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The science and technology of liquid argon detectors

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arxiv 2405.01153 v1 pith:QCAG3ECW submitted 2024-05-02 physics.ins-det astro-ph.IMhep-ex

classification physics.ins-detastro-ph.IMhep-ex
keywords argonliquiddetectorsapplicationsappliedlaboratoriesparticlephysics
verification ladder T0 review T1 audit T2 compute T3 formal
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Liquid argon detectors are ubiquitous in particle, astroparticle, and applied physics. They reached an unprecedented level of maturity thanks to more than 20 years of R&D and the operation of large-scale facilities at CERN, Fermilab, and the Gran Sasso laboratories. This article reviews such an impressive advance - from the grounding of the experimental technique up to cutting-edge applications. We commence the review by describing the physical and chemical properties of liquid argon as an active and target medium for particle detection, together with advantages and limitations compared with other liquefied noble gases. We examine the opportunities and challenges of liquid argon detectors operated as calorimeters, scintillators, and time projection chambers. We then delve into the core applications of liquid argon detectors at colliders (ATLAS), accelerator neutrino beams (SBN, DUNE), and underground laboratories (DarkSide, DEAP, ICARUS) for the observation of rare events. We complete the review by looking at unconventional developments (pixelization, combined light-charge readout, Xe-doped devices, all-optical readout) and applications in medical and applied physics to extend this technology's scope toward novel research fields.

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  1. Demonstration of the light collection stability of a PEN-based wavelength shifting reflector in a tonne scale liquid argon detector

    physics.ins-det 2024-11 conditional novelty 6.0 of 10

    A tonne-scale liquid argon detector instrumented with 4 m^2 of PEN wavelength-shifting reflector shows no light-yield deterioration over 12 days.

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