Title :
Novel amplified fiber-optic recirculating delay line processor
Author :
Moslehi, Behzad ; Goodman, Joseph W.
Author_Institution :
Optivision Inc., Palo Alto, CA, USA
fDate :
8/1/1992 12:00:00 AM
Abstract :
The application of optical amplifiers (OAs) to fiber-optic delay line signal processing is demonstrated. Both erbium-doped fiber amplifiers (EDFAs) and semiconductor optical amplifiers (SOAs) are applicable. Analytical results are presented for both amplified and unamplified fiber-optic recirculating delay lines (AFORDLs and UFORDLs). In the AFORDL an OA is inserted in the fiber loop. It is shown that the active AFORDL structure is capable of realizing all-fiber filters not possible with the passive UFORDL. This result is significant because it shows that the OAs can function beyond just the trivial optical loss compensation to provide extra flexibility not available in passive designs. An AFORDL design is presented which has a pole near +1 and a zero at -1 in the Z-plane resulting in useful characteristics in the magnitude and phase responses. The results suggest that extension of the concept to higher-order filters has the potential to lead to the realization of more complex optical processors
Keywords :
delay lines; fibre lasers; fibre optics; optical information processing; semiconductor junction lasers; AFORDL structure; Er3+-doped fibre amplifiers; UFORDL structure; all-fiber filters; fiber-optic delay line signal processing; fiber-optic recirculating delay lines; magnitude; optical amplifiers; optical loss compensation; optical processors; phase responses; semiconductor optical amplifiers; Delay lines; Erbium-doped fiber amplifier; Optical fiber amplifiers; Optical fiber filters; Optical filters; Optical losses; Optical signal processing; Passive filters; Semiconductor optical amplifiers; Stimulated emission;
Journal_Title :
Lightwave Technology, Journal of