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Microscopic picture of paraelectric perovskites from structural prototypes

Authors :
Michele Kotiuga
Samed Halilov
Boris Kozinsky
Marco Fornari
Nicola Marzari
Giovanni Pizzi
Source :
Physical Review Research. 4(1)

Abstract

We show with first-principles molecular dynamics the persistence of intrinsic $\langle111\rangle$ Ti off-centerings for BaTiO$_3$ in its cubic paraelectric phase. Intriguingly, these are inconsistent with the Pm$\bar 3$m space group often used to atomistically model this phase using density functional theory or similar methods. Therefore we deploy a systematic symmetry analysis to construct representative structural models in the form of supercells that satisfy a desired point symmetry but are built from the combination of lower-symmetry primitive cells. We define as structural prototypes the smallest of these that are both energetically and dynamically stable. Remarkably, two 40-atom prototypes can be identified for paraelectric BaTiO$_3$; these are also common to many other $AB$O$_3$ perovskites. These prototypes can offer structural models of paraelectric phases that can be used for the computational engineering of functional materials. Last, we show that the emergence of B-cation off-centerings and the primitive-cell phonon instabilities are controlled by the equilibrium volume, in turn dictated by the filler A cation.<br />18 pages, 4 figures in main text, 14 figures in appendix

Details

Language :
English
ISSN :
26431564
Volume :
4
Issue :
1
Database :
OpenAIRE
Journal :
Physical Review Research
Accession number :
edsair.doi.dedup.....31a939cdbf5cfbaec234b79e4c1c6c6d
Full Text :
https://doi.org/10.1103/physrevresearch.4.l012042