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Free energy and molecular dynamics calculations for the cubic-tetragonal phase transition in zirconia

Fabris, Stefano
•
Paxton AT
•
Finnis MW
2001
  • journal article

Periodico
PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS
Abstract
The high-temperature cubic-tetragonal phase transition of pure stoichiometric zirconia is studied by molecular dynamics (MD) simulations and within the framework of the Landau theory of phase transformations. The interatomic forces are calculated using an empirical, self-consistent, orthogonal tight-binding model, which includes atomic polarizabilities up to the quadrupolar level. A first set of standard MD calculations shows that, on increasing temperature, one particular vibrational frequency softens. The temperature evolution of the free-energy surfaces around the phase transition is then studied with a second set of calculations. These combine the thermodynamic integration technique with constrained MD simulations. The results seem to support the thesis of a second-order phase transition but with unusual, very anharmonic behavior above the transition temperature.
DOI
10.1103/PhysRevB.63.094101
WOS
WOS:000167312000024
Archivio
http://hdl.handle.net/20.500.11767/32333
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-0034898356
Diritti
metadata only access
Scopus© citazioni
60
Data di acquisizione
Jun 7, 2022
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Web of Science© citazioni
53
Data di acquisizione
Mar 23, 2024
Visualizzazioni
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Data di acquisizione
Apr 19, 2024
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