在现场观测非极性到极性强的原子离子碰撞动态
M Berngruber1, D J Bosworth2,3, O A Herrera-Sancho1,4,5,6
15. Physikalisches Institut, <a href="https://ror.org/04vnq7t77">Universität Stuttgart</a>, Pfaffenwaldring 57, 70569 Stuttgart, Germany.
Physical review letters
|September 6, 2024
概括
离子和里德伯格原子之间的碰撞动态涉及多个路径,由于斯塔克状态合. 令人惊的是,更冷的系统显示出更快的动态,这一发现得到了模拟的支持.
科学领域:
- 原子,分子和光学物理学
- 量子化学 是一个量子化学.
- 化学物理 化学物理
背景情况:
- 里德伯格原子具有很大的电子轨道,使它们对外部场非常敏感.
- 涉及Rydberg原子的碰撞可以访问复杂的多通道动态.
- 由电场诱导的斯特克状态显著改变了里德伯格原子相互作用.
研究的目的:
- 在多通道模式下研究离子和里德伯格原子之间的碰撞动态.
- 了解斯塔克状态合对碰撞时间尺度的影响.
- 为了探索离子 - 里德伯格原子碰撞动态的温度依赖.
主要方法:
- 使用双极选择规则对离子-里德伯格原子碰撞对进行实验准备.
- 在一系列温度 (k_{B}μK 到 k_{B}K) 的碰撞动态的现场观测.
- 半古典模拟模型对状态演变和非adiabatic动态.
主要成果:
- 由于相互作用潜力的空间梯度不同,观察到碰撞时间尺度的分离.
- 证明了反直觉的温度依赖性:较冷的系统表现出更快的碰撞动态.
- 在非极性电位上对碰撞对进行受控的准备,影响通道占用.
结论:
- 非极地和极地斯塔克状态之间的合创造了复杂的碰撞动态.
- 非协同动力学是可调节的,在离子-里德伯格原子相互作用中起着至关重要的作用.
- 观察到的温度依赖性为控制量子碰撞过程提供了新的见解.
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