Negative axial strain sensitivity in gold-coated eccentric fiber Bragg gratings

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Abstract

New dual temperature and strain sensor has been designed using eccentric second-order fiber Bragg gratings produced in standard single-mode optical fiber by point-by-point direct writing technique with tight focusing of 800 nm femtosecond laser pulses. With thin gold coating at the grating location, we experimentally show that such gratings exhibit a transmitted amplitude spectrum composed by the Bragg and cladding modes resonances that extend in a wide spectral range exceeding one octave. An overlapping of the first order and second order spectrum is then observed. High-order cladding modes belonging to the first order Bragg resonance coupling are close to the second order Bragg resonance, they show a negative axial strain sensitivity (-0.55 pm/μϵ) compared to the Bragg resonance (1.20 pm/μϵ) and the same temperature sensitivity (10.6 pm/°C). With this well conditioned system, temperature and strain can be determined independently with high sensitivity, in a wavelength range limited to a few nanometers.

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APA

Chah, K., Kinet, D., & Caucheteur, C. (2016). Negative axial strain sensitivity in gold-coated eccentric fiber Bragg gratings. Scientific Reports, 6. https://doi.org/10.1038/srep38042

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