Department of Physics, Southern University of Science and Technology, Shenzhen, China.
Shenzhen Institute for Quantum Science and Engineering, Southern University of Science and Technology, Shenzhen, China.
Nature. 2021 Aug;596(7871):227-231. doi: 10.1038/s41586-021-03702-0. Epub 2021 Aug 11.
Topological superfluidity is an important concept in electronic materials as well as ultracold atomic gases. However, although progress has been made by hybridizing superconductors with topological substrates, the search for a material-natural or artificial-that intrinsically exhibits topological superfluidity has been ongoing since the discovery of the superfluid He-A phase. Here we report evidence for a globally chiral atomic superfluid, induced by interaction-driven time-reversal symmetry breaking in the second Bloch band of an optical lattice with hexagonal boron nitride geometry. This realizes a long-lived Bose-Einstein condensate of Rb atoms beyond present limits to orbitally featureless scenarios in the lowest Bloch band. Time-of-flight and band mapping measurements reveal that the local phases and orbital rotations of atoms are spontaneously ordered into a vortex array, showing evidence of the emergence of global angular momentum across the entire lattice. A phenomenological effective model is used to capture the dynamics of Bogoliubov quasi-particle excitations above the ground state, which are shown to exhibit a topological band structure. The observed bosonic phase is expected to exhibit phenomena that are conceptually distinct from, but related to, the quantum anomalous Hall effect in electronic condensed matter.
拓扑超流性是电子材料以及超冷原子气体中的一个重要概念。然而,尽管通过将超导体与拓扑衬底杂交已经取得了进展,但自从发现超流 He-A 相以来,人们一直在寻找一种本质上表现出拓扑超流性的材料——无论是天然的还是人工的。在这里,我们报告了在具有六方氮化硼几何形状的光学晶格的第二布洛赫带中通过相互作用驱动的时间反转对称性破缺诱导的全局手征原子超流的证据。这实现了超越目前最低布洛赫带无轨道特征情况的铷原子的长寿命玻色-爱因斯坦凝聚。飞行时间和能带映射测量表明,原子的局部相位和轨道旋转自发地有序成涡旋阵列,表明整个晶格上出现了全局角动量。一个唯象有效模型被用来捕捉基态以上玻戈留波夫准粒子激发的动力学,结果表明它具有拓扑能带结构。所观察到的玻色相预计将表现出与电子凝聚态物质中的量子反常霍尔效应在概念上不同但相关的现象。