A computational model for the optimization of the second order optical nonlinearities in GaInAs/AlInAs quantum cascade laser structures is presented. The set of structure parameters that lead to improved device performance was obtained through the implementation of the Genetic Algorithm. In the following step, the linear and second harmonic generation power were calculated by self-consistently solving the system of rate equations for carriers and photons. This rate equation system included both stimulated and simultaneous double photon absorption processes that occur between the levels relevant for second harmonic generation, and material-dependent effective mass, as well as band nonparabolicity, were taken into account. The developed metho...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.64.021403.We ...
Quantum information technologies require reliable sources of correlated/entangled photons. To reali...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...
Regardless of the huge advances made in the design and fabrication of mid-infrared and terahertz qua...
An automated design approach using an evolutionary algorithm for the development of quantum cascade ...
We present a method for systematic optimization of quantum cascade laser active region, based on the...
Evolutionary computation is a set of optimization algorithms that use the basic processes of Darwini...
The optimal design for infrared second harmonic generation (SHG) is determined for a GaAs-based quan...
We explore the possibilities of using advanced tools for global optimization, namely the genetic alg...
An advanced strategy for the optimal design and realization of a GaAs/AlGaAs quantum-cascade laser i...
We present an advanced technique for the design and optimization of GaAs/AlGaAs quantum cascade lase...
Achieving high power, continuous wave, room temperature operation of midinfrared (3-5 um) lasers is ...
A novel simulation strategy is proposed for searching for semiconductor quantum devices that are opt...
This paper presents a numerical optimization of an optical filter through a genetic algorithms (GA) ...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.64.021403.We ...
Quantum information technologies require reliable sources of correlated/entangled photons. To reali...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...
Regardless of the huge advances made in the design and fabrication of mid-infrared and terahertz qua...
An automated design approach using an evolutionary algorithm for the development of quantum cascade ...
We present a method for systematic optimization of quantum cascade laser active region, based on the...
Evolutionary computation is a set of optimization algorithms that use the basic processes of Darwini...
The optimal design for infrared second harmonic generation (SHG) is determined for a GaAs-based quan...
We explore the possibilities of using advanced tools for global optimization, namely the genetic alg...
An advanced strategy for the optimal design and realization of a GaAs/AlGaAs quantum-cascade laser i...
We present an advanced technique for the design and optimization of GaAs/AlGaAs quantum cascade lase...
Achieving high power, continuous wave, room temperature operation of midinfrared (3-5 um) lasers is ...
A novel simulation strategy is proposed for searching for semiconductor quantum devices that are opt...
This paper presents a numerical optimization of an optical filter through a genetic algorithms (GA) ...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.64.021403.We ...
Quantum information technologies require reliable sources of correlated/entangled photons. To reali...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...