Helium 1s photoemission and photon stimulated desorption of He+ ions by double excitations from adsorbed helium layers: Zero-point motion and matrix effects

Author:

Riepl S. J.1,Kossler S.1,Braun J.2,Minár J.3,Barth J. V.1,Feulner P.1

Affiliation:

1. School of Natural Sciences, Physik E20, Technische Universität München 1 , D-85748 Garching, Germany

2. Department Chemie, Ludwig-Maximilians-Universität München 2 , D-81377 München, Germany

3. University of West Bohemia, New Technologies-Research Center 3 , Pilsen, Czech Republic

Abstract

Excited with p-polarized light, the near-edge He 1s photoemission signal from monolayers of He adsorbed on the close-packed surfaces of silver, copper, ruthenium, and platinum shows periodic splitting with photoelectron momentum. By applying a simple single scattering model, we explain this effect by zero-point motion induced variation of the photo hole’s image charge screening and interference of the photoelectron’s final state wavefunction. Relativistic one-step photoemission calculations support this interpretation. In the second part of our study, we investigate neutral double excitations of He bilayers adsorbed on platinum by monitoring the emission of He+ ions. We identify strong matrix and zero-point motion effects, namely resonances absent for isolated He, density and light polarization dependence, line broadening and a correlation of excitation and kinetic ion-energy.

Publisher

AIP Publishing

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