Single-pixel imaging with heralded single photons

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Abstract

Traditional remote sensing applications are often based on pulsed laser illumination with a narrow linewidth and characteristic repetition rate, which are not conducive to covert operation. Whatever methods are employed for covert sensing, a key requirement is for the probe light to be indistinguishable from background illumination. We present a method to perform single-pixel imaging that suppresses the effect of background light and hence improves the signal-to-noise ratio by using correlated photon-pairs produced via spontaneous parametric down conversion. One of the photons in the pair is used to illuminate the object whilst the other acts as a temporal reference, allowing the signal photons to be distinguished from background noise. Understanding the noise regime is key to producing higher contrast images using this heralding method.

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Johnson, S., McMillan, A., Torre, C., Frick, S., Rarity, J., & Padgett, M. (2022). Single-pixel imaging with heralded single photons. Optics Continuum, 1(4), 826–833. https://doi.org/10.1364/OPTCON.458248

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