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Quantum physics: Entangled quartet

机译:量子物理学:纠缠四重奏

摘要

When light passes through two slits to hit a distant screen, a periodic light pattern emerges that is associated with the interference of the waves emanating from the two sources. Some of quantum physics’ deepest mysteries – or, according to the iconic Richard Feynman, its only mystery – arise when that observation is made with a single particle that, although indivisible, must have passed simultaneously through both slits. Recent advances in the storage of single photons in atomic gases [1] have now enabled a tour-de-force experiment that investigates interference with light stored simultaneously in four spatially distinct atom clouds, as reported on p. xxx of this issue. Chou et al. demonstrate stronger-than-classical correlations (entanglement) in this composite matter-light system, and study how the entanglement gives way to weaker and weaker, and ultimately only classical, correlations.
机译:当光线穿过两个狭缝击中远处的屏幕时,就会出现周期性的光线模式,这与从两个光源发出的波的干扰有关。当用单个粒子进行观察时,尽管它是不可分割的,但必须同时通过两个狭缝,这才是量子物理学中最深的奥秘,或者,根据标志性的理查德·费曼(Richard Feynman),它是唯一的奥秘。单原子光子在原子气体中的存储[1]的最新进展现已启用了反力实验,该实验研究了对同时存储在四个空间不同的原子云中的光的干扰,如第p页中所述。此问题的xxx。 Chou等。证明了在这种复合物-光系统中强于经典的相关性(纠缠),并研究了纠缠如何让位于越来越弱的弱相关性,最终仅是经典相关性。

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    Vuletic Vladan;

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  • 年度 2010
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