English

First-Principles Study of the Ferroelectric Properties of SrTaO$_2$N/SrTiO$_3$ Interfaces

Materials Science 2019-12-24 v1 Other Condensed Matter

Abstract

First-principles calculations based on density-functional theory in the pseudo-potential approach have been performed for the total energy, crystal structure and cell polarization for SrTaO2_2N/SrTiO3_3 heterostructures. Different heterojunctions were analyzed in terms of the termination atoms at the interface plane, and periodic or non-periodic stacking in the perpendicular direction. The calculations show that the SrTaO2_2N layer is compressed along the abab-plane, while the SrTiO3_3 is elongated, thus favoring the formation of P4mm local environment on both sides of the interface, leading to net macroscopic polarization. The analysis of the local polarization as a function of the distance to the interface, for each individual unit cell was found to depend on the presence of a N or an O atom at the interface, and also on the asymmetric and not uniform cc-axis deformation due to the induced strain in the abab-plane. The resulting total polarization in the periodic array was 0.54 \approx 0.54 C/m2^2, which makes this type of arrangement suitable for microelectronic applications.

Keywords

Cite

@article{arxiv.1912.10791,
  title  = {First-Principles Study of the Ferroelectric Properties of SrTaO$_2$N/SrTiO$_3$ Interfaces},
  author = {Ruby C. Bastidas Briceño and Victoria I. Fernández and Eitel Peltzer y Blancá and Roberto E. Alonso},
  journal= {arXiv preprint arXiv:1912.10791},
  year   = {2019}
}