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多体局域化相变处的量子临界行为。

Quantum critical behaviour at the many-body localization transition.

机构信息

Department of Physics, Harvard University, Cambridge, MA, USA.

出版信息

Nature. 2019 Sep;573(7774):385-389. doi: 10.1038/s41586-019-1527-2. Epub 2019 Sep 4.

Abstract

Phase transitions are driven by collective fluctuations of a system's constituents that emerge at a critical point. This mechanism has been extensively explored for classical and quantum systems in equilibrium, whose critical behaviour is described by the general theory of phase transitions. Recently, however, fundamentally distinct phase transitions have been discovered for out-of-equilibrium quantum systems, which can exhibit critical behaviour that defies this description and is not well understood. A paradigmatic example is the many-body localization (MBL) transition, which marks the breakdown of thermalization in an isolated quantum many-body system as its disorder increases beyond a critical value. Characterizing quantum critical behaviour in an MBL system requires probing its entanglement over space and time, which has proved experimentally challenging owing to stringent requirements on quantum state preparation and system isolation. Here we observe quantum critical behaviour at the MBL transition in a disordered Bose-Hubbard system and characterize its entanglement via its multi-point quantum correlations. We observe the emergence of strong correlations, accompanied by the onset of anomalous diffusive transport throughout the system, and verify their critical nature by measuring their dependence on the system size. The correlations extend to high orders in the quantum critical regime and appear to form via a sparse network of many-body resonances that spans the entire system. Our results connect the macroscopic phenomenology of the transition to the system's microscopic structure of quantum correlations, and they provide an essential step towards understanding criticality and universality in non-equilibrium systems.

摘要

相变是由系统成分的集体涨落驱动的,这些涨落在临界点出现。这种机制已经在经典和量子平衡系统中得到了广泛的探索,其临界行为由相变的一般理论来描述。然而,最近在非平衡量子系统中发现了根本不同的相变,这些相变表现出的临界行为违背了这种描述,并且还没有得到很好的理解。一个典范的例子是多体局域化(MBL)相变,它标志着随着无序程度超过一个临界值,孤立量子多体系统中热化的崩溃。在 MBL 系统中表征量子临界行为需要探测其在空间和时间上的纠缠,由于对量子态制备和系统隔离的严格要求,这在实验上具有挑战性。在这里,我们在无序玻色-哈伯德系统中观察到 MBL 相变中的量子临界行为,并通过其多点量子相关性来表征其纠缠。我们观察到强相关性的出现,伴随着整个系统中反常扩散输运的开始,并通过测量它们对系统尺寸的依赖性来验证它们的临界性质。相关性在量子临界区域延伸到高阶,并似乎通过跨越整个系统的多体共振稀疏网络形成。我们的结果将相变的宏观现象与系统的量子相关性的微观结构联系起来,并为理解非平衡系统中的临界性和普遍性提供了重要的一步。

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