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The NEUT Neutrino Interaction Simulation
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NEUT is a neutrino-nucleus interaction simulation. It can be used to simulate interactions for neutrinos with between 100 MeV and a few TeV of energy. NEUT is also capable of simulating hadron interactions within a nucleus and is used to model nucleon decay and hadron--nucleus interactions for particle propagation in detector simulations. This article describes the range of interactions modelled and how each is implemented.
Forward citations
Cited by 7 Pith papers
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Signal selection and model-independent extraction of pionless charged-current muon neutrino cross section using double-differential kinematic imbalance observables on carbon and oxygen with the T2K experiment
First joint C/O double-differential νμ CC0πNp cross sections in δpT–δαT and pN–cosθμ show current generators fail to describe the data.
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Flow-Based Surrogates for High-Dimensional Likelihoods in Experimental Neutrino Physics
A hybrid coupling-plus-autoregressive normalizing flow trained on a 110-parameter T2K-like near-detector likelihood reaches 98% relative ESS versus 5% for the post-fit Gaussian and matches MCMC flux predictions.
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Two-particle two-hole excitations in semi-inclusive neutrino-nucleus scattering
First fully microscopic, relativistic calculation of the 2p2h MEC contribution to semi-inclusive neutrino-carbon (νμ, μ−p) cross sections, with T2K flux-folded predictions.
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Revisiting Gauge Ambiguities for DUNE Precision
Gauge-restoration and form-factor-scale ambiguities in the plane-wave impulse approximation produce 2-10% shifts in quasielastic cross sections, exceeding DUNE's few-percent target; an off-shell spinor method is proposed.
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What Cosine Similarity of Label Representations Can and Cannot Tell us
For softmax classifiers, cosine similarity of unembeddings is uninformative about model probabilities because it can be reset to ±1 while leaving all probabilities unchanged.
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Charged current neutrino and antineutrino induced associated particle production from nucleons
A resonance-plus-background model predicts total, Q2, and kaon-momentum cross sections for charged-current neutrino and antineutrino production of Lambda-K pairs from nucleons.
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