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- W2064555293 abstract "A nonlinear thermodynamic theory is applied to strained ferroelectric superlattices and used to determine the dependence of superlattice permittivity on composition. To that end, spontaneous polarizations and field-induced polarization changes in the ferroelectric layers $A$ and $B$ with thicknesses ${t}_{A}$ and ${t}_{B}$ are calculated as a function of the volume fraction ${ensuremath{phi}}_{A}={t}_{A}/({t}_{A}+{t}_{B})$. The existence of a dielectric anomaly at a specific composition ${ensuremath{phi}}_{A}^{ensuremath{ast}}$ is predicted for the superlattices, where only one of ferroelectric layers has nonzero out-of-plane polarization in the uncoupled state. The theoretical predictions agree with the composition dependence of permittivity displayed by the $text{Pb}({text{Sc}}_{1/2}{text{Nb}}_{1/2}){text{O}}_{3}/{text{PbTiO}}_{3}$ superlattices grown on ${text{SrRuO}}_{3}$-covered ${text{SrTiO}}_{3}$." @default.
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- W2064555293 date "2010-04-19" @default.
- W2064555293 modified "2023-10-16" @default.
- W2064555293 title "Enhancing permittivity of ferroelectric superlattices via composition tuning" @default.
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- W2064555293 doi "https://doi.org/10.1103/physrevb.81.144118" @default.
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