DocumentCode :
1198131
Title :
Three ways to implement interfacial techniques: application to measurements of chromatic dispersion, birefringence, and nonlinear susceptibilities
Author :
Francois, P.L. ; Monerie, M. ; Vassallo, C. ; Durteste, Y. ; Alard, F.R.
Author_Institution :
CNET, Lannion, France
Volume :
7
Issue :
3
fYear :
1989
fDate :
3/1/1989 12:00:00 AM
Firstpage :
500
Lastpage :
513
Abstract :
Depending on the spectal width of the source illuminating an interferometer, measurement procedures can utilize either the whole interferogram, or only the fringe envelope, or only the fringe quick oscillations. With an ultraband spectrum source, a simplified adaptation of the methods of Fourier transform spectroscopy yields the variations of the test-fiber propagation constant over the whole wavelength-interval of the source. Chromatic dispersion can then be computed from a single interferogram. With narrower spectrum sources, only the fringe envelopes are utilized and yield measurements of mode delay, with application to chromatic and polarization mode dispersion. In this case, however, interferograms at several wavelengths are necessary. With even narrower spectrum sources, the fringe quick oscillations provide measurements of phase shifts, related to changes in the mode propagation constant, when outside perturbations are applied to the test fiber. A direct method for measuring the third-order nonlinear susceptibilities is discussed. In this case the outside perturbation is an intense pump laser field.<>
Keywords :
birefringence; light interferometry; nonlinear optical susceptibility; optical dispersion; optical fibres; birefringence; chromatic dispersion; fibre propagation constant; fringe envelope; fringe quick oscillations; interfacial techniques; interferogram; nonlinear susceptibilities; polarization mode dispersion; source spectral widths; third-order nonlinear susceptibilities; Chromatic dispersion; Delay; Fourier transforms; Optical fiber polarization; Phase measurement; Polarization mode dispersion; Propagation constant; Spectroscopy; Testing; Wavelength measurement;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.16886
Filename :
16886
Link To Document :
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