论文标题

观察流畅的二极管 - 分子转变

Observation of a smooth polaron-molecule transition in a degenerate Fermi gas

论文作者

Ness, Gal, Shkedrov, Constantine, Florshaim, Yanay, Diessel, Oriana K., von Milczewski, Jonas, Schmidt, Richard, Sagi, Yoav

论文摘要

在多体物理学中,了解杂质与费米海的行为是一项长期的挑战。当相互作用短距离时,存在两个截然不同的接地态:一个偏极粒子和大多数原子打扮的分子。在单障碍极限中,可以预测,在临界相互作用强度下,这两个状态之间发生一阶转变。但是,实验始终在有限的温度和杂质密度状态下进行。在这些条件下,在这些条件下,二极管到整体转变的命运仍然未知。在这里,我们从实验和理论上解决这个问题。我们的实验是用带有可调相互作用的自旋感染超速费米气体进行的。利用一种新型的拉曼光谱法结合了高敏感性荧光检测技术,我们分离了准粒子的贡献,并提取偏振子的能量,光谱量和接触参数。随着相互作用强度的提高,我们观察到所有可观察物的连续变化,特别是对准粒子重量的平稳减小,因为它占据了过渡点以外的零。我们的观察结果与一个理论模型非常吻合,该模型根据其量子统计量,极性和分子准粒子状态被热占据。因此,在实验条件下,即使在分子为基态的相互作用中,极化状态也被人构成,反之亦然。因此,新兴的物理图是极性和分子之间平稳的转变,并且在预期过渡周围的区域中两者的共存。

Understanding the behavior of an impurity strongly interacting with a Fermi sea is a long-standing challenge in many-body physics. When the interactions are short-ranged, two vastly different ground states exist: a polaron quasiparticle and a molecule dressed by the majority atoms. In the single-impurity limit, it is predicted that at a critical interaction strength, a first-order transition occurs between these two states. Experiments, however, are always conducted in the finite temperature and impurity density regime. The fate of the polaron-to-molecule transition under these conditions, where the statistics of quantum impurities and thermal effects become relevant, is still unknown. Here, we address this question experimentally and theoretically. Our experiments are performed with a spin-imbalanced ultracold Fermi gas with tunable interactions. Utilizing a novel Raman spectroscopy combined with a high-sensitivity fluorescence detection technique, we isolate the quasiparticle contribution and extract the polaron energy, spectral weight, and the contact parameter. As the interaction strength is increased, we observe a continuous variation of all observables, in particular a smooth reduction of the quasiparticle weight as it goes to zero beyond the transition point. Our observation is in good agreement with a theoretical model where polaron and molecule quasiparticle states are thermally occupied according to their quantum statistics. At the experimental conditions, polaron states are hence populated even at interactions where the molecule is the ground state and vice versa. The emerging physical picture is thus that of a smooth transition between polarons and molecules and a coexistence of both in the region around the expected transition.

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