论文标题

量子相关性的脆弱性和在多部分光子系统中的连贯性

Fragility of quantum correlations and coherence in a multipartite photonic system

论文作者

Cao, Huan, Radhakrishnan, Chandrashekar, Su, Ming, Ali, Md. Manirul, Zhang, Chao, Huang, Y. F., Byrnes, Tim, Li, Chuangfeng, Guo, Guang-Can

论文摘要

正如施罗丁格(Schrodinger)著名的Gedanken Cat实验所说明的那样,某些量子状态众所周知,在破裂的情况下特别脆弱。最近,更好地理解的是,量子状态可以通过量子量的层次结构(例如纠缠,量子相关性和量子相干性)进行表征。已经猜想,这些量中的每一个都有不同程度的脆弱性,在存在逆转录的情况下。在这里,我们通过准备三方光子状态并使它们受到控制量来确认这种猜想。当将dephasing应用于所有量子位时,我们发现纠缠是最脆弱的数量,其次是量子相干性,然后是相互信息。这与普遍认为的多部分量子相关性是量子性的高度脆弱的表现。我们还对Star和$ W \ bar {w} $状态的三个量子位中的一个进行了处理。在这里,与dephasing位置有关的状态相关性和连贯性的分布变得越来越重要。

Certain quantum states are well-known to be particularly fragile in the presence of decoherence, as illustrated by Schrodinger's famous gedanken cat experiment. It has been better appreciated more recently that quantum states can be characterized in a hierarchy of quantum quantities such entanglement, quantum correlations, and quantum coherence. It has been conjectured that each of these quantities have various degrees of fragility in the presence of decoherence. Here we experimentally confirm this conjecture by preparing tripartite photonic states and subjecting them to controlled amounts of dephasing. When the dephasing is applied to all the qubits, we find that the entanglement is the most fragile quantity, followed by the quantum coherence, then mutual information. This is in agreement with the widely held expectation that multipartite quantum correlations are a highly fragile manifestation of quantumness. We also perform dephasing on one out of the three qubits on star and $ W \bar{W} $ states. Here the distribution of the correlations and coherence in the state becomes more important in relation to the dephasing location.

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