International audiencePhoton recycling in strain balanced quantum well solar cells grown on distributed Bragg reflectors has been observed as a suppression of the dark current and a change in electroluminescence spectra. Comparing devices grown with and without distributed Bragg reflectors we have demonstrated up to a 33% reduction in the ideality n = 1 reverse saturation current. Furthermore, to validate the observations we demonstrate how both the measured dark currents and electroluminescence spectra fit very well to a photon recycling model. Verifying our observations with the model then allows us to calculate optimised device designs
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
ingle junction photovoltaic devices composed of direct bandgap III-V semiconductors such as GaAs can...
We review designs of a solar cell constructed from pn junctions, quantum dots and quantum wells. In ...
International audiencePhoton recycling in strain balanced quantum well solar cells grown on distribu...
International audienceAbsolute electroluminescence and photoluminescence measurements have been carr...
Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
The optical absorption of a p-i-n solar cell may be increased by incorporating quantum well layers i...
Very reflective back side reflectors directly below the active region of a solar cell alter the phot...
[EN] The band gap of the quantum well (QW) solar cell can be adapted to the incident spectral condit...
Radiatively dominated III-V semiconductor solar cells are strongly influenced by the effects of phot...
A simple model of a homojunction solar cell is improved by taking into account the effect of photon ...
A model of strain balanced quantum well solar cells is presented, together with a high efficiency de...
In an attempt to find the optimum number of wells for maximum conversion efficiency a pair of otherw...
This thesis presents the milestone efficiency of 30.6% under 54x concentration achieved by a monolit...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
ingle junction photovoltaic devices composed of direct bandgap III-V semiconductors such as GaAs can...
We review designs of a solar cell constructed from pn junctions, quantum dots and quantum wells. In ...
International audiencePhoton recycling in strain balanced quantum well solar cells grown on distribu...
International audienceAbsolute electroluminescence and photoluminescence measurements have been carr...
Strain-balanced quantum well solar cells (SB-QWSCs) extend the photon absorption edge beyond that of...
International audienceThe analytical modelling of bulk and quantum well solar cells is reviewed. The...
The optical absorption of a p-i-n solar cell may be increased by incorporating quantum well layers i...
Very reflective back side reflectors directly below the active region of a solar cell alter the phot...
[EN] The band gap of the quantum well (QW) solar cell can be adapted to the incident spectral condit...
Radiatively dominated III-V semiconductor solar cells are strongly influenced by the effects of phot...
A simple model of a homojunction solar cell is improved by taking into account the effect of photon ...
A model of strain balanced quantum well solar cells is presented, together with a high efficiency de...
In an attempt to find the optimum number of wells for maximum conversion efficiency a pair of otherw...
This thesis presents the milestone efficiency of 30.6% under 54x concentration achieved by a monolit...
Some years ago Multiple Quantum Wells (MQW) solar cells were introduced as an alternative to obtain ...
ingle junction photovoltaic devices composed of direct bandgap III-V semiconductors such as GaAs can...
We review designs of a solar cell constructed from pn junctions, quantum dots and quantum wells. In ...