论文标题

测量非局部合并以重组关键量子状态

Measurements conspire nonlocally to restructure critical quantum states

论文作者

Garratt, Samuel J., Weinstein, Zack, Altman, Ehud

论文摘要

从理论上讲,我们研究了在关键量子接地状态下如何影响长距离相关性的局部测量。这些状态是高度纠缠的,并具有局部可观察物之间的代数相关性。结果,局部测量可能会产生高度非局部效应。我们的重点是Tomonaga-Luttinger液体(TLL)基态,这是一个在一个维度上连续的关键状态家族,其结构由Luttinger参数$ K $进行参数化。我们表明,在空间的扩展区域进行的任意弱的局部测量值可以共同驱动长距离相关的过渡。首先根据特定的测量结果进行条件,我们表明,$ k <1 $的测量后量子状态的特征有一个过渡,并强调了正式的类比,具有静态杂质对通过TLL传输的影响。为了调查测量结果的完整合奏,我们考虑了物理量的平均值,这些量在系统密度矩阵中必然是非线性的。我们展示了如何在复制领域理论中理解它们的行为,并且对于我们认为我们发现复制品中该理论的对称性的测量值被$ k <1/2 $打破了。实验观察多个测量的集体效应的众所周知的障碍是对随机结局进行选择后的需要。在这里,我们通过在实验测量结果和经典模拟之间引入互相关来解决此问题,这些模拟充当了资源有效的过渡探针。此外,我们讨论的现象对局部腐蚀性很强。

We study theoretically how local measurements perfomed on critical quantum ground states affect long-distance correlations. These states are highly entangled and feature algebraic correlations between local observables. As a consequence, local measurements can have highly nonlocal effects. Our focus is on Tomonaga-Luttinger liquid (TLL) ground states, a continuous family of critical states in one dimension whose structure is parameterized by a Luttinger parameter $K$. We show that arbitrarily weak local measurements, performed over extended regions of space, can conspire to drive transitions in long-distance correlations. Conditioning first on a particular measurement outcome we show that there is a transition in the character of the post-measurement quantum state for $K<1$, and highlight a formal analogy with the effect of a static impurity on transport through a TLL. To investigate the full ensemble of measurement outcomes we consider averages of physical quantities which are necessarily nonlinear in the system density matrix. We show how their behavior can be understood within a replica field theory, and for the measurements that we consider we find that the symmetry of the theory under exchange of replicas is broken for $K<1/2$. A well-known barrier to experimentally observing the collective effects of multiple measurements has been the need to post-select on random outcomes. Here we resolve this problem by introducing cross-correlations between experimental measurement results and classical simulations, which act as resource-efficient probes of the transition. The phenomena we discuss are, moreover, robust to local decoherence.

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