We present a simple method to quantify the magnitude of luminescent coupling (LC) between stacked subcells in multijunction photovoltaic devices. The effect of luminescence produced at high-band-gap subcells on underlying low-gap units within the same device can be directly accessed as a measurable open-circuit voltage difference by comparing two photovoltage spectra. Additionally, our study unambiguously identifies LC as the modulation mechanism across multijunction solar cells generating a response from buried subcells in photoreflectance measurements
Historically, light absorption and emission has long been of broad interest in photovoltaic research...
In multi junction devices, due to the series connection of junctions, recombination current from the...
It is well known that the response of any photovoltaic solar cell is dependent on the spectral chara...
We present a simple method to quantify the magnitude of luminescent coupling (LC) between stacked su...
We present a simple method to quantify the magnitude of luminescent coupling (LC) between stacked su...
Luminescent coupling effects are considered crucial for the performance of multijunction solar cells...
We investigate the luminescent coupling (LC) effects in a four-junction GaInP/GaAs//GaInAsP/GaInAs c...
The performance of tandem stacks of Group III-V multijunction solar cells continues to improve rapid...
A method for the determination of the subcell I-V characteristics of multijunction solar cells in th...
The open circuit voltages Voc of individual subcells in a multijunction solar cell are measured by i...
Electric coupling between subcells of a monolithically grown multijunction solar cell in short circu...
Inverted metamorphic multi-junction solar cells have reached efficiencies close to 46%. These solar ...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
In-situ characterization is one of the most powerful techniques to improve material quality and devi...
Historically, light absorption and emission has long been of broad interest in photovoltaic research...
In multi junction devices, due to the series connection of junctions, recombination current from the...
It is well known that the response of any photovoltaic solar cell is dependent on the spectral chara...
We present a simple method to quantify the magnitude of luminescent coupling (LC) between stacked su...
We present a simple method to quantify the magnitude of luminescent coupling (LC) between stacked su...
Luminescent coupling effects are considered crucial for the performance of multijunction solar cells...
We investigate the luminescent coupling (LC) effects in a four-junction GaInP/GaAs//GaInAsP/GaInAs c...
The performance of tandem stacks of Group III-V multijunction solar cells continues to improve rapid...
A method for the determination of the subcell I-V characteristics of multijunction solar cells in th...
The open circuit voltages Voc of individual subcells in a multijunction solar cell are measured by i...
Electric coupling between subcells of a monolithically grown multijunction solar cell in short circu...
Inverted metamorphic multi-junction solar cells have reached efficiencies close to 46%. These solar ...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
In-situ characterization is one of the most powerful techniques to improve material quality and devi...
Historically, light absorption and emission has long been of broad interest in photovoltaic research...
In multi junction devices, due to the series connection of junctions, recombination current from the...
It is well known that the response of any photovoltaic solar cell is dependent on the spectral chara...