在X射线分子电离中的八秒延迟
Taran Driver1,2, Miles Mountney3, Jun Wang4,5,6
1Stanford PULSE Institute, SLAC National Accelerator Laboratory, Menlo Park, CA, USA. tdriver@stanford.edu.
光电子的发射不是瞬间发生的,而每秒钟的延迟显示出分子动态. 测量这些核心级延迟, 发现复杂的电子相互作用.
科学领域:
- 原子和分子物理
- 量子动力学
- 超快的科学
背景情况:
- 光电效应表现出一秒的延迟, 提供了分子动态的洞察力.
- 低于五秒的光脉冲可以研究光离子化动态.
- 时间解析的核心水平光电化测量以前受到X射线源的限制.
研究的目的:
- 测量核心水平电子的时间解析的X射线光辐射延迟.
- 通过一秒钟的X射线脉冲来研究核心级光电离的复杂动力学.
- 探索对光发射延迟的贡献,包括电子捕获和散射.
主要方法:
- 使用来自自由电子激光器的轻微X射线脉冲.
- 在NO中测量氧K门附近的X射线光辐射延迟.
- 扫描K门区域进行延迟光谱分析.
主要成果:
- 观察到核心水平电子的意外大的X射线光辐射延迟,高达700阿托秒.
- 发现延迟频谱具有丰富的调制,表明复杂的电子过程.
- 从短暂的电子捕获,奥格尔-迈特纳电子碰撞和多电子散射的确定的贡献.
结论:
- 通过X射线对秒的实验可以解决时间解决的核心级光离子化动态.
- 观察到的延迟和光谱调制为电子相关性提供了详细的视图.
- 这项工作为研究高时间分辨率的分子动力学开辟了新的途径.
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