The philosophy behind this work has been to build a predictive bottom up physical model of quantum cascade lasers (QCLs) for use as a design tool, to interpret experimental results and hence improve understanding of the physical processes occurring inside working devices and as a simulator for developing new material systems. The standard model uses the envelope function and effective mass approximations to solve two complete periods of the QCL under an applied bias. Other models, such as k·p and empirical pseudopotential, have been employed in p-type systems where the more complex band structure requires it. The resulting wave functions are then used to evaluate all relevant carrier-phonon, carrier-carrier and alloy scattering rates from e...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The development of a thermal model for quantum cascade lasers (QCLs) is presented. The model is used...
n-type Ge/SiGe terahertz quantum cascade lasers are investigated using non-equilibrium Green's funct...
Terahertz quantum cascade lasers (THz QCLs) have many potential applications such as medical and sec...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
We present an advanced technique for the design and optimization of GaAs/AlGaAs quantum cascade lase...
Terahertz frequency quantum cascade lasers offer a potentially vast number of new applications. To b...
Terahertz frequency quantum cascade lasers offer a potentially vast number of new applications. To b...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The carrier transition rates and subband populations for a GaAs/AlGaAs quantum cascade laser operat...
Quantum cascade lasers (QCLs) are compact sources of coherent terahertz radiation. Although all exis...
Electron transport in GaAs/AlGaAs quantum cascade lasers operating in midinfrared is calculated self...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
Silicon-based terahertz quantum cascade lasers (QCLs) offer potential advantages over existing III–V...
A technique for calculating the temperature of the nonequilibrium electron distribution functions in...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The development of a thermal model for quantum cascade lasers (QCLs) is presented. The model is used...
n-type Ge/SiGe terahertz quantum cascade lasers are investigated using non-equilibrium Green's funct...
Terahertz quantum cascade lasers (THz QCLs) have many potential applications such as medical and sec...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
We present an advanced technique for the design and optimization of GaAs/AlGaAs quantum cascade lase...
Terahertz frequency quantum cascade lasers offer a potentially vast number of new applications. To b...
Terahertz frequency quantum cascade lasers offer a potentially vast number of new applications. To b...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The carrier transition rates and subband populations for a GaAs/AlGaAs quantum cascade laser operat...
Quantum cascade lasers (QCLs) are compact sources of coherent terahertz radiation. Although all exis...
Electron transport in GaAs/AlGaAs quantum cascade lasers operating in midinfrared is calculated self...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
Silicon-based terahertz quantum cascade lasers (QCLs) offer potential advantages over existing III–V...
A technique for calculating the temperature of the nonequilibrium electron distribution functions in...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The development of a thermal model for quantum cascade lasers (QCLs) is presented. The model is used...
n-type Ge/SiGe terahertz quantum cascade lasers are investigated using non-equilibrium Green's funct...