Terahertz frequency quantum cascade lasers offer a potentially vast number of new applications. To better understand and apply these lasers, a device-specific modeling method was developed that realistically predicts optical output power under changing current drive and chip temperature. Model parameters are deduced from the self-consistent solution of a full set of rate equations, obtained from energy-balance Schro ̈dinger-Poisson scattering transport calculations. The model is thus derived from first principles, based on the device structure, and is therefore not a generic or phenomenological model that merely imitates expected device behavior. By fitting polynomials to data arrays representing the rate equation parameters, we are able to...
We describe a new approach to modelling the optoelectronic properties of a terahertz-frequency quant...
This thesis focuses on various aspects in terahertz quantum cascade lasers such as high temperature ...
The philosophy behind this work has been to build a predictive bottom up physical model of quantum c...
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...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
There is a need for a model that accurately describes dynamics of a bound-to-continuum terahertz qua...
Recent research shows that terahertz quantum cascade lasers are well-suited to high speed free space...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
The state of the art terahertz-frequency quantum cascade lasers have opened a plethora of applicatio...
The development of a thermal model for quantum cascade lasers (QCLs) is presented. The model is used...
We describe a new approach to modelling the optoelectronic properties of a terahertz-frequency quant...
This thesis focuses on various aspects in terahertz quantum cascade lasers such as high temperature ...
The philosophy behind this work has been to build a predictive bottom up physical model of quantum c...
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...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
There is a need for a model that accurately describes dynamics of a bound-to-continuum terahertz qua...
Recent research shows that terahertz quantum cascade lasers are well-suited to high speed free space...
Terahertz-frequency quantum cascade lasers (THz QCLs) based on bound-to-continuum active regions are...
Intersubband electron scattering transport in terahertz GaAs–AlGaAs quantum cascade lasers is analyz...
The portion of the electromagnetic spectrum between roughly 300 GHz and 10 THz is nicknamed the "THz...
The state of the art terahertz-frequency quantum cascade lasers have opened a plethora of applicatio...
The development of a thermal model for quantum cascade lasers (QCLs) is presented. The model is used...
We describe a new approach to modelling the optoelectronic properties of a terahertz-frequency quant...
This thesis focuses on various aspects in terahertz quantum cascade lasers such as high temperature ...
The philosophy behind this work has been to build a predictive bottom up physical model of quantum c...