The operation of a 4.4 THz, GaAs-based quantum cascade laser is investigated in a 0-7.5 T magnetic field applied parallel to the growth axis. Pronounced oscillations are found in the threshold current and output power as the magnetic field is increased. At 4.3 T the threshold current density is drastically reduced to 160 A/cm(2) from the 290 A/cm(2) measured at 0 T. We attribute these results to a modulation of the lifetime of the upper state of the laser transition owing to the combined effects of inter-Landau level resonances and a progressive quenching of nonradiative relaxation channels due to the additional in-plane quantization. The latter is also responsible for a dramatic decrease in the conductivity, with a reduction in the number ...
We experimentally investigated the effect of oscillator strength (radiative transition diagonality) ...
We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade las...
Applying strong magnetic fields perpendicular to the 2DEG in semiconductor quantum wells breaks the ...
The operation of a 4.4 THz, GaAs-based quantum cascade laser is investigated in a 0-7.5 T magnetic f...
We present a detailed analysis of GaAs/AlGaAs terahertz quantum cascade laser in the presence of an ...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
We present a detailed model for calculating the optical gain of a quantum cascade laser (QCL) that o...
The need of electrically driven compact sources of coherent radiation in the frequency regime betwee...
strated from two different quantum cascade structures based on an intra-well optical transition. Las...
The thesis work was about the study of transitions in quantum cascade heterostructures. Two types of...
In this paper we show that by applying a perpendicular magnetic field to a quantum cascade structure...
We present a detailed experimental and theoretical study of a GaAs∕AlGaAs mid-infrared quantum casca...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
Quantum Cascade Laser (QCL) represents one of the finest examples of the impact that quantum-mechani...
International audienceA Terahertz Quantum Cascade Laser (THz QCL) structure based on a bound to cont...
We experimentally investigated the effect of oscillator strength (radiative transition diagonality) ...
We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade las...
Applying strong magnetic fields perpendicular to the 2DEG in semiconductor quantum wells breaks the ...
The operation of a 4.4 THz, GaAs-based quantum cascade laser is investigated in a 0-7.5 T magnetic f...
We present a detailed analysis of GaAs/AlGaAs terahertz quantum cascade laser in the presence of an ...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
We present a detailed model for calculating the optical gain of a quantum cascade laser (QCL) that o...
The need of electrically driven compact sources of coherent radiation in the frequency regime betwee...
strated from two different quantum cascade structures based on an intra-well optical transition. Las...
The thesis work was about the study of transitions in quantum cascade heterostructures. Two types of...
In this paper we show that by applying a perpendicular magnetic field to a quantum cascade structure...
We present a detailed experimental and theoretical study of a GaAs∕AlGaAs mid-infrared quantum casca...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
Quantum Cascade Laser (QCL) represents one of the finest examples of the impact that quantum-mechani...
International audienceA Terahertz Quantum Cascade Laser (THz QCL) structure based on a bound to cont...
We experimentally investigated the effect of oscillator strength (radiative transition diagonality) ...
We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade las...
Applying strong magnetic fields perpendicular to the 2DEG in semiconductor quantum wells breaks the ...