非互易Su-Schrieffer-Heeger链中巨原子诱导的零模式和局域化

Junjie Wang, Fude Li, Xuexi Yi
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摘要

具有趋肤效应的非厄米系统的一个显著特征是其光谱和本征态对边界条件的敏感性。在文献中,探讨了三种类型的边界条件-周期边界条件,开放边界条件(OBC)和系统中的缺陷作为边界。在这项工作中,我们引入了另一种由巨原子提供的边界条件。巨大的原子在两点上与非互易的苏-施里弗-海格(SSH)链偶联并起缺陷的作用。研究了系统本征态的谱和局域性,发现巨原子可以诱导非对称零模。一个显著的特征是,在弱局部化体系中,体态可能定位在链原子耦合位点的左侧或右侧。这种双极定位导致了类布洛赫状态,即使平移不变性被打破。此外,我们发现,即使在强耦合条件下,定位也明显弱于两个小原子或OBCs的情况。这些有趣的结果表明,巨原子与非互易SSH链的非局域耦合削弱了本征态的局域性。我们还证明了实际空间中长时间动力学中的Lyapunov指数可以作为局域体态的见证。
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Giant atom induced zero modes and localization in the nonreciprocal Su-Schrieffer-Heeger chain
Abstract A notable feature of non-Hermitian systems with skin effects is the sensitivity of their spectra and eigenstates to the boundary conditions. In the literature, three types of boundary conditions–periodic boundary condition, open boundary condition (OBC) and a defect in the system as a boundary, are explored. In this work we introduce the other type of boundary condition provided by a giant atom. The giant atom couples to a nonreciprocal Su–Schrieffer–Heeger (SSH) chain at two points and plays the role of defects. We study the spectrum and localization of eigenstates of the system and find that the giant atom can induce asymmetric zero modes. A remarkable feature is that bulk states might localize at the left or the right chain-atom coupling sites in weak localization regimes. This bipolar localization leads to Bloch-like states, even though translational invariance is broken. Moreover, we find that the localization is obviously weaker than the case with two small atoms or OBCs even in strong coupling regimes. These intriguing results indicate that nonlocal coupling of the giant atom to a nonreciprocal SSH chain weakens the localization of the eigenstates. We also show that the Lyapunov exponent in the long-time dynamics in real space can act as a witness of the localized bulk states.
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