准周期晶格中超冷原子安德森局域化的直接观察

IF 1.1 Q4 OPTICS
Wenbo Yan, Yuqing Li, Hongxing Zhao, Jizhou Wu, Wenliang Liu, Peng Li, Yongming Fu, Liantuan Xiao, Jie Ma, Suotang Jia
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引用次数: 0

摘要

准周期晶格中的超冷原子为研究许多有趣的无序驱动现象提供了一个通用的平台。本文研究了非相互作用超冷133cs原子在一维准周期动量晶格中的量子输运,该晶格是用激光耦合动量态作为合成维形成的。通过测量合成准周期晶格中原子的位分辨密度分布,我们直接观察到随着准周期调制强度的增加,原子在初始注入位置从扩散输运到安德森局域化的转变。我们证明了表征原子膨胀度的动量宽度与准周期调制强度的关系,我们的观测结果与理论计算结果吻合得很好。我们的工作为理解无序系统中的量子扩散提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct observation of Anderson localization ofultracold atoms in a quasiperiodic lattice
Ultracold atoms in quasiperiodic lattices offer a versatile platform for studying many intriguingly disorder-driven phenomena. Here we study the quantum transport of noninteracting ultracold 133 Cs atoms in a one-dimensional quasiperiodic momentum lattice, which is formed by using the laser-coupled momentum states as synthetic dimensions. Through measurements of the site-resolved density distribution of atoms in the synthetic quasiperiodic lattice, we directly observe the transition from the atomic diffusive transport to Anderson localization in the initial injection site with increasing strength of the quasiperiodic modulation. We show the dependence of momentum width characterizing the atomic expansion degree on the quasiperiodic modulation strength, and our observation is in good agreement with the theoretical calculation. Our work provides significant insights for understanding the quantum spreading in disordered systems.
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CiteScore
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