Quantum well solar cells (QWSCs) are heterostructure devices intended to achieve higher efficiencies than conventional cells. This paper extends a previous model for QWSC current–voltage characteristics by revising the equations for the absorbed flux and by introducing expressions to calculate radiative recombination coefficients and well effective densities-of-states. This revised model is in agreement with previous experimental results for AlGaAs/GaAs. Since the revised model incorporates detailed balance calculations, its predictions are consistent with the efficiency restrictions of this theory. The revised model, however, does predict efficiency enhancements for QWSCs in some configurations if non-radiative recombination is dominant, e...
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
International audienceThe III–V semiconductor materials provide a range of opto-electronic propertie...
Abstract:- We explore the relation between photogeneration and recombination currents in an illumina...
Quantum well solar cells (QWSCs) are heterostructure devices intended to achieve higher efficiencies...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
This paper presents results of numerical simulations of GaAs solar cells with quantum wells (QWs) in...
In this paper the modelling ofthe reflectivity of two quantum well solar cells (QWSC) are theoretica...
In this paper the modelling of the refractive index and reflectivity of a quantum well solar cell (Q...
This paper deals with a AlGaAs/GaAs p-i-n quantum well solar cell. The doped region are based on AlG...
In this paper, the effectiveness of a new model used to design ideal quantum well solar cells (QWSC)...
Multi Quantum Well Solar Cell is an advanced improvement of the conventional solar cell to overcome ...
We examine the possibility of using gallium arsenide (GaAs) quantum wells, which have significantly ...
A model of strain balanced quantum well solar cells is presented, together with a high efficiency de...
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
International audienceThe III–V semiconductor materials provide a range of opto-electronic propertie...
Abstract:- We explore the relation between photogeneration and recombination currents in an illumina...
Quantum well solar cells (QWSCs) are heterostructure devices intended to achieve higher efficiencies...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
This paper presents results of numerical simulations of GaAs solar cells with quantum wells (QWs) in...
In this paper the modelling ofthe reflectivity of two quantum well solar cells (QWSC) are theoretica...
In this paper the modelling of the refractive index and reflectivity of a quantum well solar cell (Q...
This paper deals with a AlGaAs/GaAs p-i-n quantum well solar cell. The doped region are based on AlG...
In this paper, the effectiveness of a new model used to design ideal quantum well solar cells (QWSC)...
Multi Quantum Well Solar Cell is an advanced improvement of the conventional solar cell to overcome ...
We examine the possibility of using gallium arsenide (GaAs) quantum wells, which have significantly ...
A model of strain balanced quantum well solar cells is presented, together with a high efficiency de...
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
International audienceThe III–V semiconductor materials provide a range of opto-electronic propertie...
Abstract:- We explore the relation between photogeneration and recombination currents in an illumina...