arXiv · 2110.08103
Fluorescence of pyrene-doped polystyrene films from room temperature down to 4 K for wavelength-shifting applications
Abstract
In liquid argon-based particle detectors, slow wavelength shifters (WLSs) could be used alongside the common, nanosecond scale, WLS tetraphenyl butadiene (TPB) for background mitigation purposes. At room temperature, pyrene has a moderate fluorescence light yield (LY) and a time constant of the order of hundreds of nanoseconds. In this work, four pyrene-doped polystyrene films with various purities and concentrations were characterized in terms of LY and decay time constants in a range of temperature between 4 K and 300 K under ultraviolet excitation. These films were found to have a LY between 35 and 50% of that of evaporated TPB. All light yields increase when cooling down, while the decays slow down. At room temperature, we observed that pyrene purity is strongly correlated with emission lifetime: highest obtainable purity samples were dominated by decays with emission time constants of $\sim$ 250-280 ns, and lower purity samples were dominated by an $\sim$ 80 ns component. One sample was investigated further to better understand the monomer and excimer emissions of pyrene. The excimer-over-monomer intensity ratio decreases when the temperature goes down, with the monomer emission dominating below $\sim$ 87 K.
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H. Benmansour, E. Ellingwood, Q. Hars, P. C. F. Di Stefano, D. Gallacher, M. Kuźniak, V. Pereimak, J. Anstey, M. G. Boulay, B. Cai, S. Garg, A. Kemp, J. Mason, P. Skensved, V. Strickland, M. Stringer. 2021-10-15. Fluorescence of pyrene-doped polystyrene films from room temperature down to 4 K for wavelength-shifting applications. https://doi.org/10.1088/1748-0221/16/12/p12029
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