Temperature-Dependent Performance of NaI(Tl) Crystal with Dual-Channel SiPM Readout for Low-Mass Dark Matter Searches
W. K. Kim, H. Y. Lee, K. W. Kim, H. S. Lee
Abstract
We report the first temperature-dependent characterization of a NaI(Tl) crystal readout by two silicon photomultipliers (SiPMs) directly coupled to opposite ends of the crystal for rare-event searches. A 6 mm × 6 mm × 13 mm NaI(Tl) crystal was directly coupled to two SiPMs and characterized in a liquid nitrogen-cooled cryostat over a temperature range of 94-293 K. The light yield, energy resolution, and scintillation decay time were measured using γ-ray peak from a 241Am source. After correcting for optical crosstalk contributions, the light yield increased, reaching 17.7 1.1 photoelectrons/keV at 238 K, corresponding to a 34.5% enhancement relative to room temperature (293 K). Furthermore, dual-channel configuration effectively suppresses random thermal noise via coincidence triggers, which together with the observed increase in light yield, provides a critical pathway toward lowering the energy threshold for dark matter and coherent elastic neutrino-nucleus scattering searches.
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