A method for the determination of the subcell I-V characteristics of multijunction solar cells in the presence of optical coupling is presented and applied to a Ga0.50In0.50P/Ga0.99In0.01As/Ge triple-junction solar cell. Each of the subcells is described by a two-diode model and can be illuminated by a narrowband light source externally. Optical coupling is then used explicitly to generate current in one subcell, which is not illuminated externally. This approach yields the magnitude of optical coupling and a relationship between the two diode parameters of each subcell. The remaining cell parameters are determined with the help of pulsed illumination. In this fashion, the open circuit voltage of individual subcells is accessible, despite t...
This paper presents a method to predict the I-V characteristic of triple junction InGaP/GaAs/Ge sola...
The performance of tandem stacks of Group III-V multijunction solar cells continues to improve rapid...
In-situ characterization is one of the most powerful techniques to improve material quality and devi...
The open circuit voltage of a single subcell in a multijunction cell stack can be measured with the ...
The open circuit voltages Voc of individual subcells in a multijunction solar cell are measured by i...
A combined electroluminescence and photoluminescence setup for a fast, nondestructive, and high-reso...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
Electric coupling between subcells of a monolithically grown multijunction solar cell in short circu...
The degradation of individual subcell J-V parameters, such as short circuit current, open circuit vo...
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...
In this paper, first the different measurement techniques for the I-V parameters of multi-junction s...
It is well known that the response of any photovoltaic solar cell is dependent on the spectral chara...
We investigate the luminescent coupling (LC) effects in a four-junction GaInP/GaAs//GaInAsP/GaInAs c...
Luminescent coupling effects are considered crucial for the performance of multijunction solar cells...
This paper presents a method to predict the I-V characteristic of triple junction InGaP/GaAs/Ge sola...
The performance of tandem stacks of Group III-V multijunction solar cells continues to improve rapid...
In-situ characterization is one of the most powerful techniques to improve material quality and devi...
The open circuit voltage of a single subcell in a multijunction cell stack can be measured with the ...
The open circuit voltages Voc of individual subcells in a multijunction solar cell are measured by i...
A combined electroluminescence and photoluminescence setup for a fast, nondestructive, and high-reso...
We demonstrate a photoluminescence based, contactless method to determine the current-voltage charac...
Electric coupling between subcells of a monolithically grown multijunction solar cell in short circu...
The degradation of individual subcell J-V parameters, such as short circuit current, open circuit vo...
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...
In this paper, first the different measurement techniques for the I-V parameters of multi-junction s...
It is well known that the response of any photovoltaic solar cell is dependent on the spectral chara...
We investigate the luminescent coupling (LC) effects in a four-junction GaInP/GaAs//GaInAsP/GaInAs c...
Luminescent coupling effects are considered crucial for the performance of multijunction solar cells...
This paper presents a method to predict the I-V characteristic of triple junction InGaP/GaAs/Ge sola...
The performance of tandem stacks of Group III-V multijunction solar cells continues to improve rapid...
In-situ characterization is one of the most powerful techniques to improve material quality and devi...