English

Polar Properties and Hysteresis Loops in Multilayered Thin Films Ferroelectric/Virtual Ferroelectric

Materials Science 2014-07-01 v1

Abstract

In the framework of Landau--Ginzburg--Devonshire (LGD) phenomenological theory, the influence of misfit strains, surface energy, and finite-size effects on phase diagrams, polar properties, and hysteresis loops has been calculated for multilayered thin films of the type ferroelectric/virtual ferroelectric. The influence of elastic deformations that arise at the interface thin film--substrate owing to a mismatch between the lattice constants in the film and the substrate on the phase diagrams of multilayered thin films virtual ferroelectric SrTiO3_{3}/ferroelectric BaTiO3_{3} has been studied for the first time. In contrast to bulk BaTiO3_{3}, in which only four phases (cubic, tetragonal, orthorhombic, and rhombohedral) can exist, it turned out that six thermodynamically stable BaTiO3_{3} phases (paraelectric phase and tetragonal (FEc), two monoclinic (FEaac and FEac), and two orthorhombic (FEa and FEaa) ferroelectric phases) can exist in multilayered SrTiO3_{3}/BaTiO3_{3} films. The main polar properties of hysteresis loops (shape, coercive field, and spontaneous polarization) in thin multilayered SrTiO3_{3}/BaTiO3_{3} films are calculated. It is shown that the system demonstrates a strong dependence of its polar properties on the thickness of SrTiO3_{3} and BaTiO3_{3} layers, as well as on the elastic misfit strains, with SrTiO3_{3} playing the role of dielectric layer: the thicker the layer, the stronger is the depolarization field, which, in its turn, reduces the spontaneous polarization in the BaTiO3_{3} film.

Keywords

Cite

@article{arxiv.1406.7548,
  title  = {Polar Properties and Hysteresis Loops in Multilayered Thin Films Ferroelectric/Virtual Ferroelectric},
  author = {E. A. Eliseev and M. D. Glinchuk and A. N. Morozovska and Ya. V. Yakovenko},
  journal= {arXiv preprint arXiv:1406.7548},
  year   = {2014}
}

Comments

9 pages, 5 figures