Quantum Imaging
Pushing the Boundaries of Imaging: Unveiling Hidden Details with Quantum Mechanics and Photon Correlations
Quantum imaging uses quantum mechanics to achieve capabilities beyond classical methods. The technique reveals information and phenomena that traditional imaging methods cannot capture.
Quantum imaging techniques, such as ghost imaging and coincidence imaging, use entangled or correlated photon pairs to capture detailed quantum information and phenomena. These methods unveil details and interactions by correlating photons at the quantum level.

Benefits of our translates
for this industry
Single-Photon Sensitivity
Capable of detecting individual photons, crucial for capturing the quanta of light.
Enhanced Resolution
Facilitates the detection of subtle quantum correlations, improving the resolution and detail of quantum imaging results.
High Timing Precision:
Provides picosecond-level timing accuracy, essential for resolving fine details in quantum imaging techniques.
Low-Light Performance
Excels in minimal illumination conditions, ideal for detecting faint quantum signals in ghost and correlation imaging applications.
High Signal-to-Noise Ratio:
Ensures clear and accurate measurements by minimizing noise in single-photon conditions.
Examples / Application Results

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REFERENCES
- Defienne, Hugo, et al. “Full-field quantum imaging with a single-photon avalanche diode camera.” Physical Review A 103.4 (2021): 042608.
- Zhao, Jiuxuan, et al. “Light detection and ranging with entangled photons.” Optics Express 30.3 (2022): 3675-3683.
