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Optical characterization of wavelength-shifting and scintillating-wavelength-shifting fibers

2025/09/22 by Woorham Bae, Bae, W., J. P. Cesar +48 · 1 citation
Engineering · #Semiconductor Lasers and Optical Devices #Photonic and Optical Devices #Optical Coherence Tomography Applications

paper · pdf · doi:10.48550/arxiv.2509.20390

Abstract

We report results of optical characterizations of new wavelength-shifting and scintillating-wavelength-shifting fibers EJ-182 and EJ-160 from Eljen Technology and compare them to the wavelength-shifting fiber BCF-91A from Saint-Gobain. The wavelength-dependence of attenuation was derived from spectral measurements confirming that the long attenuation length increases with wavelength, while short attenuation effects become less significant at longer wavelengths. The impact of the environmental refractive index was studied by immersing the EJ-160II fiber in water. Immersing the fiber in water reduced the overall light output and suppressed the short attenuation component, which can be explained by reduced light-collection efficiency due to the smaller refractive-index contrast between the fiber cladding and the surrounding medium.

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