particle physics

Observation of light production by charged particles in WLS fibers

arXiv:2604.14060

summary

The authors demonstrate that charged particles generate measurable scintillation light directly inside wavelength‑shifting (WLS) fibers, achieving a light yield of about 23 % of a standard scintillating fiber (≈1200 photons/MeV), and they also observe Cherenkov light in clear fibers, indicating that this effect should be included in detector simulations.

Abstract

Wavelength shifting (WLS) fibers are widely used in particle physics for light collection from scintillators. Light production by charged particles directly in WLS fibers is traditionally ignored. In this study, light produced by charged particles in WLS fibers is clearly observed. The light yield of different batches of Y11(200) 1 mm diameter WLS fibers expressed in the number of detected photo electrons is as large as with respect to the light yield of the Bicron BCF-12 1 mm diameter scintillating fiber. This corresponds to about 1200 photons per MeV light production after taking into account different fiber light trapping efficiencies and emission spectra. In clear fibers of the same diameter, no scintillation light is produced, while Cherenkov light is clearly seen at the 45-degree crossing angle. The observed amount of light produced by charged particles in the WLS fibers is not small and should be taken into account in advanced detector simulations.

Topics & keywords

#wavelength shifting fibers#scintillation#charged particle detection#light yield measurement#chernekov radiationWLS fibersY11(200)photoelectron yieldCherenkov lightdetector simulationscintillating fiber