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纠缠激光束的空间特性。

Entangling the spatial properties of laser beams.

作者信息

Wagner Katherine, Janousek Jiri, Delaubert Vincent, Zou Hongxin, Harb Charles, Treps Nicolas, Morizur Jean François, Lam Ping Koy, Bachor Hans A

机构信息

Australian Research Council Centre of Excellence for Quantum-Atom Optics, Australian National University, Canberra ACT 0200, Australia.

出版信息

Science. 2008 Jul 25;321(5888):541-3. doi: 10.1126/science.1159663.

Abstract

Position and momentum were the first pair of conjugate observables explicitly used to illustrate the intricacy of quantum mechanics. We have extended position and momentum entanglement to bright optical beams. Applications in optical metrology and interferometry require the continuous measurement of laser beams, with the accuracy fundamentally limited by the uncertainty principle. Techniques based on spatial entanglement of the beams could overcome this limit, and high-quality entanglement is required. We report a value of 0.51 for inseparability and 0.62 for the Einstein-Podolsky-Rosen criterion, both normalized to a classical limit of 1. These results are a conclusive optical demonstration of macroscopic position and momentum quantum entanglement and also confirm that the resources for spatial multimode protocols are available.

摘要

位置和动量是最早被明确用于阐释量子力学复杂性的一对共轭可观测量。我们已将位置和动量纠缠扩展至明亮光束。光学计量学和干涉测量中的应用需要对激光束进行连续测量,其精度从根本上受到不确定性原理的限制。基于光束空间纠缠的技术可以克服这一限制,并且需要高质量的纠缠。我们报告了不可分离性的值为0.51,爱因斯坦 - 波多尔斯基 - 罗森判据的值为0.62,两者均相对于经典极限值1进行了归一化。这些结果是宏观位置和动量量子纠缠的确凿光学证明,也证实了空间多模协议的资源是可用的。

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