Tong D, Farooqi S M, Stanojevic J, Krishnan S, Zhang Y P, Côté R, Eyler E E, Gould P L
Physics Department, University of Connecticut, Storrs 06269, USA.
Phys Rev Lett. 2004 Aug 6;93(6):063001. doi: 10.1103/PhysRevLett.93.063001. Epub 2004 Aug 3.
In the laser excitation of ultracold atoms to Rydberg states, we observe a dramatic suppression caused by van der Waals interactions. This behavior is interpreted as a local excitation blockade: Rydberg atoms strongly inhibit excitation of their neighbors. We measure suppression, relative to isolated atom excitation, by up to a factor of 6.4. The dependences of this suppression on both laser irradiance and atomic density are in good agreement with a mean-field model. These results are an important step towards using ultracold Rydberg atoms in quantum information processing.
在将超冷原子激光激发到里德堡态的过程中,我们观察到由范德瓦尔斯相互作用导致的显著抑制现象。这种行为被解释为局部激发阻塞:里德堡原子强烈抑制其相邻原子的激发。相对于孤立原子激发,我们测量到的抑制因子高达6.4倍。这种抑制对激光辐照度和原子密度的依赖性与平均场模型高度吻合。这些结果是朝着在量子信息处理中使用超冷里德堡原子迈出的重要一步。