论文标题
在回忆期间表征Fano共鸣
Characterizing Fano Resonances During Recollision
论文作者
论文摘要
当强光照射量子系统时,一个电离电子胶体及其母离子在相同的光周期内,并且在非常短的(很少的飞秒)遇到的情况下,其动能从低能到高能量并返回。因此,回忆提供了前所未有的时间分辨率,这是建立Attosecond科学的基础。对于简单的系统,记忆轨迹是由强球与库仑电势一起作用的强场塑造的,并且可以轻松地计算和测量。但是,对于更复杂的系统,多电源效应也很重要,因为它们会动态地改变回忆的波数据包轨迹。在这里,我们从理论上研究了FANO共振,这是最容易访问的多电源效应之一,并且我们展示了当我们使用原位测量时,多电极动力学如何明确隔离。原位测量的一般类别可以提供与时间相关的电子结构理论所需的关键信息,并使我们能够衡量物质的最终时间响应。
When intense light irradiates a quantum system, an ionizing electron recollides with its parent ion within the same light cycle and, during that very brief (few femtosecond) encounter, its kinetic energy sweeps from low to high energy and back. Therefore, recollision offers unprecedented time resolution and it is the foundation on which attosecond science is built. For simple systems, recolliding trajectories are shaped by the strong field acting together with the Coulomb potential and they can be readily calculated and measured. However, for more complex systems, multielectron effects are also important because they dynamically alter the recolliding wave packet trajectories. Here, we theoretically study Fano resonances, one of the most accessible multielectron effects, and we show how multielectron dynamics can be unambiguously isolated when we use in situ measurement. The general class of in situ measurement can provide key information needed for time-dependent ab initio electronic structure theory and will allow us to measure the ultimate time response of matter.