Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber

The strain sensitivity of a two-mode birefringent side-hole fiber is measured in the spectral domain. In a simple experimental setup comprising a broadband source, a polarizer, a two-mode birefringent side-hole fiber under varied elongations, an analyzer and a compact spectrometer, the spectral inte...

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Main Authors: Waclaw Urbanczyk, Krzysztof Poturaj, Mariusz Makara, Pawel Mergo, Tadeusz Martynkien, Jacek Olszewski, Petr Hlubina
Format: Article
Language:English
Published: MDPI AG 2012-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/12/9/12070
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spelling doaj-78bdbb2dbb4b4c40a25c8e197592699b2020-11-24T23:53:23ZengMDPI AGSensors1424-82202012-09-01129120701208110.3390/s120912070Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole FiberWaclaw UrbanczykKrzysztof PoturajMariusz MakaraPawel MergoTadeusz MartynkienJacek OlszewskiPetr HlubinaThe strain sensitivity of a two-mode birefringent side-hole fiber is measured in the spectral domain. In a simple experimental setup comprising a broadband source, a polarizer, a two-mode birefringent side-hole fiber under varied elongations, an analyzer and a compact spectrometer, the spectral interferograms are resolved. These are characterized by the equalization wavelength at which spectral interference fringes have the highest visibility (the largest period) due to the zero group optical path difference between the fundamental, the LP01 mode and the higher-order, the LP11 mode. The spectral interferograms with the equalization wavelength are processed to retrieve the phase as a function of the wavelength. From the retrieved phase functions corresponding to different elongations of a two-mode birefringent side-hole fiber under test, the spectral strain sensitivity is obtained. Using this approach, the intermodal spectral strain sensitivity was measured for both x and y polarizations. Moreover, the spectral polarimetric sensitivity to strain was measured for the fundamental mode when a birefringent delay line was used in tandem with the fiber. Its spectral dependence was also compared with that obtained from a shift of the spectral interferograms not including the equalization wavelength, and good agreement was confirmed.http://www.mdpi.com/1424-8220/12/9/12070microstructured fiberspolarization-maintaining fibersfiber characterizationfiber optics sensorsinterferometry
collection DOAJ
language English
format Article
sources DOAJ
author Waclaw Urbanczyk
Krzysztof Poturaj
Mariusz Makara
Pawel Mergo
Tadeusz Martynkien
Jacek Olszewski
Petr Hlubina
spellingShingle Waclaw Urbanczyk
Krzysztof Poturaj
Mariusz Makara
Pawel Mergo
Tadeusz Martynkien
Jacek Olszewski
Petr Hlubina
Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
Sensors
microstructured fibers
polarization-maintaining fibers
fiber characterization
fiber optics sensors
interferometry
author_facet Waclaw Urbanczyk
Krzysztof Poturaj
Mariusz Makara
Pawel Mergo
Tadeusz Martynkien
Jacek Olszewski
Petr Hlubina
author_sort Waclaw Urbanczyk
title Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
title_short Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
title_full Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
title_fullStr Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
title_full_unstemmed Spectral-Domain Measurement of Strain Sensitivity of a Two-Mode Birefringent Side-Hole Fiber
title_sort spectral-domain measurement of strain sensitivity of a two-mode birefringent side-hole fiber
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2012-09-01
description The strain sensitivity of a two-mode birefringent side-hole fiber is measured in the spectral domain. In a simple experimental setup comprising a broadband source, a polarizer, a two-mode birefringent side-hole fiber under varied elongations, an analyzer and a compact spectrometer, the spectral interferograms are resolved. These are characterized by the equalization wavelength at which spectral interference fringes have the highest visibility (the largest period) due to the zero group optical path difference between the fundamental, the LP01 mode and the higher-order, the LP11 mode. The spectral interferograms with the equalization wavelength are processed to retrieve the phase as a function of the wavelength. From the retrieved phase functions corresponding to different elongations of a two-mode birefringent side-hole fiber under test, the spectral strain sensitivity is obtained. Using this approach, the intermodal spectral strain sensitivity was measured for both x and y polarizations. Moreover, the spectral polarimetric sensitivity to strain was measured for the fundamental mode when a birefringent delay line was used in tandem with the fiber. Its spectral dependence was also compared with that obtained from a shift of the spectral interferograms not including the equalization wavelength, and good agreement was confirmed.
topic microstructured fibers
polarization-maintaining fibers
fiber characterization
fiber optics sensors
interferometry
url http://www.mdpi.com/1424-8220/12/9/12070
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