Quantum-dot semiconductor optical amplifiers for high bit-rate signal processing over 40 Gbit/s

Citation
M. Sugawara et al., Quantum-dot semiconductor optical amplifiers for high bit-rate signal processing over 40 Gbit/s, JPN J A P 2, 40(5B), 2001, pp. L488-L491
Citations number
12
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Volume
40
Issue
5B
Year of publication
2001
Pages
L488 - L491
Database
ISI
SICI code
Abstract
This paper provides a theory and simulation of traveling-type semiconductor optical amplifiers (SOAs) with self-assembled quantum dots in their active region. We calculated their continuous-wave and 40-Gbit/s dynamic performa nce, and compared them with 1.55-mum SOAs with bulk InGaAsP active layers. The results demonstrate that quantum-dot SOAs can process multiple-waveleng th high bit-rate optical pulse trains over 40 Gbit/s under gain saturation. This promises diverse functions like regeneration, reshaping, multiple-wav elength processing, wavelength conversion, and demultiplexing of high-bit-r ate patterned optical signals, which meet with the demand of next-generatio n broadband all-optical photonic networks.