A W²-based hadronic-invariant-mass estimator produces the least biased neutrino energy reconstruction for LArTPCs across the shallow-to-deep-inelastic transition region, at the cost of worse resolution under perfect modeling.
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Neutrino interaction model uncertainties from nuclear physics details remain a dominant systematic in oscillation analyses and will require improved modeling plus near-detector constraints to reach the precision goals of next-generation experiments.
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The High W Challenge: Robust Neutrino Energy Estimators for LArTPCs
A W²-based hadronic-invariant-mass estimator produces the least biased neutrino energy reconstruction for LArTPCs across the shallow-to-deep-inelastic transition region, at the cost of worse resolution under perfect modeling.
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CP-violation or Nuclear Excitation: Reviewing the Role of Neutrino Interaction Model Uncertainties on Accelerator-Based Neutrino Oscillation Measurements
Neutrino interaction model uncertainties from nuclear physics details remain a dominant systematic in oscillation analyses and will require improved modeling plus near-detector constraints to reach the precision goals of next-generation experiments.