DocumentCode :
1553968
Title :
Polarization insensitive 1.55-μm optical amplifier with GaAs delta-strained Ga/sub 0.47/In/sub 0.53/As quantum wells
Author :
Seiferth, F. ; Johnson, F.G. ; Merritt, S.A. ; Fox, S. ; Whaley, R.D. ; Chen, Y.J. ; Dagenais, M. ; Stone, D.R.
Author_Institution :
Dept. of Electr. Eng., Maryland Univ., College Park, MD, USA
Volume :
9
Issue :
10
fYear :
1997
Firstpage :
1340
Lastpage :
1342
Abstract :
We report a novel, polarization insensitive, 1.55-μm semiconductor optical amplifier grown by solid source molecular beam epitaxy. The active region contains six Ga/sub 0.47/In/sub 0.53/As quantum wells, each containing three tensile strained GaAs delta layers. Simple ridge waveguide devices were fabricated with 8/spl deg/ angled facets. The internal gain is 26.5 dB for both the transverse electric and transverse magnetic polarizations at a wavelength of 1.55 μm and an injection current of 375 mA. The polarization sensitivity of the gain is less than 1 dB for a bandwidth of 45 nm, and the gain is nearly flat with a variation of less than 1 dB for a bandwidth of 20 nm. The saturation output power of these devices is 11 dBm. These results are reproducible and comparable to reports from more complex device designs.
Keywords :
III-V semiconductors; gallium arsenide; indium compounds; laser transitions; light polarisation; molecular beam epitaxial growth; optical saturation; quantum well lasers; ridge waveguides; semiconductor growth; waveguide lasers; 1.55 mum; 26.5 dB; 375 mA; 8/spl deg/ angled facets; Ga/sub 0.47/In/sub 0.53/As; GaAs; GaAs delta-strained Ga/sub 0.47/In/sub 0.53/As quantum wells; active region; bandwidth; injection current; internal gain; polarization insensitive 1.55-/spl mu/m optical amplifier; polarization sensitivity; saturation output power; semiconductor optical amplifier; simple ridge waveguide devices; solid source molecular beam epitaxy; tensile strained GaAs delta layers; transverse electric polarizations; transverse magnetic polarizations; Bandwidth; Gallium arsenide; Optical amplifiers; Optical polarization; Optical saturation; Optical sensors; Optical waveguides; Semiconductor optical amplifiers; Solids; Stimulated emission;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/68.623256
Filename :
623256
Link To Document :
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