弗洛奎特理论
超冷原子
物理
原子物理学
拓扑(电路)
量子力学
量子
非线性系统
数学
组合数学
作者
Jin-Yi Zhang,Changjiang Yi,Long Zhang,Rui-Heng Jiao,Kaiye Shi,Huan Yuan,Wei Zhang,Xiong‐Jun Liu,Shuai Chen,Jian-Wei Pan
标识
DOI:10.1103/physrevlett.130.043201
摘要
The Floquet engineering opens the way to create new topological states without counterparts in static systems. Here, we report the experimental realization and characterization of new anomalous topological states with high-precision Floquet engineering for ultracold atoms trapped in a shaking optical Raman lattice. The Floquet band topology is manipulated by tuning the driving-induced band crossings referred to as band inversion surfaces (BISs), whose configurations fully characterize the topology of the underlying states. We uncover various exotic anomalous topological states by measuring the configurations of BISs that correspond to the bulk Floquet topology. In particular, we identify an unprecedented anomalous Floquet valley-Hall state that possesses anomalous helical-like edge modes protected by valleys and a chiral state with high Chern number.
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