paper

Photoemission from hybrid states of Cl@ before and after a stabilizing charge transfer

arXiv:1907.04881 · doi:10.1088/1361-6455/ab82df

Abstract

Photoionization calculations of the endofullerene molecule Cl@ with an open-shell chlorine atom are performed in the time-dependent local density approximation (TDLDA) based on a spherical jellium model. Cross sections for atom-fullerene hybrid photoemission studied show the effects of the hybridization symmetry, the giant plasmon and the molecular cavity. Comparisons with the results of Ar@ provide insights in the role of a shell-closing electron and its influence on the dynamics. The results for Cl@ are further compared with those of a more stable, lower energy configuration that results after a electron transfers to Cl forming Cl@. This comparison reveals noticeable differences in the ionization properties of the antibonding hybrid state while the bonding hybrid remains nearly unaltered showing a magnification covering the entire giant plasmon energy range.

7 pages, 4 figures

References in corpus (2)

Cited by in corpus (3)