DocumentCode :
108137
Title :
Sensitivity Characteristics of Fabry-Perot Pressure Sensors Based on Hollow-Core Microstructured Fibers
Author :
Long Jin ; Bai-Ou Guan ; Huifeng Wei
Author_Institution :
Inst. of Photonics Technol., Jinan Univ., Guangzhou, China
Volume :
31
Issue :
15
fYear :
2013
fDate :
Aug.1, 2013
Firstpage :
2526
Lastpage :
2532
Abstract :
In this paper, the sensitivity characteristics of Fabry-Perot (F-P) hydrostatic pressure sensor based on two different hollow-core (HC) microstructured optical fibers are experimentally and theoretically investigated. The sensors are fabricated by simply splicing a length of HC fiber to singlemode fibers. Hydrostatic pressure is measured by monitoring the wavelength shifts of the interferometric fringes as a result of the two reflection beams at the splicing points. The measured pressure sensitivities of F-P sensors fabricated on the simplified HC microstructured fiber and hollow-core photonic bandgap fiber (HC-PBGF) are - 17.3 and - 23.4 pm/MPa, respectively. Theoretical investigation is then carried out based on the analysis of elastic properties for the individual fibers. The calculated result suggests that the pressure sensitivities are dominantly determined by the induced changes in cavity length. In comparison, the contribution of mode-index change is slight. The mechanisms behind the mode-index changes for the two fibers are clarified by analyzing the deformation of the fiber structure under pressure. The holey microstructure is highly deformable compared to the solid fiber, which provide another dimension for the implementation of tunable photonic devices.
Keywords :
fibre optic sensors; microsensors; photonic band gap; pressure sensors; F-P sensor pressure sensitivities; Fabry-Perot pressure sensors sensitivity characteristics; HC fiber length splicing; HC microstructured optical fibers; HC-PBGF; elastic property analysis; hollow-core microstructured optical fibers; hollow-core photonic bandgap fiber; hydrostatic pressure; individual fibers; interferometric fringe wavelength shifts; mode-index change contribution; simplified HC microstructured fiber; tunable photonic devices; Cavity resonators; Indexes; Photonic band gap; Sensitivity; Sensors; Silicon compounds; Strain; Fabry–Perot sensors; fiber optic sensors; photonic bandgap fibers; pressure sensors;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2269136
Filename :
6541955
Link To Document :
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