论文标题

在非平衡稳定状态下广泛的远程纠缠

Extensive Long-Range Entanglement in a Nonequilibrium Steady State

论文作者

Fraenkel, Shachar, Goldstein, Moshe

论文摘要

纠缠措施构成了量子多体系统的定量描述,构成了强大的工具。我们研究了在散射器存在下,在零温度下,在零温度下的非互动费米子的范式一维模型的纠缠稳定状态。我们表明,位于散射器的相对侧的脱节间隔,并且在与之相似的距离内,无论其分离如何,都会保持体积法律纠缠,如其费米子的负性和相干信息所衡量。量化它们之间的总相关性的间隔的相互信息遵循类似的缩放。有趣的是,这种缩放尤其需要特别是,如果将一个间隔的位置保持固定,则相关度量在非单调方面取决于间隔之间的距离。通过得出这些数量的广泛术语的精确表达式,我们证明了它们对散射概率的简单功能依赖性,并证明强大的远程纠缠是由于偏置电压窗口内传播颗粒的传播和反射部分之间的相干性而产生的。该模型的一般性和简单性表明,这种行为应表征一大类非平衡稳态状态。

Entanglement measures constitute powerful tools in the quantitative description of quantum many-body systems out of equilibrium. We study entanglement in the current-carrying steady state of a paradigmatic one-dimensional model of noninteracting fermions at zero temperature in the presence of a scatterer. We show that disjoint intervals located on opposite sides of the scatterer, and within similar distances from it, maintain volume-law entanglement regardless of their separation, as measured by their fermionic negativity and coherent information. The mutual information of the intervals, which quantifies the total correlations between them, follows a similar scaling. Interestingly, this scaling entails in particular that if the position of one of the intervals is kept fixed, then the correlation measures depend non-monotonically on the distance between the intervals. By deriving exact expressions for the extensive terms of these quantities, we prove their simple functional dependence on the scattering probabilities, and demonstrate that the strong long-range entanglement is generated by the coherence between the transmitted and reflected parts of propagating particles within the bias-voltage window. The generality and simplicity of the model suggest that this behavior should characterize a large class of nonequilibrium steady states.

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