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Relation of the entanglement entropy and uncertainty product in ground states of coupled anharmonic oscillators

机译:耦合非简谐振子基态的纠缠熵与不确定性积的关系

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We explore quantitatively the fundamental connection between the entropy and local uncertainty product as an entanglement measure within the lowest energy eigenstate of a class of two-coupled anharmonic oscillator systems. We find that these two quantum aspects approach a unique relation as the entanglement between the oscillators becomes large if the potential of the first collective mode displays a generic single-well potential structure. This implies that the uncertainty product can be a good choice for the characterization of entanglement when the entropy is sufficiently large. Interestingly, although this relation is- robust against the anharmonic perturbation, we find that it can be altered effectively by a quantum catastrophe.
机译:我们定量地探索了熵和局部不确定性产物之间的基本联系,作为一类两耦合非谐振荡器系统的最低能量本征态中的纠缠度量。我们发现,如果第一集体模式的电势显示出通用的单阱电势结构,则随着振荡器之间的纠缠变大,这两个量子方面将接近唯一关系。这意味着,当熵足够大时,不确定性乘积可能是表征缠结的好选择。有趣的是,尽管这种关系对非谐扰动是鲁棒的,但我们发现它可以通过量子灾难有效地改变。

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