2D electron momentum distributions for transfer ionization in fast proton Helium collisions
Abstract
The momentum distribution of the electron in the reaction p+He H + He + is measured for projectile energies =300 and 630 keV/u at very small scattering angles of hydrogen. We mainly present two dimensional distributions parallel and perpendicular to the projectile beam. Theoretical calculations were carried out within the Plane Wave First Born Approximation (PWFBA), which includes both electron emission mechanisms, shake-off and sequential capture and ionization. It is shown that electron correlations in the target wave function play the most important role in the explanation of experimentally observed backward emission. Second order effects have to be involved to correctly describe the forward emission of the electron.
Keywords
Cite
@article{arxiv.1305.4358,
title = {2D electron momentum distributions for transfer ionization in fast proton Helium collisions},
author = {M. S. Schoeffler and O. Chuluunbaatar and S. Houamer and A. G. Galstyan and J. N. Titze and L. Ph. H. Schmidt and T. Jahnke and H. Schmidt-Boecking and R. Doerner and Yu. V. Popov and A. A. Gusev and C. Dal Cappello},
journal= {arXiv preprint arXiv:1305.4358},
year = {2015}
}
Comments
14 pages, 4 figures