We provide direct evidence that the macroscopic response of the gain dynamics in electrically-pumped In- GaAs/GaAs quantum dots is a superposition of intradot relaxation dynamics from microstates with multiple discrete carrier numbers. The gain recovery in the presence of an optical pre-pump fully depleting the ground-state gain is measured to be faster than without pre-pump. This effect, opposite to expectations from rate equations with mean-field carrier distributions, is due to a conditional gain recovery in which microstates with slow internal dynamics are suppressed by the pre-pump. The effect is evident at 15K and still observable at 300 K, beneficial for high-speed optical signal processing
Ultrafast gain dynamics of the ground-state transition are measured in electrically pumped InAs/GaAs...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...
This thesis investigates the carrier and gain dynamics of semiconductor quantum dots in the strong q...
We provide direct evidence that the macroscopic response of the gain dynamics in electrically-pumped...
We measured the ultrafast gain recovery dynamics of the ground-state transition in an ensemble of el...
The charge carrier dynamics of improved InP-based InAs/AlGaInAs quantum dot (QD) semiconductor optic...
Self-organized quantum-dot (QD) active regions are being researched intensively for laser and amplif...
We measured the gain dynamics at the ground-state transition in an electrically pumped InP/AlGaInP q...
Ultrafast carrier and gain dynamics in strongly confined semiconductor quantum dots
The ultrafast gain recovery dynamics of the first excited state (ES) is studied in an electrically p...
Semiconductor optical amplifiers (SOAs) are important devices for optical communications being low-c...
Ultrafast gain dynamics of the ground-state transition are measured in electrically pumped InAs/GaAs...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...
This thesis investigates the carrier and gain dynamics of semiconductor quantum dots in the strong q...
We provide direct evidence that the macroscopic response of the gain dynamics in electrically-pumped...
We measured the ultrafast gain recovery dynamics of the ground-state transition in an ensemble of el...
The charge carrier dynamics of improved InP-based InAs/AlGaInAs quantum dot (QD) semiconductor optic...
Self-organized quantum-dot (QD) active regions are being researched intensively for laser and amplif...
We measured the gain dynamics at the ground-state transition in an electrically pumped InP/AlGaInP q...
Ultrafast carrier and gain dynamics in strongly confined semiconductor quantum dots
The ultrafast gain recovery dynamics of the first excited state (ES) is studied in an electrically p...
Semiconductor optical amplifiers (SOAs) are important devices for optical communications being low-c...
Ultrafast gain dynamics of the ground-state transition are measured in electrically pumped InAs/GaAs...
By means of an electron hole rate equationmodelwe explain the phase dynamicsof a quantum dot semicon...
This thesis investigates the carrier and gain dynamics of semiconductor quantum dots in the strong q...