DocumentCode
1060936
Title
Characterization and Modeling of Broad Spectrum InAs–GaAs Quantum-Dot Superluminescent Diodes Emitting at 1.2–1.3 μm
Author
Rossetti, Marco ; Li, Lianhe ; Markus, Alexander ; Fiore, Andrea ; Occhi, Lorenzo ; Vélez, Christian ; Mikhrin, Sergey ; Krestnikov, Igor ; Kovsh, Alexey
Author_Institution
SHARP Lab. of Europe, Oxford
Volume
43
Issue
8
fYear
2007
Firstpage
676
Lastpage
686
Abstract
High-power broadband superluminescent diodes (SLDs) emitting in the 1.2-1.3-mum region are demonstrated using InAs-GaAs quantum dots (QDs). The highest output powers of ~30-50 mW are achieved using 18 QD layers with p-doped GaAs spacers. At these high powers the device operates in a regime of broad bandwidth (~100 nm) with a spectral dip of ~5 dB between two separate peaks originated by the QD ground and excited states. Spectral calculations performed with a traveling-wave rate equation model show excellent agreement with the experimental data and provide design rules for optimizing the output spectrum. SLD characteristics are presented for two different device structures consisting of tilted and bent waveguides. The latter allows the achievement of higher output powers at lower currents. The coherence properties and the temperature characteristics are also discussed in detail.
Keywords
III-V semiconductors; gallium arsenide; indium compounds; semiconductor quantum dots; superluminescent diodes; waveguide discontinuities; InAs-GaAs; bent waveguides; optical coherence; quantum-dot superluminescent diodes; tilted waveguides; traveling-wave rate equation model; wavelength 1.2 mum to 1.3 mum; Bandwidth; Biomedical optical imaging; Coherence; Equations; Gallium arsenide; Optical sensors; Optical waveguides; Power generation; Quantum dots; Superluminescent diodes; Optical coherence; quantum dot (QD); rate equation; superluminescent diode (SLD); temperature stability; traveling-wave;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.2007.901589
Filename
4276833
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