论文标题
可预测性,可区分性和纠缠
Predictability, Distinguishability and Entanglement
论文作者
论文摘要
最近,研究活动的突变集中在使用纠缠或极化“完成”某些波粒二元关系。这些研究使用涉及路径可预测性的二元性关系,而不是路径可区分性。这些结果的量子起源在此处探讨了多径量子干扰的更一般框架。理论上分析了对路径检测器的多径干扰,以找到可预测性和可区分性之间的联系。结果表明,纠缠是定量将区分性与可预测性联系起来的原因。因此,区分性和连贯性之间的二元性关系也可以看作是可预测性,纠缠和连贯性之间的试验性。文献中存在两种不同类型的二元关系,它们与有或没有路径检测器的两种不同类型的干扰实验有关。这项研究的结果表明,两个双重关系通过纠缠定量连接。可以根据这项工作来理解经典光学结构域(包括极化相干定理)的新结果的根源。另外,在具有内部自由度的量子元素的有趣情况下,获得的试验关系可以量化波粒二元性。该关系也可以用于实验确定两部分纠缠的程度。
Recent times have seen a spurt of research activity focused on "completing" certain wave-particle duality relations using entanglement or polarization. These studies use a duality relation involving path-predictability, and not path-distinguishability. Quantum origins of these results are explored here, in the more general framework of multipath quantum interference. Multipath interference with a path-detector is theoretically analyzed to find the connection between predictability and distinguishability. It is shown that entanglement is what quantitatively connects distinguishability with predictability. Thus, a duality relation between distinguishability and coherence, can also be viewed as a triality between predictability, entanglement and coherence. There exist two different kind of duality relations in the literature, which pertain to two different kinds of interference experiments, with or without a path-detector. Results of this study show that the two duality relations are quantitatively connected via entanglement. The roots of the new results in the classical optical domain, including the polarization coherence theorem, can be understood in the light of this work. Additionally, the triality relations obtained can quantify wave-particle duality in the interesting case of a quanton with an internal degree of freedom. The relations can also be employed to experimentally determine the degree of bipartite entanglement.