Evolution of the transverse photoelectron momentum distribution for atomic ionization driven by a laser pulse with varying ellipticity
Atomic Physics
2015-06-22 v3
Abstract
We consider the process of atomic ionization driven by a laser pulse with varying ellipticity. We study distribution of the momenta of the photoelectrons, ionized by a strong laser field, emitted in the direction perpendicular to the polarization plane (transverse distribution). We show, that with changing laser pulse ellipticity, the transverse distribution evolves from the singular cusp-like distribution for the close to linear polarization to the smooth gaussian-like structure for the close to circular polarization. In the latter case, when the ellipticity parameter the strong-field approximation formula for the transverse momentum distribution becomes quantitatively correct.
Keywords
Cite
@article{arxiv.1406.6747,
title = {Evolution of the transverse photoelectron momentum distribution for atomic ionization driven by a laser pulse with varying ellipticity},
author = {I. A. Ivanov},
journal= {arXiv preprint arXiv:1406.6747},
year = {2015}
}