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量子与经典符合成像。

Quantum and classical coincidence imaging.

作者信息

Bennink Ryan S, Bentley Sean J, Boyd Robert W, Howell John C

机构信息

The Institute of Optics, University of Rochester, Rochester, New York 14627, USA.

出版信息

Phys Rev Lett. 2004 Jan 23;92(3):033601. doi: 10.1103/PhysRevLett.92.033601. Epub 2004 Jan 22.

Abstract

Coincidence, or ghost, imaging is a technique that uses two correlated optical fields to form an image of an object. In this work we identify aspects of coincidence imaging which can be performed with classically correlated light sources and aspects which require quantum entanglement. We find that entangled photons allow high-contrast, high-resolution imaging to be performed at any distance from the light source. We demonstrate this fact by forming ghost images in the near and far fields of an entangled photon source, noting that the product of the resolutions of these images is a factor of 3 better than that which is allowed by classical diffraction theory.

摘要

符合成像或鬼成像技术是一种利用两个相互关联的光场来形成物体图像的技术。在这项工作中,我们确定了可以用经典关联光源实现的符合成像的各个方面,以及需要量子纠缠的方面。我们发现,纠缠光子能够在距光源的任何距离处实现高对比度、高分辨率成像。我们通过在纠缠光子源的近场和远场中形成鬼图像来证明这一事实,注意到这些图像分辨率的乘积比经典衍射理论所允许的要好3倍。

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