We consider the influence of additional carrier confinement, achieved by application of strong perpendicular magnetic field, on inter Landau levels electron relaxation rates and the optical gain, of two different GaAs quantum cascade laser structures operating in the terahertz spectral range. Breaking of the in-plane energy dispersion and the formation of discrete energy levels is an efficient mechanism for eventual quenching of optical phonon emission and obtaining very long electronic lifetime in the relevant laser state. We employ our detailed model for calculating the electron relaxation rates (due to interface roughness and electron-longitudinal optical phonon scattering), and solve a full set of rate equations to evaluate the carrier ...
In order to avoid losses in metamaterial unit cells at frequencies of interest, caused by metallic i...
One of the challenges in the design of metamaterials’ unit cells is the reduction of losses caused b...
The nature of the electron distribution and the electron-lattice energy relaxation phenomena in all ...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
We present a detailed analysis of GaAs/AlGaAs terahertz quantum cascade laser in the presence of an ...
We present a detailed model for calculating the optical gain of a quantum cascade laser (QCL) that o...
The operation of a 4.4 THz, GaAs-based quantum cascade laser is investigated in a 0-7.5 T magnetic f...
strated from two different quantum cascade structures based on an intra-well optical transition. Las...
We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade las...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
The need of electrically driven compact sources of coherent radiation in the frequency regime betwee...
In this paper we show that by applying a perpendicular magnetic field to a quantum cascade structure...
International audienceA Terahertz Quantum Cascade Laser (THz QCL) structure based on a bound to cont...
Quantum Cascade Laser (QCL) represents one of the finest examples of the impact that quantum-mechani...
We present a detailed experimental and theoretical study of a GaAs∕AlGaAs mid-infrared quantum casca...
In order to avoid losses in metamaterial unit cells at frequencies of interest, caused by metallic i...
One of the challenges in the design of metamaterials’ unit cells is the reduction of losses caused b...
The nature of the electron distribution and the electron-lattice energy relaxation phenomena in all ...
We consider the influence of additional carrier confinement, achieved by application of strong perpe...
We present a detailed analysis of GaAs/AlGaAs terahertz quantum cascade laser in the presence of an ...
We present a detailed model for calculating the optical gain of a quantum cascade laser (QCL) that o...
The operation of a 4.4 THz, GaAs-based quantum cascade laser is investigated in a 0-7.5 T magnetic f...
strated from two different quantum cascade structures based on an intra-well optical transition. Las...
We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade las...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
The need of electrically driven compact sources of coherent radiation in the frequency regime betwee...
In this paper we show that by applying a perpendicular magnetic field to a quantum cascade structure...
International audienceA Terahertz Quantum Cascade Laser (THz QCL) structure based on a bound to cont...
Quantum Cascade Laser (QCL) represents one of the finest examples of the impact that quantum-mechani...
We present a detailed experimental and theoretical study of a GaAs∕AlGaAs mid-infrared quantum casca...
In order to avoid losses in metamaterial unit cells at frequencies of interest, caused by metallic i...
One of the challenges in the design of metamaterials’ unit cells is the reduction of losses caused b...
The nature of the electron distribution and the electron-lattice energy relaxation phenomena in all ...