We report, for the first time, about an intermediate band solar cell implemented with InAs/AlGaAs quantum dots whose photoresponse expands from 250 to ~ 6000 nm. To our knowledge, this is the broadest quantum efficiency reported to date for a solar cell and demonstrates that the intermediate band solar cell is capable of producing photocurrent when illuminated with photons whose energy equals the energy of the lowest band gap. We show experimental evidence indicating that this result is in agreement with the theory of the intermediate band solar cell, according to which the generation recombination between the intermediate band and the valence band makes this photocurrent detectable
Current prototypes of quantum-dot intermediate band solar cells suffer from voltage reduction due to...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
Intermediate band solar cells (IBSCs) pursue the increase in efficiency by absorbing below-bandgap e...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
It has been proposed that the use of self-assembled quantum dot (QD) arrays can break the Shockley-Q...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
In this work we report, for the first time at room temperature, experimental results that prove, sim...
In this work we report, for the first time at room temperature, experimental results that prove, sim...
The effect of quantum dot (QD) size on the performance of quantum dot intermediate band solar cells ...
The intermediate-band solar cell is designed to provide a large photogenerated current while maintai...
In the last decade several prototypes of intermediate band solar cells (IBSCs) have been manufacture...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
To achieve high efficiency, the intermediate band (IB) solar cell must generate photocurrent from su...
We report the effect of the quantum dot aspect ratio on the sub-gap absorption properties of GaAs/Al...
Current prototypes of quantum-dot intermediate band solar cells suffer from voltage reduction due to...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
Intermediate band solar cells (IBSCs) pursue the increase in efficiency by absorbing below-bandgap e...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
It has been proposed that the use of self-assembled quantum dot (QD) arrays can break the Shockley-Q...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
In this work we report, for the first time at room temperature, experimental results that prove, sim...
In this work we report, for the first time at room temperature, experimental results that prove, sim...
The effect of quantum dot (QD) size on the performance of quantum dot intermediate band solar cells ...
The intermediate-band solar cell is designed to provide a large photogenerated current while maintai...
In the last decade several prototypes of intermediate band solar cells (IBSCs) have been manufacture...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
To achieve high efficiency, the intermediate band (IB) solar cell must generate photocurrent from su...
We report the effect of the quantum dot aspect ratio on the sub-gap absorption properties of GaAs/Al...
Current prototypes of quantum-dot intermediate band solar cells suffer from voltage reduction due to...
The efficiency of a solar cell can be substantially increased by opening new energy gaps within the ...
Intermediate band solar cells (IBSCs) pursue the increase in efficiency by absorbing below-bandgap e...