Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published February 23, 2015 | Accepted Version
Report Open

Ion Beam Damage in CaF_2

Abstract

The change in lattice parameter and the induced damage are studied in single crystal CaF_2 bombarded by a 15 MeV Cl ion beam. The lattice parameter change (strain) and the damage for increasing ion beam dose (5 x 10^(12) /cm^2 to 7 x 10^(15)/cm^2) is observed via x-ray rocking curve analysis using a double-crystal diffractometer and x-ray reflection topography. The ion beam energy (range = ~ 4.5 µm in CaF_2) is such that both the electronic region and the nuclear cascade region of energy loss show up in the diffraction signal. By kinematical x-ray diffraction theory analysis, the progress of strain/damage depth profile with increasing beam dose is shown explicitly. The increase in strain is nonlinear with beam dose for the dose range studied. For increasing beam dose, the strain level in the electronic energy loss region is fixed, while that in the nuclear collision loss region increases effectively until that region becomes completely amorphous.

Additional Information

One of the authors (C. R. Wie) would like to thank V. S. Speriosu for help in the lab when he first started this project. This work was supported in part by the NSF (DMR83-18274).

Attached Files

Accepted Version - Ion_Beam_Damage_in....pdf

Files

Ion_Beam_Damage_in....pdf
Files (2.0 MB)
Name Size Download all
md5:ea0743fab7f3875bfb7554759b997034
2.0 MB Preview Download

Additional details

Created:
August 19, 2023
Modified:
January 13, 2024