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利用超导量子模拟器探测动力学相变。

Probing dynamical phase transitions with a superconducting quantum simulator.

作者信息

Xu Kai, Sun Zheng-Hang, Liu Wuxin, Zhang Yu-Ran, Li Hekang, Dong Hang, Ren Wenhui, Zhang Pengfei, Nori Franco, Zheng Dongning, Fan Heng, Wang H

机构信息

Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.

Interdisciplinary Centre for Quantum Information and Zhejiang Province Key Laboratory of Quantum Technology and Device, Department of Physics, Zhejiang University, Hangzhou 310027, China.

出版信息

Sci Adv. 2020 Jun 17;6(25):eaba4935. doi: 10.1126/sciadv.aba4935. eCollection 2020 Jun.

Abstract

Nonequilibrium quantum many-body systems, which are difficult to study via classical computation, have attracted wide interest. Quantum simulation can provide insights into these problems. Here, using a programmable quantum simulator with 16 all-to-all connected superconducting qubits, we investigate the dynamical phase transition in the Lipkin-Meshkov-Glick model with a quenched transverse field. Clear signatures of dynamical phase transitions, merging different concepts of dynamical criticality, are observed by measuring the nonequilibrium order parameter, nonlocal correlations, and the Loschmidt echo. Moreover, near the dynamical critical point, we obtain a spin squeezing of -7.0 ± 0.8 dB, showing multipartite entanglement, useful for measurements with precision fivefold beyond the standard quantum limit. On the basis of the capability of entangling qubits simultaneously and the accurate single-shot readout of multiqubit states, this superconducting quantum simulator can be used to study other problems in nonequilibrium quantum many-body systems, such as thermalization, many-body localization, and emergent phenomena in periodically driven systems.

摘要

非平衡量子多体系统难以通过经典计算进行研究,因而引起了广泛关注。量子模拟能够为这些问题提供见解。在此,我们使用一个具有16个全连接超导量子比特的可编程量子模拟器,研究具有猝灭横向场的Lipkin-Meshkov-Glick模型中的动力学相变。通过测量非平衡序参量、非局域关联和洛施密特回波,观察到了动力学相变的清晰特征,这些特征融合了不同的动力学临界概念。此外,在动力学临界点附近,我们获得了-7.0±0.8 dB的自旋压缩,展示了多体纠缠,这种纠缠对于精度比标准量子极限高出五倍的测量很有用。基于同时纠缠量子比特的能力以及多量子比特态的精确单次读出,这个超导量子模拟器可用于研究非平衡量子多体系统中的其他问题,如热化、多体局域化以及周期性驱动系统中的涌现现象。

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