We present a qualitative method for series resistance imaging that generates lateral current flow in solar cells without electrical contacting. The applicability of the method is demonstrated on a multicrystalline silicon solar cell, and the results are briefly discussed with respect to lifetime artifacts and injection dependence of the series resistance distribution. The method overcomes one of the major drawbacks of state-of-the-art series resistance imaging methods, which require electrical contacting for current injection or extraction. It allows for all-contactless measurements, reduces the cell breakage rate, and simplifies the measurement setup and sample handling
A new and simple technique to evaluate the series resistance of a solar cell is described. This proc...
We present a comprehensive overview over infrared imaging techniques for (electrical) silicon solar ...
A method for spatially resolved series resistance measurements of Ga0.5In0.5P/Ga(In)As/Ge triple-jun...
Conventional series resistance imaging methods require electrical contacts for current injection or ...
The thesis presents two new imaging measurement methods to measure the effective series resistance a...
Next-generation highest efficiency silicon solar cells are often designed with elaborate doping and ...
A contactless effective series resistance imaging method for large area perovskite solar cells that ...
Two operation modes of lock-in thermography are introduced to detect regions of high series resistan...
AbstractWe have investigated the spatially resolved series resistance Rser of multicrystalline silic...
A technique for fast quantitative determination of the different terms contributing to series resist...
In this work the applicability of the recently proposed luminescence based series resistance measure...
A method to measure the series resistance of Ga0.5In0.5P/Ga(In)As/Ge triple-junction solar cells spa...
Luminescence imaging has found wide application for the characterization of silicon solar cells and ...
Luminescence images of silicon solar cells contain information about local recombination properties ...
We present a comprehensive overview over infrared imaging techniques for (electrical) silicon solar ...
A new and simple technique to evaluate the series resistance of a solar cell is described. This proc...
We present a comprehensive overview over infrared imaging techniques for (electrical) silicon solar ...
A method for spatially resolved series resistance measurements of Ga0.5In0.5P/Ga(In)As/Ge triple-jun...
Conventional series resistance imaging methods require electrical contacts for current injection or ...
The thesis presents two new imaging measurement methods to measure the effective series resistance a...
Next-generation highest efficiency silicon solar cells are often designed with elaborate doping and ...
A contactless effective series resistance imaging method for large area perovskite solar cells that ...
Two operation modes of lock-in thermography are introduced to detect regions of high series resistan...
AbstractWe have investigated the spatially resolved series resistance Rser of multicrystalline silic...
A technique for fast quantitative determination of the different terms contributing to series resist...
In this work the applicability of the recently proposed luminescence based series resistance measure...
A method to measure the series resistance of Ga0.5In0.5P/Ga(In)As/Ge triple-junction solar cells spa...
Luminescence imaging has found wide application for the characterization of silicon solar cells and ...
Luminescence images of silicon solar cells contain information about local recombination properties ...
We present a comprehensive overview over infrared imaging techniques for (electrical) silicon solar ...
A new and simple technique to evaluate the series resistance of a solar cell is described. This proc...
We present a comprehensive overview over infrared imaging techniques for (electrical) silicon solar ...
A method for spatially resolved series resistance measurements of Ga0.5In0.5P/Ga(In)As/Ge triple-jun...