Curvature sensing using a hybrid polycarbonate-silica multicore fiber

We report on the development of a novel hybrid glass-polymer multicore fiber integrating three 80 µm polyimide-coated silica fibers inside a 750 µm polycarbonate cladding. By inscribing an array of distributed FBGs along each segment of silica fiber prior to the hybrid fiber drawing, we demonstrate...

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Veröffentlicht in:Optics express 2020-12, Vol.28 (26), p.39387-39399
Hauptverfasser: Boilard, Tommy, Bilodeau, Guillaume, Morency, Steeve, Messaddeq, Younès, Fortier, Richard, Trépanier, François, Bernier, Martin
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Sprache:eng
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Zusammenfassung:We report on the development of a novel hybrid glass-polymer multicore fiber integrating three 80 µm polyimide-coated silica fibers inside a 750 µm polycarbonate cladding. By inscribing an array of distributed FBGs along each segment of silica fiber prior to the hybrid fiber drawing, we demonstrate a curvature sensor with an unprecedented precision of 296 pm/m around 1550 nm, about 7 times more sensitive than sensors based on standard 125 µm multicore fibers. As predicted by theory, we show experimentally that the measured curvature is insensitive to temperature and strain. Also, a more precise equation to describe the curvature on a simple bending setup is presented. This new hybrid multicore fiber technology has the potential to be extended over several kilometers and can find high-end applications in 3D shape sensing and structural health monitoring.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.411363