Ponte Pedro, Laumann C R, Huse David A, Chandran A
Perimeter Institute for Theoretical Physics, Waterloo, Ontario, Canada N2L 2Y5.
Department of Physics and Astronomy, University of Waterloo, Ontario, Canada N2L 3G1.
Philos Trans A Math Phys Eng Sci. 2017 Dec 13;375(2108). doi: 10.1098/rsta.2016.0428.
Many-body localized (MBL) systems lie outside the framework of statistical mechanics, as they fail to equilibrate under their own quantum dynamics. Even basic features of MBL systems, such as their stability to thermal inclusions and the nature of the dynamical transition to thermalizing behaviour, remain poorly understood. We study a simple central spin model to address these questions: a two-level system interacting with strength with ≫1 localized bits subject to random fields. On increasing , the system transitions from an MBL to a delocalized phase on the scale ()∼1/, up to logarithmic corrections. In the transition region, the single-site eigenstate entanglement entropies exhibit bimodal distributions, so that localized bits are either 'on' (strongly entangled) or 'off' (weakly entangled) in eigenstates. The clusters of 'on' bits vary significantly between eigenstates of the sample, which provides evidence for a heterogeneous discontinuous transition out of the localized phase in single-site observables. We obtain these results by perturbative mapping to bond percolation on the hypercube at small and by numerical exact diagonalization of the full many-body system. Our results support the arguments that the MBL phase is unstable in systems with short-range interactions and quenched randomness in dimensions that are high but finite.This article is part of the themed issue 'Breakdown of ergodicity in quantum systems: from solids to synthetic matter'.
多体局域化(MBL)系统处于统计力学框架之外,因为它们在自身量子动力学作用下无法达到平衡。即使是MBL系统的基本特征,比如它们对热杂质的稳定性以及向热化行为的动力学转变的本质,仍然了解甚少。我们研究一个简单的中心自旋模型来解决这些问题:一个两能级系统与强度为 且 》1 的受随机场作用的局域比特相互作用。随着 的增加,系统在 尺度()~1/ 上从MBL相转变为离域相,直至对数修正。在转变区域,单比特本征态纠缠熵呈现双峰分布,使得局域比特在本征态中要么“开启”(强纠缠)要么“关闭”(弱纠缠)。“开启”比特的簇在 样本的本征态之间有显著变化,这为单比特可观测量中从局域相的非均匀不连续转变提供了证据。我们通过在小 时微扰映射到超立方上的键渗流以及通过对完整多体系统进行数值精确对角化得到这些结果。我们的结果支持了这样的观点,即在具有短程相互作用和淬火无序的高但有限维系统中,MBL相是不稳定的。本文是主题为“量子系统中遍历性的崩溃:从固体到合成物质”的特刊的一部分。