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- W3149181900 abstract "A study of developing harsh environment multi-parameter fiber Bragg grating sensors using femtosecond IR laser irradiation was conducted. The overall technical objective is to develop an intelligent multi-parameter optical fiber sensor system for realtime temperature, pressure, vibration or chemical concentration monitoring in high temperature (above 1000 ° C) harsh environments. Femtosecond laser pulses have opened up a new phase in the exploration and applications of optical breakdown, revealing new physical processes and scenarios behind the laser damage of materials on the femtosecond timescale. The fiber gratings inscribed by femtosecond laser illumination have annealing characteristics similar to type II fiber gratings and demonstrate stable operation at much higher temperature than conventional UV laser induced gratings on photosensitive fibers. In this dissertation, six types of fiber Bragg grating sensors were fabricated via femtosecond laser inscription and their applications were investigated – single mode silica fiber Bragg grating sensor (SMFBG), multi-mode silica fiber Bragg grating sensor (MMFBG), ultra thin multi-mode silica fiber Bragg grating sensor (ThMMFBG), polarization maintaining single mode silica fiber Bragg grating sensor (PMFBG), ultra thin polarization maintaining silica fiber Bragg grating sensor (ThPMFBG) and multimode sapphire single-crystal fiber Bragg grating sensor (SaFBG). The SMFBG sensor shows good distributed sensing capability and excellent long term thermal stability in high temperature environment (up to 1000 ° C). The novel multiparameter (temperature, strain, vector bending) sensor based on asymmetric Bragg" @default.
- W3149181900 created "2021-04-13" @default.
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- W3149181900 date "2007-01-01" @default.
- W3149181900 modified "2023-09-23" @default.
- W3149181900 title "FEMTOSECOND LASER INSCRIBED FIBER BRAGG GRATING SENSORS" @default.
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