DocumentCode :
1146628
Title :
A polymer-dispersed liquid crystal-based dynamic gain equalizer
Author :
Barge, M. ; Battarel, D. ; de la Tocnaye, J.Ld.B.
Author_Institution :
Optogone SA, Plouzane, France
Volume :
23
Issue :
8
fYear :
2005
Firstpage :
2531
Lastpage :
2541
Abstract :
This paper presents results obtained with a spatial light modulator (SLM) using a polymer-dispersed liquid-crystal (LC) material to provide dynamic gain equalization (DGE) for wavelength-division multiplexing (WDM) networks. We show the benefit of using a nonchannelized approach to adjust some physical parameters such as the ripple and the maximum obtainable attenuation slope for the spectra to be equalized. Particular attention is paid here to polarization dependence that can result from parasitic anisotropic multiple path interferences as well as induced anisotropy due to a planar transverse field when using a free-space SLM structure. In this frame, we demonstrate an original approach using a depolarizing prism that is only appropriate to such choice of material and that mitigates these effects. Finally, material engineering to widen the operating temperature range is also shortly presented in this paper.
Keywords :
equalisers; light polarisation; liquid crystal devices; optical communication equipment; optical prisms; polymer dispersed liquid crystals; spatial light modulators; wavelength division multiplexing; anisotropic interferences; depolarizing prism; dynamic gain equalizer; induced anisotropy; material engineering; multiple path interferences; nonchannelized approach; parasitic interferences; planar transverse field; polarization dependence; polymer-dispersed liquid crystal; spatial light modulator; wavelength-division multiplexing networks; Anisotropic magnetoresistance; Crystalline materials; Equalizers; Interference; Liquid crystal polymers; Optical attenuators; Optical modulation; Polarization; WDM networks; Wavelength division multiplexing; Birefringent prism; depolarization; dynamic gain equalizer; liquid-crystal athermalization; polarization-dependent loss (PDL); polymer-dispersed liquid crystal (PDLC);
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2005.850037
Filename :
1498958
Link To Document :
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