White Donald H, Haase Thomas A, Brown Dylan J, Hoogerland Maarten D, Najafabadi Mojdeh S, Helm John L, Gies Christopher, Schumayer Daniel, Hutchinson David A W
Dodd-Walls Centre for Photonic and Quantum Technologies, Department of Physics, University of Auckland, Auckland, New Zealand.
Waseda Research Institute for Science and Engineering, Waseda University, Shinjuku, Tokyo, Japan.
Nat Commun. 2020 Oct 2;11(1):4942. doi: 10.1038/s41467-020-18652-w.
Anderson localisation -the inhibition of wave propagation in disordered media- is a surprising interference phenomenon which is particularly intriguing in two-dimensional (2D) systems. While an ideal, non-interacting 2D system of infinite size is always localised, the localisation length-scale may be too large to be unambiguously observed in an experiment. In this sense, 2D is a marginal dimension between one-dimension, where all states are strongly localised, and three-dimensions, where a well-defined phase transition between localisation and delocalisation exists as the energy is increased. Here, we report the results of an experiment measuring the 2D transport of ultracold atoms between two reservoirs, which are connected by a channel containing pointlike disorder. The design overcomes many of the technical challenges that have hampered observation of localisation in previous works. We experimentally observe exponential localisation in a 2D ultracold atom system.
安德森局域化——无序介质中波传播的抑制——是一种令人惊讶的干涉现象,在二维(2D)系统中尤其引人入胜。虽然理想的、非相互作用的无限大小二维系统总是局域化的,但局域化长度尺度可能太大,以至于在实验中无法明确观测到。从这个意义上说,二维是一维和三维之间的临界维度,在一维中所有态都强烈局域化,在三维中随着能量增加,局域化和非局域化之间存在明确的相变。在此,我们报告了一项实验的结果,该实验测量了超冷原子在两个储库之间的二维输运,这两个储库由一个包含点状无序的通道相连。该设计克服了许多阻碍以往工作中局域化观测的技术挑战。我们在二维超冷原子系统中通过实验观测到了指数局域化。