Laboratoire Charles Fabry, Institut d'Optique, CNRS, Univ Paris Sud, 2 avenue Augustin Fresnel, 91127 Palaiseau cedex, France.
Phys Rev Lett. 2013 Jun 28;110(26):263201. doi: 10.1103/PhysRevLett.110.263201. Epub 2013 Jun 24.
We report the direct measurement of the van der Waals interaction between two isolated, single Rydberg atoms separated by a controlled distance of a few micrometers. Working in a regime where the single-atom Rabi frequency for excitation to the Rydberg state is comparable to the interaction, we observe partial Rydberg blockade, whereby the time-dependent populations of the various two-atom states exhibit coherent oscillations with several frequencies. Quantitative comparison of the data with a simple model based on the optical Bloch equations allows us to extract the van der Waals energy, and observe its characteristic C6/R6 dependence. The measured C6 coefficients agree well with ab initio calculations, and we observe their dramatic increase with the principal quantum number n of the Rydberg state.
我们报告了两个孤立的、单原子瑞利态之间的范德瓦尔斯相互作用的直接测量,它们之间的距离通过控制保持在几微米。在单原子瑞利态激发的瑞利频率与相互作用相当的工作模式下,我们观察到部分瑞利阻塞,即各种双原子态的时间相关的群体表现出具有几个频率的相干振荡。通过与基于光布洛赫方程的简单模型的定量比较,我们可以提取范德瓦尔斯能量,并观察其 C6/R6 的特征依赖性。测量的 C6 系数与从头算计算吻合良好,并且我们观察到它们随着瑞利态的主量子数 n 的急剧增加。