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The role of electronic energy loss in ion beam modification of materials

  • William J. Weber
  • , Dorothy M. Duffy
  • , Lionel Thomé
  • , Yanwen Zhang

Research output: Contribution to journalReview articlepeer-review

188 Scopus citations

Abstract

The interaction of energetic ions with solids results in energy loss to both atomic nuclei and electrons in the solid. In this article, recent advances in understanding and modeling the additive and competitive effects of nuclear and electronic energy loss on the response of materials to ion irradiation are reviewed. Experimental methods and large-scale atomistic simulations are used to study the separate and combined effects of nuclear and electronic energy loss on ion beam modification of materials. The results demonstrate that nuclear and electronic energy loss can lead to additive effects on irradiation damage production in some materials; while in other materials, the competitive effects of electronic energy loss leads to recovery of damage induced by elastic collision cascades. These results have significant implications for ion beam modification of materials, non-thermal recovery of ion implantation damage, and the response of materials to extreme radiation environments.

Original languageEnglish
Pages (from-to)1-11
Number of pages11
JournalCurrent Opinion in Solid State and Materials Science
Volume19
Issue number1
DOIs
StatePublished - Feb 1 2015
Externally publishedYes

Keywords

  • Electronic/nuclear energy loss
  • Ion annealing
  • Irradiation effects
  • Synergistic effects
  • Thermal spike model
  • Two-temperature model

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