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A Normal Camera That Can Detect Solar Cell Efficiency

  • September 22, 2026
  • Journal of Applied Physics
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With very few modifications, it’s easy for a commercial camera to capture electroluminescence images of solar cells.

From the Journal: Journal of Applied Physics

The researchers presented a methodology to use a commercially available camera to measure solar cell efficiency. Credit: Werner et al.
The researchers presented a methodology to use a commercially available camera to measure solar cell efficiency. Credit: Werner et al.

WASHINGTON, Sept. 22, 2026 — Commercial cameras can be powerful, producing images with exquisite details that mimic real life. In the lab, specially designed cameras can photograph objects in the infrared region, invisible to the naked eye.

In The Journal of Applied Physics, by AIP Publishing, researchers from the University of Stuttgart, the Research Center Jülich, and the German company Solarzentrum Stuttgart modified a commercially available camera for something usually done in the lab: measuring the electroluminescence of solar cells.

Electroluminescent quantum efficiency is commonly used to determine the efficiency of solar cells. The value is directly related to the cell’s voltage, and, generally speaking, the higher the luminescent quantum efficiency, the better the solar cell. It’s also normal to measure this value with a camera — albeit an expensive, industrial camera that must be carefully calibrated.

“Our approach shows that even a relatively inexpensive consumer camera can provide quantitative results when its physical response is properly modeled and calibrated,” said author Jürgen Werner.

The camera they used was already primed for their experiment since it lacked an internal infrared-blocking film, something that is normally present in most commercial cameras. These modified cameras can also be used for artistic infrared photography or photos of the night sky.

The researchers added a long-pass filter in front of the camera lens to decrease visible background light, providing an infrared electroluminescence image that could later be analyzed based on brightness.

“An electroluminescence image contains much more quantitative information than simply showing bright and dark regions,” said Werner. “With a suitable physical camera model and calibration, it can provide absolute luminescent quantum efficiency and, therefore, information about the local quality of a solar cell or module.”

The researchers plan to expand the camera’s capabilities in future work, keeping an emphasis on using commercially available technology.

“Our next step is to use the calibrated camera to determine quantum efficiencies and open-circuit voltages of further, previously uncharacterized solar cells and modules,” Werner said. “The same model should also be applicable to photoluminescence measurements and potentially to measurements performed in daylight.”

The article “New camera model for absolute quantum efficiency measurements from electroluminescence of solar cells or modules” is authored by Jürgen H. Werner, Georgette Udo, and Liviu Stoicescu. It will appear in The Journal of Applied Physics on Sept. 22, 2026 (DOI: 10.1063/5.0349589). After that date, it can be accessed at https://doi.org/10.10.1063/5.0349589.

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Article Title

New camera model for absolute quantum efficiency measurements from electroluminescence of solar cells or modules

Authors

Jürgen H. Werner, Georgette Udo, and Liviu Stoicescu

Author Affiliations

University of Stuttgart, Forschungszentrum Julich, Solarzentrum Stuttgart


Journal of Applied Physics

Journal of Applied Physics is an influential international journal publishing significant new experimental and theoretical results of applied physics research.

http://jap.aip.org/

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