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通过量子猝灭动力学揭示拓扑结构。

Uncover Topology by Quantum Quench Dynamics.

机构信息

Shanghai Branch, National Laboratory for Physical Sciences at Microscale and Department of Modern Physics, University of Science and Technology of China, Shanghai 201315, China.

Chinese Academy of Sciences Center for Excellence: Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei Anhui 230326, China.

出版信息

Phys Rev Lett. 2018 Dec 21;121(25):250403. doi: 10.1103/PhysRevLett.121.250403.

Abstract

Topological quantum states are characterized by nonlocal invariants. We present a new dynamical approach for ultracold-atom systems to uncover their band topology, and we provide solid evidence to demonstrate its experimental advantages. After quenching a two-dimensional (2D) Chern band, realized in an ultracold ^{87}Rb gas from a trivial to a topological parameter regime, we observe an emerging ring structure in the spin dynamics during the unitary evolution, which uniquely corresponds to the Chern number for the postquench band. By extracting 2D bulk topology from the 1D ring pattern, our scheme displays simplicity and is insensitive to perturbations. This insensitivity enables a high-precision determination of the full phase diagram for the system's band topology.

摘要

拓扑量子态的特征在于非局域不变量。我们提出了一种新的超冷原子体系的动力学方法来揭示它们的能带拓扑,并提供了确凿的证据来证明其实验优势。在将二维(2D)Chern 能带从平凡参数区域淬火到拓扑参数区域后,在超冷 87Rb 气体中实现,我们在幺正演化过程中观察到自旋动力学中出现的环结构,这与淬火后能带的 Chern 数唯一对应。通过从一维环图案中提取二维体拓扑,我们的方案显示出简单性并且对微扰不敏感。这种不敏感性使得能够高精度地确定系统能带拓扑的完整相图。

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