A bound-to-continuum quantum well solar cell structure is proposed, and the band structure and absorption spectra are analyzed by the use of an eight band k⋅p model. The structure is based on quantum wells that only support bound states for the valence band. The absence of bound conduction band states has a number of potential advantages, including a reduction of electron trapping and, therefore, a reduction of quantum well induced photocarrier recombination due to reduced spatial overlap of the electron and hole wavefunctions.Thanks are due to the Australian Research Council for the financial support of this research
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of...
In an attempt to find the optimum number of wells for maximum conversion efficiency a pair of otherw...
[EN] The band gap of the quantum well (QW) solar cell can be adapted to the incident spectral condit...
The effects of carrier escape from quantum well (QW) and the interaction of hot electrons with cryst...
Based on electronic quantum transport modeling, we study the transition between the intermediate-ban...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
We review designs of a solar cell constructed from pn junctions, quantum dots and quantum wells. In ...
In order for photovoltaic energy conversion to compete with conventional energy sources and become a...
International audienceAbsolute electroluminescence and photoluminescence measurements have been carr...
The optical absorption of a p-i-n solar cell may be increased by incorporating quantum well layers i...
An alternative multi-bandgap solar cell made of diffused quantum well (DFQW) as the absorber is prop...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
Multi Quantum Well Solar Cell is an advanced improvement of the conventional solar cell to overcome ...
In this work, a GaAs-based quantum well solar cell with a 25-layer InAs/GaAs intermediate layer is s...
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of...
In an attempt to find the optimum number of wells for maximum conversion efficiency a pair of otherw...
[EN] The band gap of the quantum well (QW) solar cell can be adapted to the incident spectral condit...
The effects of carrier escape from quantum well (QW) and the interaction of hot electrons with cryst...
Based on electronic quantum transport modeling, we study the transition between the intermediate-ban...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
We review designs of a solar cell constructed from pn junctions, quantum dots and quantum wells. In ...
In order for photovoltaic energy conversion to compete with conventional energy sources and become a...
International audienceAbsolute electroluminescence and photoluminescence measurements have been carr...
The optical absorption of a p-i-n solar cell may be increased by incorporating quantum well layers i...
An alternative multi-bandgap solar cell made of diffused quantum well (DFQW) as the absorber is prop...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
Multi Quantum Well Solar Cell is an advanced improvement of the conventional solar cell to overcome ...
In this work, a GaAs-based quantum well solar cell with a 25-layer InAs/GaAs intermediate layer is s...
A self-consistent numerical Poisson-Schrödinger-drift-diffusion solver is described for simulation o...
Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of...
In an attempt to find the optimum number of wells for maximum conversion efficiency a pair of otherw...