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探索二维中的多体局域化相变。

Exploring the many-body localization transition in two dimensions.

机构信息

Max-Planck-Institut für Quantenoptik, 85748 Garching, Germany.

Department of Physics, Princeton University, Princeton, NJ 08544, USA.

出版信息

Science. 2016 Jun 24;352(6293):1547-52. doi: 10.1126/science.aaf8834.

Abstract

A fundamental assumption in statistical physics is that generic closed quantum many-body systems thermalize under their own dynamics. Recently, the emergence of many-body localized systems has questioned this concept and challenged our understanding of the connection between statistical physics and quantum mechanics. Here we report on the observation of a many-body localization transition between thermal and localized phases for bosons in a two-dimensional disordered optical lattice. With our single-site-resolved measurements, we track the relaxation dynamics of an initially prepared out-of-equilibrium density pattern and find strong evidence for a diverging length scale when approaching the localization transition. Our experiments represent a demonstration and in-depth characterization of many-body localization in a regime not accessible with state-of-the-art simulations on classical computers.

摘要

统计物理的一个基本假设是,一般的封闭量子多体系统在自身动力学下会热化。最近,多体局域系统的出现质疑了这一概念,并挑战了我们对统计物理和量子力学之间联系的理解。在这里,我们报告了在二维无序光晶格中玻色子的热相和局域相之间的多体局域化转变的观测结果。通过我们的单站点分辨测量,我们跟踪了最初制备的非平衡密度模式的弛豫动力学,并在接近局域化转变时发现了一个发散长度尺度的有力证据。我们的实验代表了在经典计算机上的最先进模拟无法达到的一个区域中对多体局域化的演示和深入特征化。

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