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Precise Measurement of Neutrino and Anti-neutrino Differential Cross Sections
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The NuTeV experiment at Fermilab has obtained a unique high statistics sample of neutrino and anti-neutrino interactions using its high-energy sign-selected beam. We present a measurement of the differential cross section for charged-current neutrino and anti-neutrino scattering from iron. Structure functions, F_2(x,Q^2) and xF_3(x,Q^2), are determined by fitting the inelasticity, y, dependence of the cross sections. This measurement has significantly improved systematic precision as a consequence of more precise understanding of hadron and muon energy scales.
Forward citations
Cited by 14 Pith papers
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First Measurement of the Muon Neutrino Interaction Cross Section and Flux as a Function of Energy at the LHC with FASER
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Non-Standard Neutrino Interactions at a Muon Collider Neutrino Detector
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A public extension of MadGraph5_aMC@NLO now computes automated NLO QCD cross sections for asymmetric hadron-hadron collisions, validated against MCFM and JAM.
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Next-to-leading order evolution of structure functions without PDFs
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Is the Momentum Sum Rule Valid for Nuclear Structure Functions ?
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A proposed LHC gas target would give CMS/ATLAS O(10^4) muon-neutrino and O(10^3) electron-neutrino interactions, opening forward hadron-production physics to neutrino detection.
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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...
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Fundamental physics with high-energy cosmic neutrinos today and in the future
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