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LArIAT: Liquid Argon In A Testbeam

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arxiv 1406.5560 v3 pith:4T2K2FGX submitted 2014-06-21 physics.ins-det hep-ex

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

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Liquid Argon Time Projection Chambers (LArTPCs) are ideal detectors for precision neutrino physics. These detectors, when located deep underground, can also be used for measurements of proton decay, and astrophysical neutrinos. The technology must be completely developed, up to very large mass scales, and fully mastered to construct and operate these detectors for this physics program. As part of an integrated plan of developing these detectors, accurate measurements in LArTPC of known particle species in the relevant energy ranges are now deemed as necessary. The LArIAT program aims to directly achieve these goals by deploying LArTPC detectors in a dedicated calibration test beam line at Fermilab. The set of measurements envisaged here are significant for both the short-baseline (SBN) and long-baseline (LBN) neutrino oscillation programs in the US, starting with MicroBooNE in the near term and with the adjoint near and far liquid argon detectors in the Booster beam line at Fermilab envisioned in the mid-term, and moving towards deep underground physics such as with the long-baseline neutrino facility (LBNF) in the longer term.

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  1. A New Concept for Kilotonne Scale Liquid Argon Time Projection Chambers

    physics.ins-det 2019-08 conditional novelty 6.0 of 10

    A concept for a kilotonne-scale modular LArTPC using pixel readout, resistive field shells, and optical segmentation, proposed for a DUNE far detector module.

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