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Direct comparison of PEN and TPB wavelength shifters in a liquid argon detector

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arxiv 2106.15506 v3 pith:W4AA27NS submitted 2021-06-29 physics.ins-det astro-ph.IM

classification physics.ins-detastro-ph.IM
keywords argonwavelengthliquidyielddetectorslargelightshifter
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A large number of particle detectors employ liquid argon as their target material owing to its high scintillation yield and its ability to drift ionization charge over large distances. Scintillation light from argon is peaked at 128 nm and a wavelength shifter is required for its efficient detection. In this work, we directly compare the light yield achieved in two identical liquid argon chambers, one of which is equipped with PolyEthylene Naphthalate (PEN) and the other with TetraPhenyl Butadiene (TPB) wavelength shifter. Both chambers are lined with enhanced specular reflectors and instrumented with SiPMs with a coverage fraction of approximately 1%, which represents a geometry comparable to the future large scale detectors. We measured the light yield of the PEN chamber to be 39.4$\pm$0.4(stat)$\pm$1.9(syst)% of the yield of the TPB chamber. Using a Monte Carlo simulation this result is used to extract the wavelength shifting efficiency of PEN relative to TPB equal to 47.2$\pm$5.7%. This result paves the way for the use of easily available PEN foils as a wavelength shifter, which can substantially simplify the construction of future liquid argon detectors.

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  1. Quality control of PEN wavelength shifters for DarkSide-20k veto

    physics.ins-det 2025-02 conditional novelty 3.0 of 10

    ArGSet, a cryogenic argon-gas test rig, resolves single photoelectrons and detects about 321 photoelectrons from a PEN sample excited by 128 nm argon scintillation light, supporting its use for PEN quality control.

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