- PYTHIA 6.4 Physics and Manual
- Inclusive production of charged pions in p+C collisions at 158 GeV/c beam momentum
- Charged-current neutrino-nucleus reactions within the SuSAv2-MEC approach
- The NEUT Neutrino Interaction Simulation
- Improved iterative Bayesian unfolding
- Neutrino-Nucleon Cross-Section Model Tuning in GENIE v3
- Measurement of Charged Pion Production Yields off the NuMI Target
- Elastic hadron-nucleus scattering in neutrino-nucleus reactions and transverse kinematics measurements
- Neutron detection and application with a novel 3D-projection scintillator tracker in the future long-baseline neutrino oscillation experiments
- Measurement of neutron production in atmospheric neutrino interactions at the Sudbury Neutrino Observatory