The EXO-200 detector, part II: Auxiliary Systems
Publication
, Journal Article
Ackerman, N; Albert, J; Auger, M; Auty, DJ; Badhrees, I; Barbeau, PS; Bartoszek, L; Baussan, E; Belov, V; Benitez-Medina, C; Bhatta, T; Jr, WF ...
July 13, 2021
The EXO-200 experiment searched for neutrinoless double-beta decay of $^{136}$Xe with a single-phase liquid xenon detector. It used an active mass of 110 kg of 80.6%-enriched liquid xenon in an ultra-low background time projection chamber with ionization and scintillation detection and readout. This paper describes the design and performance of the various support systems necessary for detector operation, including cryogenics, xenon handling, and controls. Novel features of the system were driven by the need to protect the thin-walled detector chamber containing the liquid xenon, to achieve high chemical purity of the Xe, and to maintain thermal uniformity across the detector.
Duke Scholars
Publication Date
July 13, 2021
Citation
APA
Chicago
ICMJE
MLA
NLM
Ackerman, N., Albert, J., Auger, M., Auty, D. J., Badhrees, I., Barbeau, P. S., … Ziegler, T. (2021). The EXO-200 detector, part II: Auxiliary Systems.
Ackerman, N., J. Albert, M. Auger, D. J. Auty, I. Badhrees, P. S. Barbeau, L. Bartoszek, et al. “The EXO-200 detector, part II: Auxiliary Systems,” July 13, 2021.
Ackerman N, Albert J, Auger M, Auty DJ, Badhrees I, Barbeau PS, et al. The EXO-200 detector, part II: Auxiliary Systems. 2021 Jul 13;
Ackerman, N., et al. The EXO-200 detector, part II: Auxiliary Systems. July 2021.
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Publication Date
July 13, 2021