DocumentCode :
22358
Title :
Microfiber-Enabled In-line Fabry–Pérot Interferometer for High-Sensitive Force and Refractive Index Sensing
Author :
Shecheng Gao ; Weigang Zhang ; Zhi-Yong Bai ; Hao Zhang ; Wei Lin ; Li Wang ; Jieliang Li
Author_Institution :
Key Lab. of Opt. Inf. Sci. & Technol., Nankai Univ., Tianjin, China
Volume :
32
Issue :
9
fYear :
2014
fDate :
1-May-14
Firstpage :
1682
Lastpage :
1688
Abstract :
A microfiber-enabled Fabry-Pérot interferometer (FPI) constructed by splicing a section of microfiber between two cleaved standard single-mode fibers (SMFs) with unique relative fiber cross section relationship has been proposed and experimentally demonstrated. The opening air cavity between the two SMF ends connected by the microfiber serves as an FP cavity and also a direct sensing head. The sensing characteristics of the FPIs with different cavity lengths and microfiber diameters have been studied. A force sensitivity as high as 167.41 nm/N (~200 pm/με) and a high refractive index (RI) sensitivity of 1330.8 nm/RIU (around a RI of 1.33) have been achieved by using the microfiber-based FPI with ~21 μm cavity length and ~44 μm microfiber diameter. Such a device has several merits such as simple configuration, compactness and reliability in operation owing to the extremely low thermal cross-sensitivities.
Keywords :
Fabry-Perot interferometers; fibre optic sensors; force sensors; micro-optics; microcavities; microsensors; optical fibre fabrication; refractive index measurement; splicing; SMF; cavity lengths; compactness; high-sensitive force sensing; microfiber-based FPI; microfiber-enabled inline Fabry-Pérot interferometer; opening air cavity; refractive index sensing; reliability; sensor sensitivity; splicing; standard single-mode fibers; thermal cross-sensitivities; unique relative fiber cross section relationship; Cavity resonators; Force; Optical fiber sensors; Sensitivity; Splicing; Fabry–Pérot interferometer (FPI); force sensor; microfiber; optical fiber sensor; refractive index (RI) sensor;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2310205
Filename :
6758382
Link To Document :
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