DocumentCode :
1754998
Title :
Monolithic Integration of Single Facet Slotted Laser, SOA, and MMI Coupler
Author :
Hua Yang ; Morrissey, Padraic ; Cotter, W. ; Daunt, C. Ll M. ; O´Callaghan, James ; Roycroft, B. ; Nan Ye ; Kelly, Nicholas ; Corbett, Brandon ; Peters, F.H.
Author_Institution :
Tyndall Nat. Inst., Cork, Ireland
Volume :
25
Issue :
3
fYear :
2013
fDate :
Feb.1, 2013
Firstpage :
257
Lastpage :
260
Abstract :
We demonstrate a monolithically photonic integrated circuit (PIC) comprising a single facet slotted laser (SFSL), a semiconductor optical amplifier (SOA), and a 1 × 2 multimode interference (MMI) coupler. The integrated SFSL generates a tunable single longitudinal mode output, and utilizes a simplified fabrication process for the PIC when compared with distributed feedback or distributed Bragg reflector lasers by eliminating the epitaxial regrowth as well as the ebeam or holographically generated gratings. The integration technique is implemented by biasing the MMIs to transparency, which makes the fabrication comparable the standard ridge waveguide laser. The demonstrated PIC can be used as a 1 × 2 splitter or by integrating with other waveguide devices, such as laser, modulators, or SOAs, to realize different functionality.
Keywords :
distributed Bragg reflector lasers; distributed feedback lasers; integrated optics; optical couplers; optical design techniques; optical fabrication; semiconductor optical amplifiers; waveguide lasers; SFSL; SOA; distributed Bragg reflector lasers; distributed feedback lasers; epitaxial regrowth; monolithically photonic integrated circuit; multimode interference coupler; optical fabrication; ridge waveguide laser; semiconductor optical amplifier; single facet slotted laser; single longitudinal mode output; Fiber lasers; Laser modes; Mirrors; Optical waveguides; Semiconductor optical amplifiers; Waveguide lasers; Multimode interference coupler (MMI); optical communication; photonic integration circuit (PIC); semiconductor optical amplifier (SOA); single facet slotted lasers; single mode;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2012.2233197
Filename :
6377263
Link To Document :
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