Paper
6 April 2017 Quasi-interferometric scheme improved by fiber Bragg grating written on macrostructure defect in silica multimode optical fiber operating in a few-mode regime
Author Affiliations +
Proceedings Volume 10342, Optical Technologies for Telecommunications 2016; 103420W (2017) https://doi.org/10.1117/12.2270785
Event: XIV International Scientific and Technical Conference on Optical Technologies in Telecommunications, 2016, Samara, Russian Federation
Abstract
This work presents results of experimental approbation of earlier on proposed modified fiber optic stress sensor based on a few-mode effects occurring during laser-excited optical signal propagation over silica multimode optical fiber (MMF). Modification is concerned with a passage to quasi-interferometric scheme realized by two multimode Y-couplers with equalized arm lengths improved by fiber Bragg grating (FBG) written on preliminary formed precision macrostructure defects in silica multimode graded-index optical fibers and special offset launching conditions providing laser-based excitation of higher-order modes. The “arms” of quasi-interferometer are two equalized lengths of MMF Cat. OM2 with great central dip of refractive index profile and strong pulse splitting due to high differential mode delay (DMD). We tested FBGs with Bragg wavelength both 1310 nm and 1550 nm written over tapers or up-tapers preliminary formed in short pieces of MMF Cat. OM2+/OM3 and further jointed to the end of one of the arms before output Y-coupler. Researches were focused on comparison analysis of pulse responses under changing of selected excited mode mixing and power diffusion processes due to stress distributed action to sensor fiber depending. Here we considered FBGs not only as particular wavelength reflector during spectral response measurement but also as local periodic microstructure defect which strongly effects on few-mode signal components mixing process also improved by combination with macro-defect like taper or up-taper that should provide response variation. Some results pulse response measurements produced for different scheme configuration and their comparison analysis are represented.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Alexander S. Evtushenko, Lenar M. Faskhutdinov, Anastasia M. Kafarova, Artem A. Kuznetzov, Alina Yu. Minaeva, Nikita L. Sevruk, Ilnur I. Nureev, Alexander A. Vasilets, Vladimir A. Andreev, Oleg G. Morozov, Vladimir A. Burdin, and Anton V. Bourdine "Quasi-interferometric scheme improved by fiber Bragg grating written on macrostructure defect in silica multimode optical fiber operating in a few-mode regime", Proc. SPIE 10342, Optical Technologies for Telecommunications 2016, 103420W (6 April 2017); https://doi.org/10.1117/12.2270785
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Cited by 2 scholarly publications.
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KEYWORDS
Fiber Bragg gratings

Sensors

Digital micromirror devices

Fiber optics sensors

Fusion splicing

Optical fibers

Silica

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