Published January 1, 2006 | Version v1
Report

Mean excitation energy for the stopping power of light elements

Description

We have evaluated the mean excitation energy or I value for Coulomb excitations by swift charged particles passing through carbon, aluminum and silicon. A self-consistent Kramers-Kronig analysis was used to treat X-ray optical spectra now available from synchrotron light sources allowing us to carry out Bethe's original program of evaluating I from the observed dielectric response. We find that the K and L shell are the dominant contributors to I in these light elements and that the contribution of valence electrons is relatively small, primarily because of their low binding energy. The optical data indicate that Si and Al have nearly equal I values, in contrast to Bloch's Thomas-Fermi result, I ∞ Z. The optically based I values for C and Al are in excellent agreement with experiment. However, the dielectric-response I value for Si is 164 ± 2 eV, at variance with the commonly quoted value of 173 ± 3 eV derived from stopping-power measurements

Availability note (English)

Available from Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Volume 250, No.1-2, pages 1-5 (September 2006)

Additional details

Publishing Information

Imprint Pagination
5 p.
Report number
ANL/PHY/CP--117490

Conference

Title
13. International Conference on Radiation Effects in Insulators
Acronym
REI-2005
Dates
28 Aug - 2 Sep 2005
Place
Santa Fe, NM (United States)

INIS

Optional Information