Electron loss and electron emission for grazing impact of noble gas atoms with energies in the keV domain are investigated via timeof-flight spectra recorded in coincidence with the number of emitted electrons. The data is analyzed in terms of computer simulations concerning the interaction of the f
Electron emission for grazing impact of keV He atoms on an Al(1 1 1) surface
β Scribed by S. Lederer; H. Winter; HP. Winter
- Publisher
- Elsevier Science
- Year
- 2005
- Tongue
- English
- Weight
- 148 KB
- Volume
- 232
- Category
- Article
- ISSN
- 0168-583X
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β¦ Synopsis
The energy loss of He atoms with energies E 6 28 keV scattered from Al(1 1 1) under a grazing angle of incidence is recorded in coincidence with the number of electrons emitted in the collision. From our data we deduce the mean energies for emission of a specific number of electrons during impact of the atomic projectiles. We observe that only a fraction of some percent of the energy transferred to metal electrons results in their emission. The mean energy for emission of electrons in head-on binary collisions of He atoms with conduction electrons is estimated from a simple classical model which describes the data fairly well. For higher energies of the projectile motion with respect to the surface normal, i.e. collisions with surface atoms under smaller impact parameters, the mean energy transfer to emitted electrons is enhanced which is attributed to an electron promotion mechanism.
π SIMILAR VOLUMES
Charge fractions after scattering of Ne + ions, Ne 0 atoms and Ar + ions with keV energies under a grazing angle of incidence from an atomically clean and flat Al(1 1 1) surface are studied. For incoming Ne + ions we observe defined ion fractions in the scattered beams, whereas for incident Ne 0 ato