准二维超冷费米混合物中的通用团簇

Ruijin Liu, Tingting Shi, Matteo Zaccanti, Xiaoling Cui
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摘要

我们研究了准二维(q2D)中的普适性团簇,它由发光(L)原子与两个或三个重(H)相同费米子相互作用,形成三聚体或四聚体束缚态。研究表明,q2D 的轴向约束解除了三维三聚体(四聚体)在 $p$ 波道中的三重变性,并独特地选择了具有磁角动量 $|m|=1$ ($m=0$)的基态。通过改变相互作用或约束强度,我们探索了这些团簇从三维到二维的维度交叉,其特征是它们的出现和动量空间分布的临界 H-L 质量比的逐渐变化。在这里,我们建立了一个有效的二维模型来定量再现q2D团簇的性质,并进一步确定了在实验中探测它们的最佳相互作用强度。我们的结果表明,在现实的q2D超冷费米混合物中观测普适团簇和相关的高阶相关效应前景广阔。
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Universal clusters in quasi-two-dimensional ultracold Fermi mixtures
We study universal clusters in quasi-two dimensions (q2D) that consist of a light (L) atom interacting with two or three heavy (H) identical fermions, forming the trimer or tetramer bound state. The axial confinement in q2D is shown to lift the three-fold degeneracy of 3D trimer (tetramer) in $p$-wave channel and uniquely select the ground state with magnetic angular momentum $|m|=1$ ($m=0$). By varying the interaction or confinement strength, we explore the dimensional crossover of these clusters from 3D to 2D, characterized by a gradual change of critical H-L mass ratio for their emergence and momentum-space distribution. Importantly, we find that a finite effective range will {\it not} alter their critical mass ratios in the weak coupling regime. There, we establish an effective 2D model to quantitatively reproduce the properties of q2D clusters, and further identify the optimal interaction strengths for their detections in experiments. Our results suggest a promising prospect for observing universal clusters and associated high-order correlation effects in realistic q2D ultracold Fermi mixtures.
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