Max-Planck-Institut für Physik komplexer Systeme, 01187 Dresden, Germany.
Department of Physics, Technical University of Munich, 85748 Garching, Germany.
Phys Rev Lett. 2018 Jul 6;121(1):016801. doi: 10.1103/PhysRevLett.121.016801.
Out-of-time-ordered (OTO) correlators have developed into a central concept quantifying quantum information transport, information scrambling, and quantum chaos. In this Letter, we show that such an OTO correlator can also be used to dynamically detect equilibrium as well as nonequilibrium phase transitions in Ising chains. We study OTO correlators of an order parameter both in equilibrium and after a quantum quench for different variants of transverse-field Ising models in one dimension, including the integrable one as well as nonintegrable and long-range extensions. We find for all the studied models that the OTO correlator in ground states detects the quantum phase transition. After a quantum quench from a fully polarized state, we observe numerically for the short-range models that the asymptotic long-time value of the OTO correlator signals still the equilibrium critical points and ordered phases. For the long-range extension, the OTO correlator instead determines a dynamical quantum phase transition in the model. We discuss how our findings can be observed in current experiments of trapped ions or Rydberg atoms.
失序关联函数已发展成为量化量子信息传输、信息混洗和量子混沌的核心概念。在这篇文章中,我们表明,这种失序关联函数也可用于动态检测伊辛链中的平衡态和非平衡相变。我们研究了一维中不同横场伊辛模型的序参量的失序关联函数,包括可积模型以及非积和长程扩展模型,分别在平衡态和量子淬火后进行了研究。我们发现,对于所有研究的模型,基态中的失序关联函数可以检测量子相变。在从完全极化态进行量子淬火后,我们在短程模型中数值观察到,失序关联函数的渐近长时间值仍然可以标记出平衡临界点和有序相。对于长程扩展模型,失序关联函数反而确定了模型中的动力学量子相变。我们讨论了如何在当前的囚禁离子或里德堡原子实验中观察到我们的发现。