Paper
26 March 2016 Fiber Bragg grating writing technique for multimode optical fibers providing stimulation of few-mode effects in measurement systems
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Proceedings Volume 9807, Optical Technologies for Telecommunications 2015; 98070J (2016) https://doi.org/10.1117/12.2234565
Event: XIII International Scientific and Technical Conference on Optical Technologies in Telecommunications, 2015, Ufa, Russian Federation
Abstract
This work is concerned with fiber Bragg grating (FBG) writing technique developed for graded-index multimode optical fibers applied in measurement systems based on a few-mode effects. We present some results of experimental approbation of proposed technique with Bragg wavelength 1310 and 1550 nm on samples of graded-index multimode optical fibers 50/125 of both new-generations Cat. OM2+/OM3 and old Cat. OM2 with preliminary measured refractive index profiles. While the first group fibers of Cat. OM2+/OM3 was characterized by almost ideal smooth graded refractive index profile and some fiber profile samples of this group contains thin central peak, the second fiber group profiles of Cat. OM2 differ by great central core defects representing dip or thick peak. Results of described FBG spectral response measurements under excitation of laser pigtailed by single-mode fiber are represented.
© (2016) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Anton V. Bourdine, Alexander A. Vasilets, Vladimir A. Burdin, Oleg G. Morozov, Ilnur I. Nureev, Artem A. Kuznetzov, Lenar M. Faskhutdinov, Anastasia M. Kafarova, Alina Yu. Minaeva, and Nikita L. Sevruk "Fiber Bragg grating writing technique for multimode optical fibers providing stimulation of few-mode effects in measurement systems", Proc. SPIE 9807, Optical Technologies for Telecommunications 2015, 98070J (26 March 2016); https://doi.org/10.1117/12.2234565
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Cited by 3 scholarly publications.
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KEYWORDS
Fiber Bragg gratings

Optical fibers

Multimode fibers

Refractive index

Interferometers

Single mode fibers

Ultraviolet radiation

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