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Probing Scrambling Using Statistical Correlations between Randomized Measurements

机译:随机测量之间的统计相关性探测争吵

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We propose and analyze a protocol to study quantum information scrambling using statistical correlations between measurements, which are performed after evolving a quantum system from randomized initial states. We prove that the resulting correlations precisely capture the so-called out-of-time-ordered correlators and can be used to probe chaos in strongly interacting, many-body systems. Our protocol requires neither reversing time evolution nor auxiliary degrees of freedom, and it can be realized in state-of-the-art quantum simulation experiments.
机译:我们提出并分析了使用测量之间的统计相关性研究的量子信息加扰,这在从随机初始状态的改变量子系统之后进行。我们证明了所得到的相关性精确地捕获所谓的无序相关性的相关器,可用于探测混沌强烈互动的许多身体系统。我们的协议既不需要逆转时间进化和辅助自由度,并且可以在最先进的量子仿真实验中实现。

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