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Phase state and structure of ferroelectric ceramics under irradiation

  • A. Sternberg*
  • , A. Spule
  • , L. Shebanovs
  • , E. Birks
  • , H. W. Weber
  • , H. Klima
  • , F. Sauerzopf
  • *Corresponding author for this work
  • University of Latvia
  • TU Wien

Research output: Contribution to journalArticlepeer-review

17 Citations (Scopus)

Abstract

Radiation of different types (γ-rays, electrons, neutrons) and fluence has been used to study the defect processes as well as the change of physical parameters in PLZT X/65/35 (X=4.5-11 at.%) ceramics. A gradual shift of extinction edge to longer wavelengths, reduction of polarization and ε values, and a progressive diffusion of the phase transition including a defect-stimulated phase transformation from the rhombohedral to quasicubic structure in PLZT 6.5-8.5/65/35 compositions with the increase of irradiation fluence are observed in neutron irradiated PLZT ceramics. The prevalence of internal bias field or radiation-induced random field determining the changes of dielectic characteristics in PLZT materials is controlled by La concentration. A neutron fluence of 2.1018 n/cm2 is close to critical for PLZT ceramics.

Original languageEnglish
Pages (from-to)1096-1099
Number of pages4
JournalKey Engineering Materials
Issue number136 PART 2
Publication statusPublished - 1997

Keywords

  • Dielectric polarization and permittivity
  • Electron-
  • Extinction spectra
  • Phase transition
  • Transparent ferroelectric ceramics
  • γ-ray and neutron irradiation

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