Multiphoton inner-shell ionization of the carbon atom
Abstract
We apply time-dependent R-matrix theory to study inner-shell ionization of C atoms in ultra-short high-frequency light fields with a photon energy between 170 and 245 eV. At an intensity of 10 W/cm, ionization is dominated by single-photon emission of a electron, with two-photon emission of a 1s electron accounting for about 2-3\% of all emission processes, and two-photon emission of contributing about 0.5-1\%. Three-photon emission of a 1s electron is estimated to contribute about 0.01-0.03\%. Around a photon energy of 225 eV, two-photon emission of a 1s electron, leaving C in either 1s2s2p or 1s2p is resonantly enhanced by intermediate 1s2s2p states. The results demonstrate the capability of time-dependent R-matrix theory to describe inner-shell ionization processes including rearrangement of the outer electrons.
Cite
@article{arxiv.1507.00891,
title = {Multiphoton inner-shell ionization of the carbon atom},
author = {H. F. Rey and H. W. van der Hart},
journal= {arXiv preprint arXiv:1507.00891},
year = {2015}
}
Comments
7 pages, 2 figures, 2 tables