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An analytical energy-loss line shape for high depth resolution in ion-beam analysis

✍ Scribed by P.L. Grande; A. Hentz; R.P. Pezzi; I.J.R. Baumvol; G. Schiwietz


Publisher
Elsevier Science
Year
2007
Tongue
English
Weight
226 KB
Volume
256
Category
Article
ISSN
0168-583X

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✦ Synopsis


The knowledge of the energy-loss distribution in a single ion-atom collision is a prerequisite for subnanometric resolution in depthprofiling techniques such as nuclear-reaction profiling (NRP) and medium energy ion-scattering (MEIS). The usual Gaussian approximation specified by the stopping power and energy straggling is not valid for near surface regions of solids, where subnanometric or monolayer resolution can be achieved. In this work we propose an analytical formula for the line shape to replace the usual Gaussian distribution widely used in low-resolution ion-beam analysis. Furthermore, we provide a simple physical method to derive the corresponding shape parameters. We also present a comparison with full coupled-channel calculations as well as with experimental data at nearly single collision conditions.