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A New Generation of Neutrino Cross Section Experiments: Challenges and Opportunities

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arxiv 2108.12212 v1 pith:VY74CAEX submitted 2021-08-27 hep-ex hep-phphysics.acc-ph

classification hep-exhep-phphysics.acc-ph
keywords experimentsgenerationneutrinocrossphysicschallengesexperimentalknowledge
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Our knowledge of neutrino cross sections at the GeV scale, instrumental to test CP symmetry violation in the leptonic sector, has grown substantially in the last two decades. Still, their precision and understanding are far from the standard needed in contemporary neutrino physics. Nowadays, the knowledge of the neutrino cross-section at $O(10\%)$ causes the main systematic uncertainty in oscillation experiments and jeopardizes their physics reach. In this paper, we envision the opportunities for a new generation of cross section experiments to be run in parallel with DUNE and HyperKamiokande. We identify the most prominent physics goals by looking at the theory and experimental limitations of the previous generation of experiments. We highlight the priorities in the theoretical understanding of GeV cross-sections and the experimental challenges of this new generation of facilities.

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  1. The ENUBET monitored neutrino beam and its implementation at CERN

    hep-ex 2025-01 conditional novelty 4.0 of 10

    ENUBET's instrumented decay tunnel can monitor the neutrino flux at the 1% level, enabling precision neutrino cross-section measurements with a beamline that needs no magnetic horn.

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