Title :
Packaged 1.5-
m Quantum-Well SOA With 0.8-W Output Power and 5.5-dB Noise Figure
Author :
Juodawlkis, Paul W. ; Plant, Jason J. ; Loh, William ; Missaggia, Leo J. ; Jensen, Katharine E. ; O´Donnell, Frederick J.
Author_Institution :
Lincoln Lab., Massachusetts Inst. of Technol., Lexington, MA, USA
Abstract :
We report the demonstration of a lensed-fiber-pigtailed InGaAsP-InP quantum-well semiconductor optical amplifier based on the slab-coupled optical waveguide (SCOW) concept. At a 5-A bias current and a wavelength of 1540 nm, the packaged SCOW amplifier (SCOWA) exhibits a record 0.8-W saturation output power, 13.8-dB small-signal gain, 5.5-dB noise figure, and a maximum electrical-to-optical conversion efficiency of 11%. The estimated coupling efficiency between the large (5.6 times 7.5 mum), fundamental SCOWA mode and the lensed fibers (6.5-mum spot size) is 90%.
Keywords :
gallium arsenide; gallium compounds; indium compounds; integrated optics; laser noise; optical fibre amplifiers; optical waveguides; quantum well lasers; semiconductor optical amplifiers; semiconductor quantum wells; InGaAsP-InP; SCOW amplifier; SOA; coupling efficiency; current 5 A; electrical-to-optical conversion efficiency; gain 13.8 dB; lensed- fiber-pigtailed semiconductor optical amplifier; noise figure 5.5 dB; power 0.8 W; quantum-well semiconductor optical amplifier; size 6.5 mum; slab-coupled optical waveguide; wavelength 1540 nm; Noise figure (NF); optical waveguides; power amplifiers; quantum-well (QW) devices; semiconductor optical amplifiers (SOAs);
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2009.2023332