DocumentCode :
2190723
Title :
Theory and simulation of ultrafast carrier dynamics and nonlinear pulse propagation in quantum dot semiconductor optical amplifiers
Author :
Reschner, Dietmar W. ; Gehrig, Edeltraud ; Hess, Ortwin
Author_Institution :
Adv. Technol. Inst., Surrey Univ., Guildford, UK
fYear :
2005
fDate :
19-22 Sept. 2005
Firstpage :
131
Lastpage :
132
Abstract :
We investigate the propagation of an ultra-fast light pulse dynamically interacting with the charge carrier plasma in the active area of a quantum dot semiconductor optical amplifier (QD-SOA). The coupled spatio-temporal dynamics of light-fields and carriers in a spatially inhomogeneous dot ensemble is described on the basis of Maxwell-Bloch equations. In this approach the light fields within the QD-SOA are calculated using wave equations that are coupled to Quantum Dot Bloch equations describing the dynamics of the carriers in the active gain medium. In addition, we simulate the dynamics of the carriers in the embedding medium, including scattering of charge carriers between wetting layer and quantum dots. Our numerical results show that the shape and duration of an ultra-short pulse propagating through the amplifier is determined by a complex combination of hole level burning and dynamic scattering processes.
Keywords :
Maxwell equations; high-speed optical techniques; laser beams; optical hole burning; quantum dot lasers; semiconductor optical amplifiers; Maxwell-Bloch equation; Quantum Dot Bloch equation; charge carrier plasma; coupled spatio-temporal dynamics; dynamic scattering process; hole level burning; nonlinear pulse propagation; quantum dot semiconductor optical amplifier; ultra-fast light pulse; ultra-short pulse propagation; ultrafast carrier dynamics; wave equation; Charge carriers; Maxwell equations; Optical coupling; Optical propagation; Optical pulses; Optical scattering; Pulse amplifiers; Quantum dots; Quantum mechanics; Semiconductor optical amplifiers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Numerical Simulation of Optoelectronic Devices, 2005. NUSOD '05. Proceedings of the 5th International Conference on
Print_ISBN :
0-7803-9149-7
Type :
conf
DOI :
10.1109/NUSOD.2005.1518170
Filename :
1518170
Link To Document :
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