A methodology for the self-consistent analysis of carrier transport and carrier capture aspects of the dynamics of quantum cascade intersubband semiconductor lasers is described in this paper. The approach is used to analyze two prototype quantum cascade lasers. The self-consistent analysis incorporates the calculation of the electron densities and temperatures in each subband, together with the intersubband relaxation time. In the calculation of the relaxation time, we take into account the electron interaction with polar optical and acoustic phonons, as well as electron degeneracy. In addition, we also calculate the capture time, considering backward processes that play a role in the electron transition from an injection into an active re...
Quantum cascade lasers are unipolar semiconductor lasers covering a wide range of the infrared and t...
A microscopic analysis of the hot-carrier dynamics governing intersubband light-emitting devices is ...
The dynamics of electrons and holes in multiquantum-well semiconductor gain media involves several d...
Abstract—A methodology for the self-consistent analysis of carrier transport and carrier capture asp...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
Electron transport in GaAs/AlGaAs quantum cascade lasers operating in midinfrared is calculated self...
The carrier transition rates and subband populations for a GaAs/AlGaAs quantum cascade laser operat...
In this study, the nature of electronic transport in quantum cascade lasers (QCLs) has been extensiv...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
To date, quantum cascade lasers are the only semiconductor laser sources that can cover a broad rang...
As material quality and processing techniques continue to improve over the years, the performance of...
Recently, research for semiconductor lasers has proceeded in two directions. One direction is toward...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
A fully two-dimensional self-consistent quantum well laser simulator called Minilase has been develo...
Quantum cascade lasers are unipolar semiconductor lasers covering a wide range of the infrared and t...
A microscopic analysis of the hot-carrier dynamics governing intersubband light-emitting devices is ...
The dynamics of electrons and holes in multiquantum-well semiconductor gain media involves several d...
Abstract—A methodology for the self-consistent analysis of carrier transport and carrier capture asp...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
Electron transport in GaAs/AlGaAs quantum cascade lasers operating in midinfrared is calculated self...
The carrier transition rates and subband populations for a GaAs/AlGaAs quantum cascade laser operat...
In this study, the nature of electronic transport in quantum cascade lasers (QCLs) has been extensiv...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
To date, quantum cascade lasers are the only semiconductor laser sources that can cover a broad rang...
As material quality and processing techniques continue to improve over the years, the performance of...
Recently, research for semiconductor lasers has proceeded in two directions. One direction is toward...
We review and discuss the first fully three-dimensional study of non-equilibrium carrier dynamics go...
A fully two-dimensional self-consistent quantum well laser simulator called Minilase has been develo...
Quantum cascade lasers are unipolar semiconductor lasers covering a wide range of the infrared and t...
A microscopic analysis of the hot-carrier dynamics governing intersubband light-emitting devices is ...
The dynamics of electrons and holes in multiquantum-well semiconductor gain media involves several d...