Zhang Linjie, Feng Zhigang, Zhao Jianming, Li Changyong, Jia Suotang
State Key Laboratory of Quantum Optics and Quantum Optics Devices, College of Physics and Electronics Engineering, Shanxi University, Taiyuan 030006, China.
Opt Express. 2010 May 24;18(11):11599-606. doi: 10.1364/OE.18.011599.
We present the explicit dynamics process of Rydberg cesium atoms initially experiencing a repulsive van der Waals (vdW) interaction by measuring the line width and intensity of the Rydberg ionization spectra. The signals of Rydberg atoms and free ions are recorded simultaneously within an initial 3.5 micros delay time between the excitation laser and the ramp electric field. For high-density gases, a rapid decrease of Rydberg atoms and an increase of free ions are observed, which is not found to be the case for low-density gases. The experimental results indicate that superradiance is the main cause of the redistribution of Rydberg atoms from the repulsive potential to the attractive potential for high density, which provides the initial ionization. The corresponding theoretical calculation is also given.
我们通过测量里德堡铯原子电离光谱的线宽和强度,展示了最初经历排斥性范德瓦尔斯(vdW)相互作用的里德堡铯原子的明确动力学过程。在激发激光和斜坡电场之间的初始3.5微秒延迟时间内,同时记录里德堡原子和自由离子的信号。对于高密度气体,观察到里德堡原子迅速减少而自由离子增加,而低密度气体则未发现这种情况。实验结果表明,超辐射是高密度下里德堡原子从排斥势重新分布到吸引势的主要原因,这提供了初始电离。同时也给出了相应的理论计算。