measurements
The numerical inputs are the published MicroBooNE, MINERvA, and T2K releases, the digitized MicroBooNE result, and the ICARUS HEPData values. Scale factors shown in the legend are display choices applied for a common shape comparison; they are not additional measurements. Sources: [1], [2], [3], [4], [5], and [6].
Every distribution is scaled to a common interpolated integral over degrees, so the vertical axis is the differential shape normalized by the partial integral . The interpolation uses the bin-center histograms and is linear within each bin; for ICARUS, the companion histogram supplies the bin centers. The scale factors printed in the first figure cancel in this normalization. The MicroBooNE covariance is an approximation reconstructed from figure-level inputs, not an author-provided covariance. Sources: [1], [2], [3], [4], [5], and [6].
Bibliography
- [1] P. Abratenko and others, Multidifferential cross section measurements of -argon quasielasticlike reactions with the MicroBooNE detector, Phys. Rev. D 108, 53002 (2023).
- [2] P. Abratenko and others, Probing Nuclear Effects with Transverse Kinematic Imbalance in Muon-neutrino Induced Charged-Current Production on Argon with the MicroBooNE Detector, (2026).
- [3] X. G. Lu and others, Measurement of final-state correlations in neutrino muon-proton mesonless production on hydrocarbon at an average neutrino energy of 3 GeV, Phys. Rev. Lett. 121, 22504 (2018).
- [4] D. Coplowe and others, Probing nuclear effects with neutrino-induced charged-current neutral pion production, Phys. Rev. D 102, 72007 (2020).
- [5] K. Abe and others, Characterization of nuclear effects in muon-neutrino scattering on hydrocarbon with a measurement of final-state kinematics and correlations in charged-current pionless interactions at T2K, Phys. Rev. D 98, 32003 (2018).
- [6] F. Abd Alrahman and others, Measurement of muon neutrino charged-current quasielasticlike cross section using off-axis NuMI beam at ICARUS, Phys. Rev. D 114, 52002 (2026).