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Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination

Polarization-maintaining fibers (PMFs) have always received great attention in fiber optic communication systems and components which are sensitive to polarization. Moreover, they are widely applied for high-accuracy detection and sensing devices, such as fiber gyroscope, electric/magnetic sensors,...

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Autores principales: Wu, Zhifang, Wu, Peili, Kudinova, Maryna, Zhang, Hailiang, Shum, Perry Ping, Shao, Xuguang, Humbert, Georges, Auguste, Jean-Louis, Dinh, Xuan Quyen, Pu, Jixiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506889/
https://www.ncbi.nlm.nih.gov/pubmed/32846969
http://dx.doi.org/10.3390/s20174772
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author Wu, Zhifang
Wu, Peili
Kudinova, Maryna
Zhang, Hailiang
Shum, Perry Ping
Shao, Xuguang
Humbert, Georges
Auguste, Jean-Louis
Dinh, Xuan Quyen
Pu, Jixiong
author_facet Wu, Zhifang
Wu, Peili
Kudinova, Maryna
Zhang, Hailiang
Shum, Perry Ping
Shao, Xuguang
Humbert, Georges
Auguste, Jean-Louis
Dinh, Xuan Quyen
Pu, Jixiong
author_sort Wu, Zhifang
collection PubMed
description Polarization-maintaining fibers (PMFs) have always received great attention in fiber optic communication systems and components which are sensitive to polarization. Moreover, they are widely applied for high-accuracy detection and sensing devices, such as fiber gyroscope, electric/magnetic sensors, multi-parameter sensors, and so on. Here, we demonstrated the combination of a fiber Bragg grating (FBG) and Sagnac interference in the same section of a new type of PANDA-structure PMF for the simultaneous measurement of axial strain and temperature. This specialty PMF features two stress-applied parts made of lanthanum-aluminum co-doped silicate (SiO(2)-Al(2)O(3)-La(2)O(3), SAL) glass, which has a higher thermal expansion coefficient than borosilicate glass used commonly in commercial PMFs. Furthermore, the FBG inscribed in this SAL PMF not only aids the device in discriminating strain and temperature, but also calibrates the phase birefringence of the SAL PMF more precisely thanks to the much narrower bandwidth of grating peaks. By analyzing the variation of wavelength interval between two FBG peaks, the underlying mechanism of the phase birefringence responding to temperature and strain is revealed. It explains exactly the sensing behavior of the SAL PMF based Sagnac interference dip. A numerical simulation on the SAL PMF’s internal stress and consequent modal effective refractive indices was performed to double confirm the calibration of fiber’s phase birefringence.
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spelling pubmed-75068892020-09-26 Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination Wu, Zhifang Wu, Peili Kudinova, Maryna Zhang, Hailiang Shum, Perry Ping Shao, Xuguang Humbert, Georges Auguste, Jean-Louis Dinh, Xuan Quyen Pu, Jixiong Sensors (Basel) Letter Polarization-maintaining fibers (PMFs) have always received great attention in fiber optic communication systems and components which are sensitive to polarization. Moreover, they are widely applied for high-accuracy detection and sensing devices, such as fiber gyroscope, electric/magnetic sensors, multi-parameter sensors, and so on. Here, we demonstrated the combination of a fiber Bragg grating (FBG) and Sagnac interference in the same section of a new type of PANDA-structure PMF for the simultaneous measurement of axial strain and temperature. This specialty PMF features two stress-applied parts made of lanthanum-aluminum co-doped silicate (SiO(2)-Al(2)O(3)-La(2)O(3), SAL) glass, which has a higher thermal expansion coefficient than borosilicate glass used commonly in commercial PMFs. Furthermore, the FBG inscribed in this SAL PMF not only aids the device in discriminating strain and temperature, but also calibrates the phase birefringence of the SAL PMF more precisely thanks to the much narrower bandwidth of grating peaks. By analyzing the variation of wavelength interval between two FBG peaks, the underlying mechanism of the phase birefringence responding to temperature and strain is revealed. It explains exactly the sensing behavior of the SAL PMF based Sagnac interference dip. A numerical simulation on the SAL PMF’s internal stress and consequent modal effective refractive indices was performed to double confirm the calibration of fiber’s phase birefringence. MDPI 2020-08-24 /pmc/articles/PMC7506889/ /pubmed/32846969 http://dx.doi.org/10.3390/s20174772 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Letter
Wu, Zhifang
Wu, Peili
Kudinova, Maryna
Zhang, Hailiang
Shum, Perry Ping
Shao, Xuguang
Humbert, Georges
Auguste, Jean-Louis
Dinh, Xuan Quyen
Pu, Jixiong
Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title_full Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title_fullStr Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title_full_unstemmed Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title_short Bragg Grating Assisted Sagnac Interferometer in SiO(2)-Al(2)O(3)-La(2)O(3) Polarization-Maintaining Fiber for Strain–Temperature Discrimination
title_sort bragg grating assisted sagnac interferometer in sio(2)-al(2)o(3)-la(2)o(3) polarization-maintaining fiber for strain–temperature discrimination
topic Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506889/
https://www.ncbi.nlm.nih.gov/pubmed/32846969
http://dx.doi.org/10.3390/s20174772
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