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Laughlin-like States in Bosonic and Fermionic Atomic Synthetic Ladders

机译:玻和铁原子合成梯子中的Laughlin样态

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摘要

The combination of interactions and static gauge fields plays a pivotal role in our understanding of strongly correlated quantum matter. Cold atomic gases endowed with a synthetic dimension are emerging as an ideal platform to experimentally address this interplay in quasi-one-dimensional systems. A fundamental question is whether these setups can give access to pristine two-dimensional phenomena, such as the fractional quantum Hall effect, and how. We show that unambiguous signatures of bosonic and fermionic Laughlin-like states can be observed and characterized in synthetic ladders. We theoretically diagnose these Laughlin-like states focusing on the chiral current flowing in the ladder, on the central charge of the low-energy theory, and on the properties of the entanglement entropy. Remarkably, Laughlin-like states are separated from conventional liquids by Lifschitz-type transitions, characterized by sharp discontinuities in the current profiles, which we address using extensive simulations based on matrix-product states. Our work provides a qualitative and quantitative guideline towards the observability and understanding of strongly correlated states of matter in synthetic ladders. In particular, we unveil how state-of-the-art experimental settings constitute an ideal starting point to progressively tackle two-dimensional strongly interacting systems from a ladder viewpoint, opening a new perspective for the observation of non-Abelian states of matter.
机译:相互作用和静态规范场的结合在我们对强相关量子物质的理解中起着关键作用。具有合成尺寸的冷原子气体正逐渐成为理想的平台,可以通过实验解决准一维系统中的这种相互作用。一个基本的问题是这些设置是否可以访问原始的二维现象,例如分数量子霍尔效应,以及如何实现。我们表明,可以观察到并明确表征合成梯子中的玻色和铁离子劳克林样状态的明确签名。我们从理论上诊断这些类似于Laughlin的状态,着眼于在梯子中流动的手性电流,低能理论的中心电荷以及纠缠熵的性质。引人注目的是,通过Lifschitz型跃迁将Laughlin样态与常规液体分开,其特征在于电流分布图中的不连续性,我们将使用基于矩阵乘积态的大量模拟来解决这些问题。我们的工作为合成梯子中可观察性和物质高度相关状态的可观察性和理解提供了定性和定量指导。特别是,我们揭示了最新的实验设置如何构成从阶梯角度逐步解决二维强相互作用系统的理想起点,从而为观察非阿贝尔物质状态开辟了新的视角。

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