We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into account carrier capture, escape, and Pauli blocking processes. We evaluate possible differences between phonon-assisted or Auger processes being dominant for recovery. An analytical solution which corresponds to phonon-assisted interaction is then used to accurately fit experimental recovery curves and allows an estimation of both the carrier capture and escape rates
This article may be downloaded for personal use only. Any other use requires prior permission of the...
The gain recoveries in quantum dot semiconductor optical amplifiers (QD SOAs) are numerically studie...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
By means of an electron hole rate equation model we explain the phase dynamics of a quantum dot semi...
Carrier dynamics of a 1.3 mu m InAs/GaAs quantum dot amplifier is studied using heterodyne pump-prob...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs/GaAs...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs/GaAs...
Carrier dynamics of a 1.3 mu m InAs/GaAs quantum dot amplifier is studied using heterodyne pump-prob...
Carrier dynamics of a 1.3μm InAs∕GaAs quantum dot amplifier is studied using heterodyne pump-probe s...
The gain and phase dynamics of InAs∕GaAs quantum dot amplifiers are studied using single and two-col...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs∕GaAs...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
The gain recoveries in quantum dot semiconductor optical amplifiers (QD SOAs) are numerically studie...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
We consider a rate equation model of a quantum dot semiconductor optical amplifier that takes into a...
By means of an electron hole rate equation model we explain the phase dynamics of a quantum dot semi...
Carrier dynamics of a 1.3 mu m InAs/GaAs quantum dot amplifier is studied using heterodyne pump-prob...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs/GaAs...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs/GaAs...
Carrier dynamics of a 1.3 mu m InAs/GaAs quantum dot amplifier is studied using heterodyne pump-prob...
Carrier dynamics of a 1.3μm InAs∕GaAs quantum dot amplifier is studied using heterodyne pump-probe s...
The gain and phase dynamics of InAs∕GaAs quantum dot amplifiers are studied using single and two-col...
Single-color and two-color pump-probe measurements are used to analyze carrier dynamics in InAs∕GaAs...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
The gain recoveries in quantum dot semiconductor optical amplifiers (QD SOAs) are numerically studie...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...