DocumentCode :
1270086
Title :
Core Alignment of Butt Coupling Between Single-Mode and Multimode Optical Fibers by Monitoring Brillouin Scattering Signal
Author :
Mizuno, Yosuke ; Nakamura, Kentaro
Author_Institution :
Precision & Intell. Lab., Tokyo Inst. of Technol., Tokyo, Japan
Volume :
29
Issue :
17
fYear :
2011
Firstpage :
2616
Lastpage :
2620
Abstract :
We propose a new method to optimize the core alignment of the butt coupling between a single-mode optical fiber (SMF) and a graded-index multimode optical fiber (GI-MMF) by monitoring the spectrum of Brillouin scattered light. This method is stable, free from costly or elaborate equipments, applicable to the coupling of optical fibers with different core diameters or materials, and available even when the power of transmitted light cannot be measured. We experimentally show the usefulness of this method in the following three cases: where a silica-based SMF is butt-coupled to 1) a silica-based GI-MMF with 50-μm core diameter; 2) a perfluorinated GI polymer optical fiber (PFGI-POF) with 62.5-μm core diameter; and 3) a PFGI-POF with 120-μm core diameter. Depending on the relative core position, not only the Stokes power but also the Brillouin frequency shift changed, which probably originates from the excitation of higher order modes.
Keywords :
Brillouin spectra; gradient index optics; light transmission; optical fibres; optical polymers; silicon compounds; Brillouin frequency shift; Brillouin scattering signal; SiO2; Stokes power; butt coupling; core alignment; core diameters; graded-index multimode optical fiber; light transmission; perfluorinated polymer optical fiber; relative core position; silica-based fiber; single-mode optical fibers; size 120 mum; size 50 mum; size 62.5 mum; Optical fiber amplifiers; Optical fiber sensors; Scattering; Silicon compounds; Brillouin frequency shift (BFS); Brillouin scattering; butt coupling; core alignment; graded-index multimode optical fiber (GI-MMF); nonlinear optics; polymer optical fiber;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2011.2161754
Filename :
5951711
Link To Document :
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