DocumentCode :
819952
Title :
Fictive-Temperature Mapping in Highly Ge-Doped Multimode Optical Fibers
Author :
Lancry, Matthieu ; Flammer, Ivo ; Depecker, Christophe ; Poumellec, Bertrand ; Simons, Denis ; Nouchi, Pascale ; Douay, Marc
Author_Institution :
Lab. de Physico-chirme de I´´Etat Solide, Univ. Paris Sud, Orsay
Volume :
25
Issue :
5
fYear :
2007
fDate :
5/1/2007 12:00:00 AM
Firstpage :
1198
Lastpage :
1205
Abstract :
In this paper, a Fourier transform infrared focal-plane-array detector was used to image the "bond-stretching" vibration mode observed near sigma=1120 cm-1 of highly Ge-doped graded-index multimode optical fibers (GI-MMFs). We show that the distribution of the peak wavenumber sigma is nonuniform across the core and cladding of the MMF, i.e., sigma is smaller in the core due to the Ge-doping. Next, as calibration curves between sigma and the fictive temperature Tf are not available in the literature for highly Ge-doped glasses (above 7w%), we have determined calibration curves from 1w% to 30w% in Ge. Then, we have applied these corrections in order to estimate, for the first time to our knowledge, the fictive-temperature distribution within multimode-fiber cross section. Using these curves, we show that Tf is higher at the fiber edges, presumably due to faster cooling. Furthermore, there is also a Tf increase in the center of the core (i.e., higher Ge content)
Keywords :
Fourier transform spectra; calibration; focal planes; germanium; gradient index optics; infrared spectra; optical fibre cladding; optical fibre testing; Fourier transform detector; Fourier transform infrared spectroscopy; Ge-doped glasses; Ge-doping; SiO2:Ge; bond-stretching; calibration curves; cooling; fictive-temperature mapping; focal-plane-array detector; graded-index optical fibers; infrared detector; multimode optical fibers; optical fiber cladding; optical fiber core; vibration mode imaging; Calibration; Fourier transforms; Glass; Infrared detectors; Infrared spectra; Optical fiber losses; Optical fibers; Rayleigh scattering; Spectroscopy; Temperature; Fictive temperature; Fourier transform infrared (FTIR) spectroscopy; Rayleigh loss; optical fiber;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2007.893045
Filename :
4167963
Link To Document :
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