Electron dynamics in the carbon atom induced by spin-orbit interaction
Abstract
We use R-Matrix theory with Time dependence (RMT) to investigate multiphoton ionization of ground-state atomic carbon with initial orbital magnetic quantum number =0 and =1 at a laser wavelength of 390 nm and peak intensity of 10 W cm. Significant differences in ionization yield and ejected-electron momentum distribution are observed between the two values for . We use our theoretical results to model how the spin-orbit interaction affects electron emission along the laser polarization axis. Under the assumption that an initial C atom is prepared at zero time delay with , the dynamics with respect to time delay of an ionizing probe pulse modelled using RMT theory is found to be in good agreement with available experimental data.
Cite
@article{arxiv.1408.5734,
title = {Electron dynamics in the carbon atom induced by spin-orbit interaction},
author = {H. F. Rey and H. W. van der Hart},
journal= {arXiv preprint arXiv:1408.5734},
year = {2014}
}
Comments
8 pages, 5 figures