DocumentCode :
1263968
Title :
Liquid Crystal Devices for the Reconfigurable Generation of Optical Vortices
Author :
Albero, Jorge ; Garcia-Martinez, Pascuala ; Bennis, Noureddine ; Oton, Eva ; Cerrolaza, Beatriz ; Moreno, Ignacio ; Davis, Jeffrey A.
Author_Institution :
Dept. de Cienc. de Mater., Opt. y Tecnol. Electron., Univ. Miguel Hernandez, Elche, Spain
Volume :
30
Issue :
18
fYear :
2012
Firstpage :
3055
Lastpage :
3060
Abstract :
We present two liquid crystal devices specifically designed to dynamically generate optical vortices. Two different electrode geometrical shapes have been lithographically patterned into vertical-aligned liquid crystal cells. First, we demonstrate a pie-shape structure with 12 slices, which can be adjusted to produce spiral phase plates (SPP) that generate optical vortices. Moreover, the same device can be used to generate a pseudo-radially polarized beam, by simply adding two quarter-wave plates on each side. A second device has been fabricated with spiral shaped electrodes, which result from the combination of a SPP with the phase of a diffractive lens. This device acts as a spiral diffractive lens (SDL), thus avoiding the requirement of any additional physical external lens to provide focusing of the generated optical vortices. In both devices, the phase modulation can be adjusted by means of the voltage applied to the patterned electrodes, in order to change the properties of the generated optical vortex beams. Experimental demonstrations are provided for different wavelengths.
Keywords :
diffractive optical elements; lenses; liquid crystal devices; optical design techniques; optical fabrication; optical focusing; optical modulation; optical retarders; optical vortices; phase modulation; SDL; SPP; electrode geometrical shapes; liquid crystal devices; optical vortex beams; patterned electrodes; phase modulation; pie-shape structure; pseudoradially polarized beam; quarter-wave plates; reconfigurable generation; spiral diffractive lens; spiral phase plates; spiral shaped electrodes; vertical-aligned liquid crystal cells; Electrodes; Harmonic analysis; Laser beams; Lenses; Optical diffraction; Optical vortices; Spirals; Liquid crystal devices; optical vortices; spiral diffractive lenses; spiral phase plates;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2012.2211567
Filename :
6268281
Link To Document :
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