DocumentCode :
3806641
Title :
Coulomb Damped Relaxation Oscillations in Semiconductor Quantum Dot Lasers
Author :
Ermin Malic;Moritz J. P. Bormann;Philipp Hovel;Matthias Kuntz;Dieter Bimberg;Andreas Knorr;Eckehard Scholl
Author_Institution :
Technische Univ. Berlin, Berlin
Volume :
13
Issue :
5
fYear :
2007
Firstpage :
1242
Lastpage :
1248
Abstract :
We present a theoretical simulation of the turn-on dynamics of InAs/GaAs quantum dot semiconductor lasers driven by electrical current pulses. Our approach goes beyond standard phenomenological rate equations. It contains microscopically calculated Coulomb scattering rates, which describe Auger transitions between quantum dots and the wetting layer. In agreement with the experimental results, we predict a strong damping of relaxation oscillations on a nanosecond time scale. We find a complex dependence of the Coulomb scattering rates on the wetting layer electron and hole densities, and we show their crucial importance for the understanding of the turn-on dynamics of quantum dot lasers.
Keywords :
"Quantum dot lasers","Semiconductor lasers","Laser theory","Laser transitions","Particle scattering","Gallium arsenide","Quantum mechanics","Optical pulses","Equations","Microscopy"
Journal_Title :
IEEE Journal of Selected Topics in Quantum Electronics
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2007.905148
Filename :
4346495
Link To Document :
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