DocumentCode
1126292
Title
Controlling Microwave Signals by Means of Slow and Fast Light Effects in SOA-EA Structures
Author
Maicas, Salvador Sales ; Öhman, Filip ; Capmany, José ; Mørk, Jesper
Author_Institution
Univ. Politecnica de Valencia, Valencia
Volume
19
Issue
20
fYear
2007
Firstpage
1589
Lastpage
1591
Abstract
We present a novel scheme for the control of microwave signals in the optical domain. We propose the use of alternating amplifying and absorbing sections to implement phase control by using fast and slow light effects in semiconductors. The potential benefits from the proposed semiconductor optical amplifier and electroabsorber structures are the high tuning speed, the continuous scan of the phase delay that brings antenna angular continuing scanning, the small size, the capability of integration, the low insertion losses, and the low bias voltage. We have obtained phase changes of almost 60deg around 10 GHz using commercially available components that were not optimized for this purpose. These results indicate a potential for several microwave photonic applications including the change of the direction of the radiation pattern of photonic phase-array antennas or the implementation of fast tunable microwave photonic filters.
Keywords
delays; electroabsorption; integrated optics; laser tuning; microwave photonics; optical losses; semiconductor optical amplifiers; SOA-EA structures; angular continuing scanning; bias voltage; electroabsorber; fast light effect; fast tunable microwave photonic filters; insertion losses; integration capability; microwave photonic applications; microwave signal control; optical domain; photonic phase-array antennas; semiconductor optical amplifier; slow light effect; tuning speed; Fast light; Lighting control; Optical control; Optical filters; Optical tuning; Optical variables control; Phase control; Semiconductor optical amplifiers; Slow light; Stimulated emission; Microwave photonic filters; optical signal processing; phased arrays; semiconductor optical amplifiers (SOAs);
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2007.904559
Filename
4305227
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