Detailed simulations for terahertz quantum cascade lasers based on two-well designs are presented. We reproduce the maximal operation temperatures observed and attribute the degradation with temperature to the occupation of parasitic levels and thermal backfilling. Furthermore, we demonstrate that the current injection can be conveniently studied by using states, which combine energy selectivity and spatial localization. Improving the injection allows achievement of higher maximal operation temperatures around 265 K
© 2017 Author(s). The mechanisms that limit the temperature performance of diagonal GaAs/Al0.15GaAs0...
We present a novel terahertz (THz) quantum cascade laser (QCL) design where Γ-valley states are used...
This work presents the result of a simulation of thermal processes in a terahertz quantum cascade la...
The two main design schemes for Terahertz quantum cascade lasers, based on tunnelling and scattering...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
The density matrix based model is employed to design a THz quantum cascade laser with optimized osci...
Quantum cascade lasers (QCL’s) employ the mid- and far-infrared intersubband ra-diative transitions ...
We demonstrate a terahertz quantum-cascade laser (QCL) operating significantly above the temperature...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
A new temperature performance record of 199.5 K for terahertz quantum cascade lasers is achieved by ...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
A new temperature performance record of 199.5 K for terahertz quantum cascade lasers is achieved by ...
We report operation of v ~ 2.7 THz quantum-cascade lasers (QCLs) up to 174 K. A new three-well activ...
© 2017 Author(s). The mechanisms that limit the temperature performance of diagonal GaAs/Al0.15GaAs0...
We present a novel terahertz (THz) quantum cascade laser (QCL) design where Γ-valley states are used...
This work presents the result of a simulation of thermal processes in a terahertz quantum cascade la...
The two main design schemes for Terahertz quantum cascade lasers, based on tunnelling and scattering...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
The density matrix based model is employed to design a THz quantum cascade laser with optimized osci...
Quantum cascade lasers (QCL’s) employ the mid- and far-infrared intersubband ra-diative transitions ...
We demonstrate a terahertz quantum-cascade laser (QCL) operating significantly above the temperature...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
A new temperature performance record of 199.5 K for terahertz quantum cascade lasers is achieved by ...
We report two different terahertz (THz) quantum cascade lasers based on bound-to-continuum transitio...
A new temperature performance record of 199.5 K for terahertz quantum cascade lasers is achieved by ...
We report operation of v ~ 2.7 THz quantum-cascade lasers (QCLs) up to 174 K. A new three-well activ...
© 2017 Author(s). The mechanisms that limit the temperature performance of diagonal GaAs/Al0.15GaAs0...
We present a novel terahertz (THz) quantum cascade laser (QCL) design where Γ-valley states are used...
This work presents the result of a simulation of thermal processes in a terahertz quantum cascade la...