ingle junction photovoltaic devices composed of direct bandgap III-V semiconductors such as GaAs can exploit the effects of photon recycling to achieve record-high open circuit voltages. Modeling such devices yields insight into the design and material criteria required to achieve high efficiencies. For a GaAs cell to reach 28 % efficiency without a substrate, the Shockley-Read-Hall (SRH) lifetimes of the electrons and holes must be longer than 3 s and 100 ns respectively in a 2 μm thin active region coupled to a very high reflective (>99%) rear-side mirror. The model is generalized to account for luminescence coupling in tandem devices, which yields direct insight into the top cell’s non-radiative lifetimes. A heavily current mismatched Ga...
For solar cells dominated by radiative recombination, the performance can be significantly enhanced ...
In this work, we propose and realize three different design strategies to implement an optical cavit...
For cells near the radiative limit, optically limiting the angles of emitted light causes emitted ph...
Radiatively dominated III-V semiconductor solar cells are strongly influenced by the effects of phot...
In high quality solar cells, the internal luminescence can be harnessed to enhance the overall perfo...
Effects of luminescent coupling are observed in monolithic 5V, five-junction GaAs phototransducers. ...
A simple model of a homojunction solar cell is improved by taking into account the effect of photon ...
Numerical modeling is an invaluable tool in aiding in the analysis and design of semiconductor devic...
Careful electrical design and optical design are both crucial for achieving high-efficiency solar ce...
International audienceThe III–V semiconductor materials provide a range of opto-electronic propertie...
The development of multi-junctions III-V semiconductors solar cells, that combine high conversion ef...
The recent achievement of multi-junctions solar cells, based on III-V semiconductors, exceeding 43% ...
Multijunction (MJ) solar cells have the potential to operate across the entire solar spectrum, for u...
Photon recycling mechanisms in single junction thin-film GaAs solar cells are evaluated in this stud...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
For solar cells dominated by radiative recombination, the performance can be significantly enhanced ...
In this work, we propose and realize three different design strategies to implement an optical cavit...
For cells near the radiative limit, optically limiting the angles of emitted light causes emitted ph...
Radiatively dominated III-V semiconductor solar cells are strongly influenced by the effects of phot...
In high quality solar cells, the internal luminescence can be harnessed to enhance the overall perfo...
Effects of luminescent coupling are observed in monolithic 5V, five-junction GaAs phototransducers. ...
A simple model of a homojunction solar cell is improved by taking into account the effect of photon ...
Numerical modeling is an invaluable tool in aiding in the analysis and design of semiconductor devic...
Careful electrical design and optical design are both crucial for achieving high-efficiency solar ce...
International audienceThe III–V semiconductor materials provide a range of opto-electronic propertie...
The development of multi-junctions III-V semiconductors solar cells, that combine high conversion ef...
The recent achievement of multi-junctions solar cells, based on III-V semiconductors, exceeding 43% ...
Multijunction (MJ) solar cells have the potential to operate across the entire solar spectrum, for u...
Photon recycling mechanisms in single junction thin-film GaAs solar cells are evaluated in this stud...
Multijunction solar cells can be fabricated by mechanically bonding together component cells that ar...
For solar cells dominated by radiative recombination, the performance can be significantly enhanced ...
In this work, we propose and realize three different design strategies to implement an optical cavit...
For cells near the radiative limit, optically limiting the angles of emitted light causes emitted ph...