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光学角-轨道角动量变量中的量子关联。

Quantum correlations in optical angle-orbital angular momentum variables.

机构信息

Department of Physics and Astronomy, Scottish Universities Physics Alliance (SUPA), University of Glasgow, Glasgow, G12 8QQ, UK.

出版信息

Science. 2010 Aug 6;329(5992):662-5. doi: 10.1126/science.1190523.

Abstract

Entanglement of the properties of two separated particles constitutes a fundamental signature of quantum mechanics and is a key resource for quantum information science. We demonstrate strong Einstein, Podolsky, and Rosen correlations between the angular position and orbital angular momentum of two photons created by the nonlinear optical process of spontaneous parametric down-conversion. The discrete nature of orbital angular momentum and the continuous but periodic nature of angular position give rise to a special sort of entanglement between these two variables. The resulting correlations are found to be an order of magnitude stronger than those allowed by the uncertainty principle for independent (nonentangled) particles. Our results suggest that angular position and orbital angular momentum may find important applications in quantum information science.

摘要

两个分离粒子的属性纠缠构成了量子力学的基本特征,也是量子信息科学的关键资源。我们展示了由自发参量下转换的非线性光学过程产生的两个光子的角位置和轨道角动量之间的强爱因斯坦、波多尔斯基和罗森相关性。轨道角动量的离散性质和角位置的连续但周期性性质导致了这两个变量之间的一种特殊纠缠。结果发现,这些相关性比独立(非纠缠)粒子的不确定原理允许的要强一个数量级。我们的结果表明,角位置和轨道角动量可能在量子信息科学中有重要的应用。

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