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Detectors and flux instrumentation for future neutrino facilities

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arxiv 0712.4129 v1 pith:IE4OKNVS submitted 2007-12-26 physics.ins-det hep-ex

classification physics.ins-dethep-ex
keywords detectorneutrinobeambaselinefacilitybetachannelcherenkov
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

This report summarises the conclusions from the detector group of the International Scoping Study of a future Neutrino Factory and Super-Beam neutrino facility. The baseline detector options for each possible neutrino beam are defined as follows: 1. A very massive (Megaton) water Cherenkov detector is the baseline option for a sub-GeV Beta Beam and Super Beam facility. 2. There are a number of possibilities for either a Beta Beam or Super Beam (SB) medium energy facility between 1-5 GeV. These include a totally active scintillating detector (TASD), a liquid argon TPC or a water Cherenkov detector. 3. A 100 kton magnetized iron neutrino detector (MIND) is the baseline to detect the wrong sign muon final states (golden channel) at a high energy (20-50 GeV) neutrino factory from muon decay. A 10 kton hybrid neutrino magnetic emulsion cloud chamber detector for wrong sign tau detection (silver channel) is a possible complement to MIND, if one needs to resolve degeneracies that appear in the $\delta$-$\theta_{13}$ parameter space.

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  1. The Neutrino Slice at Muon Colliders

    hep-ph 2024-12 conditional novelty 7.0 of 10

    Beam-induced neutrinos at a muon collider would yield around 10^11 interactions per year in the main detector, enabling precision electroweak and neutrino measurements.

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