The 20 R5912 PMTs for the SABRE South veto meet performance requirements in bench tests, and prototype pulse-shape discrimination separates gammas from neutrons at the hundreds-of-keV scale.
Characterization of water-based liquid scintillator for Cherenkov and scintillation separation
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abstract
This paper presents measurements of the scintillation light yield and time profile for a number of concentration of water-based liquid scintillator, formulated from linear alkylbenzene (LAB) and 2,5-diphenyloxazole (PPO). We find that the scintillation light yield is linear with the concentration of liquid scintillator in water between 1 and 10% with a slope of 127.9+-17.0 ph/MeV/concentration and an intercept value of 108.3+-51.0 ph/MeV, the latter being illustrative of non-linearities with concentration at values less than 1%. This is larger than expected from a simple extrapolation of the pure liquid scintillator light yield. The measured time profiles are consistently faster than that of pure liquid scintillator, with rise times less than 250ps and prompt decay constants in the range of 2.1-2.85ns. Additionally, the separation between Cherenkov and scintillation light is quantified using cosmic muons in the CHESS experiment for each formulation, demonstrating an improvement in separation at the centimeter scale. Finally, we briefly discuss the prospects for large-scale detectors.
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Photomultiplier Requirements and Pre-Calibration for the SABRE South Liquid Scintillator Veto
The 20 R5912 PMTs for the SABRE South veto meet performance requirements in bench tests, and prototype pulse-shape discrimination separates gammas from neutrons at the hundreds-of-keV scale.