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. 2021 Oct:176:109812.
doi: 10.1016/j.apradiso.2021.109812. Epub 2021 Jun 21.

Radioluminescence of cylindrical and flat Ge-doped silica optical fibers for real-time dosimetry applications

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Radioluminescence of cylindrical and flat Ge-doped silica optical fibers for real-time dosimetry applications

Adebiyi Oresegun et al. Appl Radiat Isot. 2021 Oct.

Abstract

Investigation has been made of the radioluminescence dose response of Ge-doped silica flat and cylindrical fibers subjected to 6 and 10 MV photon beams. The fibers have been custom fabricated, obtaining Ge dopant concentrations of 6 and 10 mol%, subsequently cut into 20 mm lengths. Each sample has been exposed under a set of similar conditions, with use made of a fixed field size and source to surface distance (SSD). Investigation of dosimetric performance has involved radioluminescence linearity, dose-rate dependence, energy dependence, and reproducibility. Mass for mass, the 6 mol% Ge-doped samples provided the greater radioluminescence yield, with both flat and cylindrical fibers responding linearly to the absorbed dose. Further found has been that the cylindrical fibers provided a yield some 38% greater than that of the flat fibers. At 6 MV, the cylindrical fibers were also found to exhibit repeatability variation of <1%, superior to that of the flat fibers, offering strong potential for use in real-time dosimetry applications.

Keywords: Germanium; Optical fiber scintillator; Radioluminescence; Radiotherapy; Real-time dosimetry.

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