English

Ferroelectricity in strained Ca$_{0.5}$Sr$_{0.5}$TiO$_3$ from first principles

Materials Science 2015-05-19 v1

Abstract

We present a density functional theory investigation of strained Ca0.5_{0.5}Sr0.5_{0.5}TiO3_3. We have determined the structure and polarization for a number of arrangements of Ca and Sr in a 2×\times2×\times2 supercell. The a and b lattice vectors are strained to match the lattice constants of the rotated Si(001) face. To set the context for the CSTO study, we also include simulations of the Si(001) constrained structures for CaTiO3_3 and SrTiO3_3. Our primary findings are that all Ca0.5_{0.5}Sr0.5_{0.5}TiO3_3 structures examined except one are ferroelectric, exhibiting polarizations ranging from 0.08 C/m2^2 for the lowest energy configuration to about 0.26 C/m2^2 for the higher energy configurations. We find that the configurations with larger polarizations have lower c/a ratios. The net polarization of the cell is the result of Ti-O ferroelectric displacements regulated by A-site cations.

Keywords

Cite

@article{arxiv.1007.4210,
  title  = {Ferroelectricity in strained Ca$_{0.5}$Sr$_{0.5}$TiO$_3$ from first principles},
  author = {Christopher R. Ashman and C. Stephen Hellberg and Samed Halilov},
  journal= {arXiv preprint arXiv:1007.4210},
  year   = {2015}
}

Comments

13 pages, 4 figures

R2 v1 2026-06-21T15:52:29.573Z