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Probing an Electron Scattering Resonance using Rydberg Molecules within a Dense and Ultracold Gas

机译:在稠密和超冷气体中使用里德堡分子探测电子散射共振

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摘要

We present spectroscopy of a single Rydberg atom excited within a Bose-Einstein condensate. We not only observe the density shift as discovered by Amaldi and Segre in 1934, but a line shape that changes with the principal quantum number n. The line broadening depends precisely on the interaction potential energy curves of the Rydberg electron with the neutral atom perturbers. In particular, we show the relevance of the triplet p-wave shape resonance in the e(-)-Rb(5S) scattering, which significantly modifies the interaction potential. With a peak density of 5.5 x 10(14) cm(-3), and therefore an interparticle spacing of 1300 a(0) within a Bose-Einstein condensate, the potential energy curves can be probed at these Rydberg ion-neutral atom separations. We present a simple microscopic model for the spectroscopic line shape by treating the atoms overlapped with the Rydberg orbit as zero-velocity, uncorrelated, pointlike particles, with binding energies associated with their ion-neutral separation, and good agreement is found.
机译:我们目前在玻色-爱因斯坦凝聚物中激发的一个里德堡原子的光谱学。我们不仅观察到Amaldi和Segre在1934年发现的密度变化,而且观察到随主量子数n变化的线形。线展宽正好取决于里德堡电子与中性原子扰动的相互作用势能曲线。特别是,我们显示了三重态p波形共振在e(-)-Rb(5S)散射中的相关性,这极大地改变了相互作用的潜力。峰密度为5.5 x 10(14)cm(-3),因此在Bose-Einstein凝聚物中的粒子间间距为1300 a(0),可以在这些Rydberg离子-中性原子分离处探测势能曲线。我们通过将与Rydberg轨道重叠的原子视为零速度,不相关的点状粒子,并结合其离子中性分离的结合能,提出了一种简单的光谱线形微观模型。

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