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观测超导气体二维退相干湍流中的涡旋-反涡旋对。

Observation of vortex-antivortex pairing in decaying 2D turbulence of a superfluid gas.

机构信息

Department of Physics and Astronomy, and Institute of Applied Physics, Seoul National University, Seoul, 08826, Korea.

Center for Correlated Electron Systems, Institute for Basic Science, Seoul, 08826, Korea.

出版信息

Sci Rep. 2017 Jul 4;7(1):4587. doi: 10.1038/s41598-017-04122-9.

Abstract

In a two-dimensional (2D) classical fluid, a large-scale flow structure emerges out of turbulence, which is known as the inverse energy cascade where energy flows from small to large length scales. An interesting question is whether this phenomenon can occur in a superfluid, which is inviscid and irrotational by nature. Atomic Bose-Einstein condensates (BECs) of highly oblate geometry provide an experimental venue for studying 2D superfluid turbulence, but their full investigation has been hindered due to a lack of the circulation sign information of individual quantum vortices in a turbulent sample. Here, we demonstrate a vortex sign detection method by using Bragg scattering, and we investigate decaying turbulence in a highly oblate BEC at low temperatures, with our lowest being ~0.5T , where T is the superfluid critical temperature. We observe that weak spatial pairing between vortices and antivortices develops in the turbulent BEC, which corresponds to the vortex-dipole gas regime predicted for high dissipation. Our results provide a direct quantitative marker for the survey of various 2D turbulence regimes in the BEC system.

摘要

在二维(2D)经典流体中,从湍流中会出现大规模流动结构,这被称为反向能量级联,其中能量从小尺度流向大尺度。一个有趣的问题是,这种现象是否会发生在超流体中,超流体本质上是无粘性和无旋的。高度扁长形状的原子玻色-爱因斯坦凝聚(BEC)为研究 2D 超流体湍流提供了一个实验场所,但由于缺乏湍流样本中单个量子涡旋的循环标志信息,对其的全面研究受到了阻碍。在这里,我们通过使用布拉格散射演示了一种涡旋标志检测方法,并在低温下研究了高度扁长 BEC 中的衰减湍流,我们的最低温度约为 0.5T ,其中 T 是超流临界温度。我们观察到,在湍流 BEC 中,涡旋和反涡旋之间会产生较弱的空间配对,这对应于高耗散预测的涡旋偶极子气体状态。我们的结果为在 BEC 系统中调查各种 2D 湍流状态提供了直接的定量标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71db/5496920/d707d2990ffe/41598_2017_4122_Fig1_HTML.jpg

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