Applied Physics Letters · 2005 · 160 citations · 21 references
Materials ScienceOxide HeterostructuresMultiferroicsEngineeringDielectric AnomalyElectrostatic CouplingFerroelectric ApplicationThermodynamic ModelApplied PhysicsCondensed Matter PhysicsFerroelectric MaterialsDielectric ResponseMultilayer HeterostructuresThin FilmsFerroelectric-paraelectric BilayersMagnetoelectric Materials
A thermodynamic model is presented that describes the polarization and the dielectric response of ferroelectric-paraelectric bilayers and multilayers. It is shown that a strong electrostatic coupling between the layers results in the suppression of ferroelectricity at a critical paraelectric layer thickness. The bilayer is expected to have a gigantic dielectric response similar to the dielectric anomaly near Curie–Weiss temperature in homogeneous ferroelectrics at this critical thickness. A numerical analysis is carried out for a pseudomorphic (001) BaTiO3∕SrTiO3 heteroepitaxial bilayer on (001) SrTiO3 and a stress-free BaTiO3∕SrTiO3 bilayer. Complete polarization suppression and a dielectric peak are predicted to occur at approximately 66% and 14% of SrTiO3 in these two systems, respectively.
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