Min Yijing, Xu Xue, Lv Xiao, Zhang Yiming, Lu Yinuo, Hao Xiang, Tan Jia
Opt Express. 2024 Jan 1;32(1):857-870. doi: 10.1364/OE.513783.
Charge migration initiated by the coherent superposition of several electronic states is a basic process in intense laser-matter interactions. Observing this process on its intrinsic timescale is one of the central goals of attosecond science. Here, using forward-scattering photoelectron holography we theoretically demonstrate a scheme to probe the charge migration in molecules. In our scheme, by solving the time-dependent Schrödinger equation, the photoelectron momentum distributions (PEMDs) for strong-field tunneling ionization of the molecule are obtained. For a superposition state, it is shown that an intriguing shift of the holographic interference appears in the PEMDs, when the molecule is aligned perpendicularly to the linearly polarized laser field. With the quantum-orbit analysis, we demonstrate that this shift of the interference fringes is caused by the time evolution of the non-stationary superposition state. By analyzing the dependence of the shift on the final parallel momentum of the electrons, the relative phase and the expansion coefficient ratio of the two electronic states involved in the superposition state are determined accurately. Our study provides an efficient method for probing the charge migration in molecules. It will facilitate the application of the forward-scattering photoelectron holography to survey the electronic dynamics in more complex molecules.
由多个电子态的相干叠加引发的电荷迁移是强激光与物质相互作用中的一个基本过程。在其固有时间尺度上观测这一过程是阿秒科学的核心目标之一。在此,我们利用前向散射光电子全息术从理论上论证了一种探测分子中电荷迁移的方案。在我们的方案中,通过求解含时薛定谔方程,得到了分子强场隧穿电离的光电子动量分布(PEMD)。对于一个叠加态,结果表明,当分子垂直于线偏振激光场排列时,在PEMD中会出现全息干涉的有趣偏移。通过量子轨道分析,我们证明这种干涉条纹的偏移是由非定态叠加态的时间演化引起的。通过分析偏移对电子最终平行动量的依赖性,可以精确确定叠加态中两个电子态的相对相位和展开系数比。我们的研究为探测分子中的电荷迁移提供了一种有效方法。这将有助于前向散射光电子全息术在更复杂分子中电子动力学研究方面的应用。