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Imaging through noise with quantum illumination

T. Gregory, P.-A. Moreau, E. Toninelli, M. J. Padgett

2020Science Advances170 citationsDOIOpen Access PDF

Abstract

The contrast of an image can be degraded by the presence of background light and sensor noise. To overcome this degradation, quantum illumination protocols have been theorized that exploit the spatial correlations between photon pairs. Here, we demonstrate the first full-field imaging system using quantum illumination by an enhanced detection protocol. With our current technology, we achieve a rejection of background and stray light of up to 5.8 and also report an image contrast improvement up to a factor of 11, which is resilient to both environmental noise and transmission losses. The quantum illumination protocol differs from usual quantum schemes in that the advantage is maintained even in the presence of noise and loss. Our approach may enable laboratory-based quantum imaging to be applied to real-world applications where the suppression of background light and noise is important, such as imaging under low photon flux and quantum LIDAR.

Topics & Concepts

Quantum imagingPhysicsNoise (video)PhotonQuantum noiseQuantumOpticsQuantum sensorStray lightTransmission (telecommunications)Shot noiseGhost imagingBackground noiseContrast (vision)Image sensorImage qualityNonclassical lightImage noiseQuantum dotNoise floorQuantum opticsQuantum stateOptoelectronicsQuantum channelImage (mathematics)Quantum technologyPhoton countingNoise reductionMechanical and Optical ResonatorsNear-Field Optical MicroscopyRandom lasers and scattering media
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