Back to Search Start Over

A re-examination of antiferroelectric PbZrO$_3$ and PbHfO$_3$: an 80-atom $Pnam$ structure

Authors :
Baker, J. S.
Pa��ciak, M.
Shenton, J. K.
Vales-Castro, P.
Xu, B.
Hlinka, J.
M��rton, P.
Burkovsky, R. G.
Catalan, G.
Glazer, A. M.
Bowler, D. R.
Publication Year :
2021

Abstract

First principles density functional theory (DFT) simulations of antiferroelectric (AFE) PbZrO$_3$ and PbHfO$_3$ reveal a dynamical instability in the phonon spectra of their purported low temperature $Pbam$ ground states. This instability doubles the $c$-axis of $Pbam$ and condenses five new small amplitude phonon modes giving rise to an 80-atom $Pnam$ structure. Compared with $Pbam$, the stability of this structure is slightly enhanced and highly reproducible as demonstrated through using different DFT codes and different treatments of electronic exchange & correlation interactions. This suggests that $Pnam$ is a new candidate for the low temperature ground state of both materials. With this finding, we bring parity between the AFE archetypes and recent observations of a very similar AFE phase in doped or electrostatically engineered BiFeO$_3$.<br />14 pages, 3 figures and 4 tables

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....280c700a7efbe7f265ff000b0ef3dd06