paper

Characterization of immersed SiPM arrays in liquid scintillator between room temperature and

arXiv:2609.25534

Abstract

Liquid scintillator detectors instrumented with distributed silicon photomultiplier (SiPM) arrays can be used in compact, topology-sensitive, and low-background experiments, but the temperature dependence of SiPMs immersed directly in the scintillation medium has not been widely characterized. We report the operation of a 125-liter linear-alkylbenzene-based liquid scintillator detector read out by 125 SiPM channels immersed in the active volume, over the range from room temperature to . The detector response was measured with cosmic-ray muons, including stopping muons followed by their Michel-electron decay. Cooling from to reduced the SiPM dark-count rate by a factor of 13.5, increased the single-photoelectron response by 49.1%, and increased the cosmic-ray muon light yield by 16.7%. The improved photoelectron separation and baseline stability at low temperature enabled a selection of stopping-muon events, from which the effective muon lifetime was measured to be , consistent with the value expected for a hydrocarbon scintillator once capture on carbon is taken into account.

8 pages, 12 figures. Added a reference to the companion reconstruction paper in the Introduction; results unchanged