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Measuring Out-of-Time-Order Correlators on a Nuclear Magnetic Resonance Quantum Simulator

机译:在核磁共振量子模拟器上测量失序相关器

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The idea of the out-of-time-order correlator (OTOC) has recently emerged in the study of both condensed matter systems and gravitational systems. It not only plays a key role in investigating the holographic duality between a strongly interacting quantum system and a gravitational system, it also diagnoses the chaotic behavior of many-body quantum systems and characterizes information scrambling. Based on OTOCs, three different concepts—quantum chaos, holographic duality, and information scrambling—are found to be intimately related to each other. Despite its theoretical importance, the experimental measurement of the OTOC is quite challenging, and thus far there is no experimental measurement of the OTOC for local operators. Here, we report the measurement of OTOCs of local operators for an Ising spin chain on a nuclear magnetic resonance quantum simulator. We observe that the OTOC behaves differently in the integrable and nonintegrable cases. Based on the recent discovered relationship between OTOCs and the growth of entanglement entropy in the many-body system, we extract the entanglement entropy from the measured OTOCs, which clearly shows that the information entropy oscillates in time for integrable models and scrambles for nonintgrable models. With the measured OTOCs, we also obtain the experimental result of the butterfly velocity, which measures the speed of correlation propagation. Our experiment paves a way for experimentally studying quantum chaos, holographic duality, and information scrambling in many-body quantum systems with quantum simulators.
机译:失序相关器(OTOC)的思想最近在凝聚态系统和引力系统的研究中出现。它不仅在研究强相互作用的量子系统和引力系统之间的全息对偶性中起关键作用,而且还诊断多体量子系统的混沌行为并表征信息扰乱。基于OTOC,发现了三个不同的概念-量子混沌,全息对偶性和信息加扰-彼此密切相关。尽管具有理论上的重要性,但是OTOC的实验测量还是很有挑战性的,到目前为止,还没有针对本地运营商的OTOC的实验测量。在这里,我们报告在核磁共振量子模拟器上对Ising自旋链的本地算子的OTOC的测量。我们观察到OTOC在可积分和不可积分情况下的行为不同。基于最近发现的OTOC与多体系统中纠缠熵的增长之间的关系,我们从测得的OTOC中提取了纠缠熵,这清楚地表明,信息熵在可积模型中振荡并且在不可整合模型中扰乱。利用测得的OTOC,我们还获得了蝴蝶速度的实验结果,该速度测量了相关传播的速度。我们的实验为通过量子模拟器在多体量子系统中实验研究量子混沌,全息对偶性和信息加扰铺平了道路。

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