We present thermally regenerated fiber Bragg gratings in air-hole microstructured fibers for high-temperature, hydrostatic pressure measurements. High-temperature stable gratings were regenerated during an 800 °C annealing process from hydrogen-loaded Type I seed gratings. The wavelength shifts and separation of grating peaks were studied as functions of external hydrostatic pressure from 15 to 2400 psi, and temperature from 24 °C to 800 °C. This Letter demonstrates a multiplexible pressure and temperature sensor technology for high-temperature environments using a single optical fiber feedthrough. © 2011 Optical Society of America
The use of thermally regenerated gratings for monitoring harsh environments is becoming increasingly...
Both temperature and strain characterization of seed and regenerated gratings with and without post ...
© 2015 by the authors; licensee MDPI, Basel, Switzerland. The regeneration of UV-written long period...
We present thermally regenerated fiber Bragg gratings in air-hole microstructured fibers for high-te...
We present thermally regenerated fiber Bragg gratings in air-hole microstructured fibers for high-te...
We present fiber Bragg grating pressure sensors in air-hole microstructured fibers for high-temperat...
We present fiber Bragg grating pressure sensors in air-hole microstructured fibers for high-temperat...
© 2015 Copyright SPIE. The successful regeneration of fibre Bragg gratings (FBGs) inscribed in an in...
We present spatially resolved Rayleigh scattering measurements in different polarization-maintaining...
We report about the possibility of using regenerated fiber Bragg gratings generated in photosensitiv...
A regenerated optical fibre Bragg grating that survives temperature cycling up to 1,295 degrees C is...
© 2020 IEEE. Personal use of this material is permitted. Permissíon from IEEE must be obtained for a...
© 2015 SPIE. A highly integrated fibre-optic sensor with regenerated fibre Bragg grating (RFBG) and ...
We present a comparison of four different grating-based optical fiber high temperature sensors. Thre...
Strong regenerated gratings with a maximum grating strength exceeding (40-50) dB are fabricated insi...
The use of thermally regenerated gratings for monitoring harsh environments is becoming increasingly...
Both temperature and strain characterization of seed and regenerated gratings with and without post ...
© 2015 by the authors; licensee MDPI, Basel, Switzerland. The regeneration of UV-written long period...
We present thermally regenerated fiber Bragg gratings in air-hole microstructured fibers for high-te...
We present thermally regenerated fiber Bragg gratings in air-hole microstructured fibers for high-te...
We present fiber Bragg grating pressure sensors in air-hole microstructured fibers for high-temperat...
We present fiber Bragg grating pressure sensors in air-hole microstructured fibers for high-temperat...
© 2015 Copyright SPIE. The successful regeneration of fibre Bragg gratings (FBGs) inscribed in an in...
We present spatially resolved Rayleigh scattering measurements in different polarization-maintaining...
We report about the possibility of using regenerated fiber Bragg gratings generated in photosensitiv...
A regenerated optical fibre Bragg grating that survives temperature cycling up to 1,295 degrees C is...
© 2020 IEEE. Personal use of this material is permitted. Permissíon from IEEE must be obtained for a...
© 2015 SPIE. A highly integrated fibre-optic sensor with regenerated fibre Bragg grating (RFBG) and ...
We present a comparison of four different grating-based optical fiber high temperature sensors. Thre...
Strong regenerated gratings with a maximum grating strength exceeding (40-50) dB are fabricated insi...
The use of thermally regenerated gratings for monitoring harsh environments is becoming increasingly...
Both temperature and strain characterization of seed and regenerated gratings with and without post ...
© 2015 by the authors; licensee MDPI, Basel, Switzerland. The regeneration of UV-written long period...