DocumentCode :
778163
Title :
Feed-forward continuous and complete polarization control with a PLZT rotatable-variable waveplate and inline polarimeter
Author :
Hirabayashi, Katsuhiko ; Amano, Chikara
Author_Institution :
NTT Photonics Labs., NTT Corp., Kanagawa, Japan
Volume :
21
Issue :
9
fYear :
2003
Firstpage :
1920
Lastpage :
1932
Abstract :
A Pb1-xLax(ZryTiz)1-x4/O3 (PLZT) electrooptic ceramic variable-rotatable waveplate and a compact inline polarimeter have been used to develop a fast feed-forward-controlled module for the continuous and complete conversion of polarization. This requires the control of only two parameters: the direction θ and strength of the applied voltage V0. Feed-forward control speed is fast, taking only 24 μs. The chip plates were made by cutting T-shaped trenches into the four sides of a 500×400×300-μm3 PLZT chip and coating the trenches with electrodes. The PLZT waveplate is inserted into a 330-μm gap between thermally expanded core fibers. The input polarization states are monitored by a newly developed compact and fast inline polarimeter, which is placed in front of the polarization controller. The optimum θ and V0 values for the required conversion are calculated by a computer, and the corresponding voltages are then applied to PLZT waveplate.
Keywords :
ceramics; electro-optical devices; lanthanum compounds; lead compounds; modules; optical communication equipment; polarimeters; 24 mus; 300 micron; 330 micron; 400 micron; 500 micron; PLZT; PLZT electrooptic ceramic variable-rotatable waveplate; PLZT rotatable-variable waveplate; Pb1-xLax(ZryTiz)1-x4/O3; PbLaZrO3TiO3; T-shaped trenches; applied voltage; compact inline polarimeter; complete polarization control; electrodes; fast feed-forward-controlled module; feed-forward continuous polarization control; feed-forward control speed; inline polarimeter; input polarization states; optical fiber communications; polarization controller; thermally expanded core fibers; Ceramics; Coatings; Electric variables control; Electrodes; Feedforward systems; Optical retarders; Polarization; Thermal variables control; Voltage control; Zirconium;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2003.816891
Filename :
1230171
Link To Document :
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