Physics Department, Western Michigan University, Kalamazoo, Michigan 49008, USA.
Phys Rev Lett. 2010 Aug 20;105(8):083005. doi: 10.1103/PhysRevLett.105.083005.
We investigate the creation of double K-shell holes in N2 molecules via sequential absorption of two photons on a time scale shorter than the core-hole lifetime by using intense x-ray pulses from the Linac Coherent Light Source free electron laser. The production and decay of these states is characterized by photoelectron spectroscopy and Auger electron spectroscopy. In molecules, two types of double core holes are expected, the first with two core holes on the same N atom, and the second with one core hole on each N atom. We report the first direct observations of the former type of core hole in a molecule, in good agreement with theory, and provide an experimental upper bound for the relative contribution of the latter type.
我们通过利用来自 Linac Coherent Light Source 自由电子激光的强 X 射线脉冲,在比核心空穴寿命更短的时间尺度上研究了 N2 分子中双 K 壳层空穴的产生,该 X 射线脉冲可以实现两次光子的连续吸收。通过光电电子能谱和俄歇电子能谱来对这些状态的产生和衰减进行了表征。在分子中,预计会有两种类型的双核心空穴,第一种是两个核心空穴位于同一个 N 原子上,第二种是每个 N 原子上有一个核心空穴。我们报告了在分子中首次直接观察到前一种类型的核心空穴,这与理论相符,并为后一种类型的相对贡献提供了实验上限。