C-BLUE 3 PC : a photon counting multimegapixel visible CMOS camera
Jean-Luc Gach, Isaure De Kernier, Philippe Feautrier

TL;DR
This paper introduces a new photon counting CMOS camera capable of multimegapixel imaging in visible light, overcoming previous limitations by reducing readout noise to enable accurate photon detection and multiple photon counting.
Contribution
The paper presents a novel photon counting CMOS sensor that achieves multimegapixel visible imaging with improved photon counting capabilities by lowering readout noise, surpassing prior EMCCD and e-APD technologies.
Findings
Achieved multimegapixel photon counting in visible spectrum.
Demonstrated reduced readout noise enabling multiple photon detection.
Improved photon counting accuracy over existing technologies.
Abstract
The photon counting imaging paradigm in the visible and the infrared comes from the very small energy carried by a single photon at these wavelengths. Usually to detect photons the photoelectric effect is used. It converts a photon to a single electron making it very difficult to detect because of the readout noise of the electronics. To overcome this there are two strategies, either to amplify the signal to make it larger than the readout noise (used in the so called gain or amplified detectors), or to lower the readout noise in a standard image sensor. For a long time, only amplified detectors were able to do some photon counting. Since the first photon counting systems in the visible, developed by Boksenberg and his collaborators in 1972, many groups around the world improved photon counting techniques. In the 2000's in the visible, EMCCDs (electron multiplying charge coupled…
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Taxonomy
TopicsCCD and CMOS Imaging Sensors · Infrared Target Detection Methodologies · Advanced Semiconductor Detectors and Materials
