论文标题
在紧密的光学偶极陷阱中可控的原子碰撞
Controllable atomic collision in a tight optical dipole trap
论文作者
论文摘要
单个原子是研究量子光学和量子信息处理的有趣候选者。最近,使用紧密的光学偶极陷阱对单个原子的捕获和操纵引起了极大的兴趣。在这里,我们报告了对带有向后传播偶极陷阱束的改良光学偶极陷阱中原子动力学的实验研究,其中两次碰撞速率的变化已实现了六次。介绍的理论模型可以预测在适当的实验条件下几乎没有原子加载率的高概率。这项工作为控制偶极子陷阱中的几个原子动力学以及对几个原子的集体量子光学效应的研究提供了另一种方法。
Single atoms are interesting candidates for studying quantum optics and quantum information processing. Recently, trapping and manipulation of single atoms using tight optical dipole traps have generated considerable interest. Here we report an experimental investigation of the dynamics of atoms in a modified optical dipole trap with a backward propagating dipole trap beam, where a change in the two-atom collision rate by six times has been achieved. The theoretical model presented gives a prediction of high probabilities of few-atom loading rates under proper experimental conditions. This work provides an alternative approach to the control of the few-atom dynamics in a dipole trap and the study of the collective quantum optical effects of a few atoms.