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Radiation creation of cation defects in alkali halide crystals: Review and today's concept

  • A. Lushchik*
  • , C. Lushchik
  • , E. Vasil'Chenko
  • , A. I. Popov
  • *Corresponding author for this work
  • University of Tartu

Research output: Contribution to journalReview articlepeer-review

8 Citations (Scopus)

Abstract

Irradiation of alkali halide crystals creates pairs of Frenkel defects both in anion and cation sublattices. How-ever, the particular nonimpact creation mechanisms (related to the decay of different electronic excitations) of cation Frenkel pairs are still unclear. At helium temperatures, there is yet no direct evidences of the creation of stable (long-lived) elemental cation defects. On the other hand, a number of complex structural defects con-taining cation vacancies and/or interstitials, were detected after irradiation of alkali halides at higher tempera-tures. Besides already proved mechanism related to the association of H and VK centers into trihalide molecules, the following possibilities of cation interstitial-vacancy pair creation are analyzed as well: (i) a direct decay of cation or anion excitons, (ii) the transformation of anion Frenkel pairs, formed at the decay of anion excitons or e-h recombination, into cation ones.

Original languageEnglish
Pages (from-to)357-367
Number of pages11
JournalFizika Nizkikh Temperatur
Volume44
Issue number4
Publication statusPublished - Apr 2018

Keywords

  • Alkali halides
  • Cation defect creation
  • Cation excitons
  • Frenkel defects
  • Photoluminescence

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