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A liquid scintillation detector for radioassay of gadolinium-loaded liquid scintillator for the LZ Outer Detector.

Authors :
Haselschwardt, S.J.
Shaw, S.
Nelson, H.N.
Witherell, M.S.
Yeh, M.
Lesko, K.T.
Cole, A.
Kyre, S.
White, D.T.
Source :
Nuclear Instruments & Methods in Physics Research Section A. Sep2019, Vol. 937, p148-163. 16p.
Publication Year :
2019

Abstract

We report on the design and performance of the LUX-ZEPLIN (LZ) "Screener", a small liquid scintillator detector consisting of ≈ 23 kg of LAB-based gadolinium-loaded liquid scintillator (GdLS) to be used in the LZ Outer Detector. The Outer Detector will be filled with 17.3 tonnes of GdLS and will surround the central liquid xenon time projection chamber of LZ. Its primary function will be to tag neutron events in the liquid xenon which could mimic a WIMP dark matter signal. To meet the deadtime requirements for the Outer Detector, the radioimpurity levels in the GdLS must be kept below ≲ 0. 07 mBq/kg. This background level corresponds to a rate of ≈ 50 Hz above an energy threshold of 100 keV. The Screener was operated in the ultra-low-background environment of the former LUX water shield in the Davis Laboratory at the Sanford Underground Research Facility for radioassay of the GdLS. Careful selection of detector materials and use of ultra-low-background PMTs allows the measurement of a variety of radioimpurities. The 14 C / 12 C ratio in the scintillator is measured to be (2. 83 ± 0. 06 (stat.) ± 0. 01 (sys.)) × 1 0 − 17. Use of pulse shape discrimination allows the concentration of isotopes throughout the 238 U , 235 U , and 232 Th chains to be measured by fitting the collected spectra from α and β events. We find that equilibrium is broken in the 238 U and 232 Th chains and that a significant portion of the contamination in the GdLS results from decays in the 227 Ac subchain of the 235 U series. Predictions for the singles rate in the Outer Detector are presented. The rate from radioimpurities above 100 keV in the GdLS is estimated to be 97. 9 ± 6. 4 Hz , with 65. 5 ± 1. 9 Hz resulting from α -decays. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01689002
Volume :
937
Database :
Academic Search Index
Journal :
Nuclear Instruments & Methods in Physics Research Section A
Publication Type :
Academic Journal
Accession number :
136934470
Full Text :
https://doi.org/10.1016/j.nima.2019.05.055