DocumentCode :
1756389
Title :
Optical Phase Refractometer Based on Post-Processed Interferometric Tip Sensors
Author :
Ferreira, Marta S. ; Bierlich, Jorg ; Unger, Sebastian ; Schuster, Kay ; Santos, Jose Luis ; Frazao, Orlando
Author_Institution :
INESC Porto, Porto, Portugal
Volume :
32
Issue :
17
fYear :
2014
fDate :
Sept.1, 1 2014
Firstpage :
3002
Lastpage :
3007
Abstract :
An interferometric tip sensor based on the post-process of a special design double-cladding optical fiber is proposed. Due to the sensing head design, it is sensitive to environmental variations. In order to analyze this effect, the sensing head is subjected to temperature variations both in liquid and gas (at 1 atm). Comparing the two signals, it is possible to discriminate the contribution of the liquid refractive index variation with temperature. Not only the amplitude of the signal varies with the surrounding medium, but also the phase of the interferometric pattern alters. This is due to the presence of a thin diaphragm at the end face of the fiber structure turning the sensing head in a three wave interferometric device. An indirect measurement of the water refractive index is performed, by subjecting the sensing head to temperature variations in air and water. Even though the sensitivities obtained are lower than the ones reported in the literature, it should be highlighted that there is no core exposition of the fiber to the external medium. The sensor is easy to fabricate, robust, and reproducible.
Keywords :
air; diaphragms; light interferometry; refractive index measurement; refractometers; water; air; double-cladding optical fiber; fiber structure; gas; interferometric pattern; liquid; optical phase refractometer; post-processed interferometric tip sensors; pressure 1 atm; refractive index variation; temperature variations; thin diaphragm; water; Optical fiber sensors; Optical fibers; Refractive index; Sensitivity; Temperature measurement; Temperature sensors; Interferometry; post-processing; refractive index measurement;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2335272
Filename :
6853301
Link To Document :
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