论文标题

超低原子三体重组产品状态分布的能量量表

Energy-scaling of the product state distribution for three-body recombination of ultracold atoms

论文作者

Haze, Shinsuke, D'Incao, José P., Dorer, Dominik, Li, Jinglun, Deiß, Markus, Tiemann, Eberhard, Julienne, Paul S., Denschlag, Johannes Hecker

论文摘要

三体重组是一种化学反应,其中三个原子的碰撞会导致形成双原子分子。在超低制度中,预计分子的产量通常会随着其结合能$ e_b $的降低,但是,到目前为止,其精确的依赖性和管理的物理学尚不清楚。在这里,我们介绍了超电位RB三体重组的能量依赖性的全面实验和理论研究。为此,我们以州对国家的解决方式确定分子的生产率,具有约束力的$ e_b $范围从0.02到77 GHz $ \ times h $。我们发现,形成速率大约为$ e_b^{ - α} $,其中$α$在1附近。除了可能的中心屏障抑制低结合能抑制低结合能的可能性中心屏障外,对于分子产物的不同旋转角度的不同旋转角动量,形成速率通常仅在两个因子内变化。除了数值三体计算外,我们提出了一个扰动模型,该模型揭示了形成速率的能量缩放的物理起源。此外,我们表明,规模定律有可能普遍存在着广泛的相互作用潜力。

Three-body recombination is a chemical reaction where the collision of three atoms leads to the formation of a diatomic molecule. In the ultracold regime it is expected that the production rate of a molecule generally decreases with its binding energy $E_b$, however, its precise dependence and the physics governing it have been left unclear so far. Here, we present a comprehensive experimental and theoretical study of the energy dependency for three-body recombination of ultracold Rb. For this, we determine production rates for molecules in a state-to-state resolved manner, with the binding energies $E_b$ ranging from 0.02 to 77 GHz$\times h$. We find that the formation rate approximately scales as $E_b^{-α}$, where $α$ is in the vicinity of 1. The formation rate typically varies only within a factor of two for different rotational angular momenta of the molecular product, apart from a possible centrifugal barrier suppression for low binding energies. In addition to numerical three-body calculations we present a perturbative model which reveals the physical origin of the energy scaling of the formation rate. Furthermore, we show that the scaling law potentially holds universally for a broad range of interaction potentials.

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