Goldilocks Zone for Enhanced Ionization in Strong Laser Fields
Abstract
Utilizing a benchmark measurement of laser-induced ionization of an H molecular ion beam target at infrared wavelength around 2 m, we show that the characteristic two-peak structure predicted for laser-induced enhanced ionization of H and diatomic molecules in general, is a phenomenon which is confined to a small laser parameter space --- a Goldilocks Zone. Further, we control the effect experimentally and measure its imprint on the electron momentum. We replicate the behavior with simulations, which reproduce the measured kinetic-energy release as well as the correlated-electron spectra. Based on this, a model, which both maps out the Goldilocks Zone and illustrates why enhanced ionization has proven so elusive in H, is derived.
Cite
@article{arxiv.1812.07758,
title = {Goldilocks Zone for Enhanced Ionization in Strong Laser Fields},
author = {M. Möller and A. M. Sayler and P. Wustelt and L. Yue and S. Gräfe and G. G. Paulus},
journal= {arXiv preprint arXiv:1812.07758},
year = {2018}
}
Comments
5 pages, 4 figures