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Measurement of the νμ-Hydrogen Charged-Current Quasi-Elastic Cross Section using the NOvA Near Detector

The NOvA Collaboration

hep-exarXiv:2608.12293

Abstract

We report a measurement of the total cross section for muon antineutrino charged-current quasi-elastic scattering on hydrogen, νμ H μ+ n, in the NOvA near detector using a 1.2×1021 proton-on-target exposure in the NuMI beam. A selection based on topological and kinematic constraints yields 35,509 signal events in the hydrogen-rich (10.8\%) detector, providing the highest statistics of (anti)neutrino--hydrogen interactions measured to date. Backgrounds from (anti)neutrino interactions on heavier nuclei are constrained using dedicated data control samples, significantly reducing the related systematic uncertainties. We obtain a value σ( νμ H μ+ n) = 0.538 0.009 ( stat) 0.010 ( syst) 0.055 ( flux) × 10-38 cm2 for the total cross section at an average energy of 1.9 GeV, the most precise total cross-section measurement of this process to date. The combined statistical and non-flux systematic uncertainty is more than four times smaller than the flux uncertainty, allowing a future use of this measurement to constrain the absolute νμ flux.

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