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Beating classical imaging limits with entangled photons

机译:用缠结的光子跳动古典成像限制

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摘要

How can quantum mechanics deliver better imaging performance? Parametric down-conversion sources produce pairs ofphotons that are correlated in many degrees of freedom, including their spatial positions. By using a camera to detectthese pairs of photons it is possible configure imaging systems that can either beat the classical resolution limit or theclassical noise limit. We demonstrate how a simple down-conversion source based on a laser and non-linear crystal canbe combined with an EMCCD camera to achieve either of these outcomes. Firstly, when both photons pass through thesample, we show a full-field, resolution-enhancing scheme, based on the centroid estimation of the photon pairs. Byoptimising the software control of the EMCCD camera running in the photon-sparse regime we achieve a resolutionenhancement over the equivalent classical limit. Secondly, we show a similar scheme but where only one of the twophotons pass through the sample and the other acts as a reference, in this case the ratio of the two resulting imageseliminates the background noise of the camera, and background light, achieving an increase in image contrast.
机译:量子力学如何提供更好的成像性能?参数下转换源产生对在许多自由度中相关的光子,包括它们的空间位置。通过使用相机来检测这些光子对可以配置成像系统,可以击败经典分辨率限制或经典噪声限制。我们展示了基于激光和非线性水晶的简单下转换源的方式与EMCCD相机结合起来达到这些结果中的任何一种。首先,当两个光子穿过时样本,我们展示了一个全场,分辨率增强方案,基于光子对的质心估计。经过优化在光子稀疏状态下运行的EMCCD摄像机的软件控制我们实现了分辨率增强相同的经典极限。其次,我们展示了类似的方案,但只有两个中的一个光子通过样品,另一个作为参考,在这种情况下,两个得到的图像的比率消除了相机的背景噪声和背景光,实现了图像对比度的增加。

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