Korolkova N, Leuchs G
School of Physics and Astronomy, University of St. Andrews, North Haugh, St. Andrews, Fife, KY16 9SS, Scotland.
Rep Prog Phys. 2019 May;82(5):056001. doi: 10.1088/1361-6633/ab0c6b. Epub 2019 Mar 4.
In this review we discuss intriguing properties of apparently classical optical fields, that go beyond purely classical context and allow us to speak about quantum characteristics of such fields and about their applications in quantum technologies. We briefly define the genuinely quantum concepts of entanglement and steering. We then move to the boarder line between classical and quantum world introducing quantum discord, a more general concept of quantum coherence, and finally a controversial notion of classical entanglement. To unveil the quantum aspects of often classically perceived systems, we focus more in detail on quantum discordant correlations between the light modes and on nonseparability properties of optical vector fields leading to entanglement between different degrees of freedom of a single beam. To illustrate the aptitude of different types of correlated systems to act as quantum or quantum-like resource, entanglement activation from discord, high-precision measurements with classical entanglement and quantum information tasks using intra-system correlations are discussed. The common themes behind the versatile quantum properties of seemingly classical light are coherence, polarization and inter and intra-mode quantum correlations.
在本综述中,我们讨论了看似经典的光场的有趣特性,这些特性超越了纯粹的经典范畴,使我们能够谈论此类光场的量子特性及其在量子技术中的应用。我们简要定义了纠缠和导引这两个真正的量子概念。然后,我们转向经典世界与量子世界的边界线,引入量子失协,这是一个更广义的量子相干概念,最后介绍有争议的经典纠缠概念。为了揭示通常被视为经典的系统的量子方面,我们更详细地关注光模之间的量子失协关联以及导致单束光不同自由度之间纠缠的光学矢量场的不可分离特性。为了说明不同类型的相关系统作为量子或类量子资源的能力,我们讨论了由失协引发的纠缠激活、利用经典纠缠进行的高精度测量以及使用系统内关联的量子信息任务。看似经典的光所具有的多种量子特性背后的共同主题是相干性、偏振以及模间和模内量子关联。