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Dual-phase xenon time projection chambers for rare-event searches

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arxiv 2311.05320 v2 pith:CD7MHUYN submitted 2023-11-09 physics.ins-det astro-ph.IMhep-exnucl-ex

classification physics.ins-detastro-ph.IMhep-exnucl-ex
keywords dual-phaseexperimentssearchesdarkmatterneutrinossometogether
verification ladder T0 review T1 audit T2 compute T3 formal
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In the past decade, dual-phase xenon time projection chambers (Xe-TPCs) have emerged as some of the most powerful detectors in the fields of astroparticle physics and rare-event searches. Developed primarily towards the direct detection of dark matter particles, experiments presently operating deep underground have reached target masses at the multi-tonne scale, energy thresholds around 1 keV and radioactivity-induced background rates similar to those from solar neutrinos. These unique properties, together with demonstrated stable operation over several years, allow for the exploration of new territory via high-sensitivity searches for a plethora of ultra-rare interactions. These include searches for particle dark matter, for second order weak decays, and the observation of astrophysical neutrinos. We first review some properties of xenon as a radiation detection medium and the operation principles of dual-phase Xe-TPCs together with their energy calibration and resolution. We then discuss the status of currently running experiments and of proposed next-generation projects, describing some of the technological challenges. We end by looking at their sensitivity to dark matter candidates, to second order weak decays and to solar and supernova neutrinos. Experiments based on dual-phase Xe-TPCs are difficult, and, like all good experiments, they are constantly pushed to their limits. Together with many other endeavours in astroparticle physics and cosmology they will continue to push at the borders of the unknown, hopefully to reveal profound new knowledge about our cosmos.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Commissioning of the 2.6 m tall two-phase xenon time projection chamber of Xenoscope

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

    Xenoscope's 2.6 m tall xenon TPC was commissioned and detected correlated light and charge signals from cosmic muons near the top of the detector.

  2. Radon Removal in XENONnT down to the Solar Neutrino Level

    physics.ins-det 2025-02 conditional novelty 5.0 of 10

    XENONnT reduced radon-222 in its liquid xenon target to 0.90 ± 0.07 micro-becquerel per kilogram, the lowest level reported for an operational dual-phase dark matter detector, matching the solar neutrino background.

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