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- W2920886919 startingPage "347" @default.
- W2920886919 abstract "The spatial resolution of an optical system is limited by diffraction. Various schemes have been proposed to achieve resolution enhancement by employing either a scanning source/detector configuration or a two-photon response of the object. Here, we experimentally demonstrate a full-field resolution-enhancing scheme, based on the centroid estimation of spatially quantum-correlated biphotons. Our standard-quantum-limited scheme is able to image a general non-fluorescing object, using low-energy and low-intensity infrared illumination (i.e., with <0.001 photon per pixel per frame at 710 nm), achieving 41% of the theoretically available resolution enhancement. Images of real-world objects are shown for visual comparison, in which the classically bound resolution is surpassed using our technically straightforward quantum-imaging scheme." @default.
- W2920886919 created "2019-03-22" @default.
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- W2920886919 date "2019-03-11" @default.
- W2920886919 modified "2023-10-18" @default.
- W2920886919 title "Resolution-enhanced quantum imaging by centroid estimation of biphotons" @default.
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- W2920886919 doi "https://doi.org/10.1364/optica.6.000347" @default.
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