论文标题

在边界驱动的受监控链中增强的纠缠负态

Enhanced entanglement negativity in boundary driven monitored fermionic chains

论文作者

Turkeshi, Xhek, Piroli, Lorenzo, Schirò, Marco

论文摘要

我们研究了具有电流携带非平衡状态的连续监测的开放量子系统中的纠缠动态。我们专注于通过监测局部密度的边界驱动的非相互作用的费米的典型一维模型,其平均lindblad动力学具有良好的弹道弹性,可扩散运输中的扩散。在这里,我们分析了沿着不同量子轨迹的费米子负效率,互信息和纯度的动力学。我们表明,监视这种边界驱动的系统会长期增强其纠缠效果,否则在没有测量的情况下,该系统否则会衰减至零。该结果与统一进化的情况相反,在监测抑制纠缠产生的情况下。对于$γ$的少量值,固定状态的消极情绪显示出具有系统大小的对数缩放率,转换为$γ$的缩放量超出了临界值。在共同信息中也发现了类似的临界行为,而后期纯度没有明显的过渡签名,对于所有$γ$的值,$ o(1)$。我们的工作揭示了在电流驱动的开放量子系统中弱监测的双重作用,同时抑制运输和增强纠缠。

We investigate entanglement dynamics in continuously monitored open quantum systems featuring current-carrying non-equilibrium states. We focus on a prototypical one-dimensional model of boundary-driven non-interacting fermions with monitoring of the local density, whose average Lindblad dynamics features a well-studied ballistic to diffusive crossover in transport. Here we analyze the dynamics of the fermionic negativity, mutual information, and purity along different quantum trajectories. We show that monitoring this boundary-driven system enhances its entanglement negativity at long times, which otherwise decays to zero in absence of measurements. This result is in contrast with the case of unitary evolution where monitoring suppresses entanglement production. For small values of $γ$, the stationary-state negativity shows a logarithmic scaling with system size, transitioning to an area-law scaling as $γ$ is increased beyond a critical value. Similar critical behavior is found in the mutual information, while the late-time purity shows no apparent signature of a transition, being $O(1)$ for all values of $γ$. Our work unveils the double role of weak monitoring in current-driven open quantum systems, simultaneously damping transport and enhancing entanglement.

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