Strong-field ionization inducing multi-electron-hole coherence probed by attosecond pulses
Abstract
We propose a new scenario to apply IR-pump-XUV-probe schemes to resolving strong field ionization induced and attosecond pulse driven electron-hole dynamics and coherence in real time. The coherent driving of both the infrared laser and the attoscond pulse correlates the dynamics of the core-hole and the valence-hole which leads to the otherwise forbidden absorption and emission of XUV photon. An analytical model is developed based on the strong-field approximation by taking into account of the essential multielectron configurations. The emission spectra from the core-valence transition and the core-hole recombination are found modulating strongly as functions of the time delay between the two pulses, which provides a unique insight into the instantaneous ionization and the interplay of the multi-electron-hole coherence.
Cite
@article{arxiv.1510.07947,
title = {Strong-field ionization inducing multi-electron-hole coherence probed by attosecond pulses},
author = {Jing Zhao and Jianmin Yuan and Zengxiu Zhao},
journal= {arXiv preprint arXiv:1510.07947},
year = {2016}
}
Comments
4 figures