Rudolf Peierls Centre for Theoretical Physics, University of Oxford, 1 Keble Road, Oxford OX1 3NP, United Kingdom.
Rep Prog Phys. 2018 Aug;81(8):082501. doi: 10.1088/1361-6633/aac9ed. Epub 2018 Jun 4.
We review recent developments in the study of out-of-equilibrium topological states of matter in isolated systems. The phenomenon of many-body localization, exhibited by some isolated systems usually in the presence of quenched disorder, prevents systems from equilibrating to a thermal state where the delicate quantum correlations necessary for topological order are often washed out. Instead, many-body localized systems can exhibit a type of eigenstate phase structure wherein their entire many-body spectrum is characterized by various types of quantum order, usually restricted to quantum ground states. After introducing many-body localization and explaining how it can protect quantum order, we then explore how the interplay of symmetry and dimensionality with many-body localization constrains its role in stabilizing topological phases out of equilibrium.
我们回顾了孤立系统中非平衡拓扑物质态研究的最新进展。多体局域化现象出现在一些通常存在淬火无序的孤立系统中,它阻止系统达到热平衡态,而拓扑序所必需的精细量子关联通常会在热平衡态中被消除。相反,多体局域化系统可以表现出一种本征态相结构,其中它们的整个多体谱都由各种类型的量子有序来特征化,通常局限于量子基态。在介绍了多体局域化并解释了它如何保护量子有序之后,我们探讨了对称性和维度与多体局域化的相互作用如何限制其在非平衡时稳定拓扑相的作用。