Published October 1, 2004 | Version v1
Journal article

Impact of radiation defects on the structural stability of pure zirconia

  • 1. Laboratoire de Structures, Proprietes et Modelisation des Solides, UMR CNRS 8580 Ecole Centrale Paris, F-92295 Chatenay Malabry (France)
  • 2. Laboratoire d'Analyses Microstructurales des Materiaux, CEA/Saclay F-911 91 Gif sur Yvette (France)
  • 3. Laboratoire de Metallurgie Structurale, CEA/Saclay F-911 91 Gif sur Yvette (France)
  • 4. CEA/Saclay, DSM/DRECAM/SCM/URA 331 CNRS, F-91191 Gif sur Yvette (France)
  • 5. CECM, UPR CNRS 2801, F-94407 Vitry sur Seine (France)

Description

Optical spectroscopy and x-ray diffraction were used to study the behavior of polycrystalline samples of pure monoclinic zirconia irradiated by low energy ions. A microscopic model based on these experiments is proposed to explain the displacive phase transition observed in this material after irradiation. Defects, produced in the oxygen sublattice, induce important strain fields on a nanometric scale. This strain field can be handled as a secondary order parameter within the Landau theory approach, leading to a decrease of the phase transition temperature and thus quenching the high temperature tetragonal phase. The model also explains the consequences of the thermal annealing for restoring the ground state monoclinic structure

Additional details

Identifiers

Publishing Information

Journal Title
Physical Review. B, Condensed Matter and Materials Physics
Journal Volume
70
Journal Issue
13
Journal Page Range
p. 134116-134116.7
ISSN
1098-0121

Optional Information

Notes
(c) 2004 The American Physical Society