DocumentCode :
1380091
Title :
Passive active resonant coupler (PARC) platform with mode expander
Author :
Saini, S.S. ; Johnson, F.G. ; Stone, D.R. ; Shen, H. ; Zhou, W. ; Dagenais, M.
Author_Institution :
Dept. of Electr. & Comput. Eng., Maryland Univ., College Park, MD, USA
Volume :
12
Issue :
8
fYear :
2000
Firstpage :
1025
Lastpage :
1027
Abstract :
We have developed a monolithic integration platform where three waveguides of different characteristics are using a single epitaxial growth. This is achieved by having three waveguides in the growth direction and by coupling the mode between them by resonance over compact tapers. The top waveguide is an active waveguide optimized for gain at 1.55 μm. The middle waveguide is a confined passive waveguide optimized for passive devices such as splitters and filters, etc. The bottom waveguide is a large loosely confined passive waveguide optimized for a high coupling efficiency to a single-mode fiber. The mode is coupled from the active waveguide to the confined passive waveguide over a 120-μm-long taper with less than 0.1-dB coupling loss. To couple the mode from the confined passive waveguide to the large-mode passive waveguide, a 270-μm-long taper is used with less than 0.25-dB coupling loss. Lasers have been fabricated to test the platform and have a butt-coupling loss of 3.5 dB to a standard cleaved single-mode fiber.
Keywords :
integrated optics; integrated optoelectronics; optical beam splitters; optical couplers; optical fibre couplers; optical losses; optical waveguide filters; optical waveguides; 0.1 dB; 0.25 dB; 1.55 mum; 120 mum; 270 mum; 3.5 dB; PARC platform; active waveguide optimisation; bottom waveguide; butt-coupling loss; compact tapers; confined passive waveguide; coupling loss; growth direction; high coupling efficiency; large-mode passive waveguide; middle waveguide; mode expander; monolithic integration platform; passive active resonant coupler platform; single epitaxial growth; single-mode fiber coupling; standard cleaved single-mode fiber; top waveguide; Epitaxial growth; Fiber lasers; Laser modes; Monolithic integrated circuits; Optical fiber devices; Optical losses; Optical waveguides; Photonic band gap; Resonance; Semiconductor waveguides;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/68.867996
Filename :
867996
Link To Document :
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