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首页> 外文期刊>Physical review, B >Second-order topological corner states with ultracold atoms carrying orbital angular momentum in optical lattices
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Second-order topological corner states with ultracold atoms carrying orbital angular momentum in optical lattices

机译:二阶拓扑拐角状态,具有超薄原子在光学格子中携带轨道角动量

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We propose a realization of a two-dimensional higher-order topological insulator with ultracold atoms loaded into orbital angular momentum (OAM) states of an optical lattice. The symmetries of the OAM states induce relative phases in the tunneling amplitudes that allow to describe the system in terms of two decoupled lattice models. Each of these models displays one-dimensional edge states and zero-dimensional corner states that are correlated with the topological properties of the bulk. We show that the topologically nontrivial regime can be explored in a wide range of experimentally feasible values of the parameters of the physical system. Furthermore, we propose an alternative way to characterize the second-order topological corner states based on the computation of the Zak's phases of the bands of first-order edge states.
机译:我们提出了一种利用加载到光学晶格的轨道角动量(OAM)状态的超级轨道原子的二维高阶拓扑绝缘体。 OAM状态的对称诱导隧道幅度中的相对阶段,其允许在两个去耦晶格模型方面描述该系统。 这些模型中的每一个都显示与散装的拓扑特性相关的一维边缘状态和零维角状态。 我们表明,可以在物理系统参数的广泛的实验可行值中探索拓扑非学生制度。 此外,我们提出了一种替代方法,以基于Zak的一阶边缘状态的Zak阶段的计算来表征二阶拓扑角球状态。

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