DEAP-3600 Dark Matter Search

The DEAP-3600 experiment is located 2 km underground at SNOLAB, in Sudbury, Ontario. It is a single-phase detector that searches for dark matter particle interactions within a 1000-kg fiducial mass target of liquid argon. A first generation prototype detector (DEAP-1) with a 7-kg liquid argon target...

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Veröffentlicht in:arXiv.org 2015-08
Hauptverfasser: Collaboration, DEAP, P -A Amaudruz, Batygov, M, Beltran, B, Bonatt, J, Boulay, M G, Broerman, B, Bueno, J F, Butcher, A, Cai, B, Chen, M, Chouinard, R, Cleveland, B T, Dering, K, DiGioseffo, J, Duncan, F, Flower, T, d, R, Giampa, P, Gorel, P, Graham, K, Grant, D R, Guliyev, E, Hallin, A L, Hamstra, M, Harvey, P, Jillings, C J, Kuźniak, M, Lawson, I, O Li, Liimatainen, P, Majewski, P, McDonald, A B, McElroy, T, McFarlane, K, Monroe, J, Muir, A, Nantais, C, C Ng, Noble, A J, Ouellet, C, Palladino, K, Pasuthip, P, Peeters, S J M, Pollmann, T, Rau, W, Retière, F, Seeburn, N, Singhrao, K, Skensved, P, Smith, B, Sonley, T, Tang, J, Vázquez-Jáuregui, E, Veloce, L, Walding, J, Ward, M
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Sprache:eng
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Zusammenfassung:The DEAP-3600 experiment is located 2 km underground at SNOLAB, in Sudbury, Ontario. It is a single-phase detector that searches for dark matter particle interactions within a 1000-kg fiducial mass target of liquid argon. A first generation prototype detector (DEAP-1) with a 7-kg liquid argon target mass demonstrated a high level of pulse-shape discrimination (PSD) for reducing \(\beta\)/\(\gamma\) backgrounds and helped to develop low radioactivity techniques to mitigate surface-related \(\alpha\) backgrounds. Construction of the DEAP-3600 detector is nearly complete and commissioning is starting in 2014. The target sensitivity to spin-independent scattering of Weakly Interacting Massive Particles (WIMPs) on nucleons of 10\(^{-46}\) cm\(^2\) will allow one order of magnitude improvement in sensitivity over current searches at 100 GeV WIMP mass. This paper presents an overview and status of the DEAP-3600 project and discusses plans for a future multi-tonne experiment, DEAP-50T.
ISSN:2331-8422
DOI:10.48550/arxiv.1410.7673