English

Strain-engineered magnetic order in (LaMnO$_{3}$)$_n$/(SrMnO$_{3}$)$_{2n}$ superlattices

Strongly Correlated Electrons 2015-06-11 v1 Materials Science

Abstract

Using first-principles calculations based on the density functional theory, we show a strong strain dependence of magnetic order in (LaMnO3_{3})n_n/(SrMnO3_{3})2n_{2n} (001) superlattices with n=1,2n=1,2. The epitaxial strain lifts the degeneracy of Mn ege_{g} orbitals, thus inducing an inherent orbital order, which in turn strongly affects the ferromagnetic double exchange of itinerant ege_{g} electrons, competing with the antiferromagnetic superexchange of localized t2gt_{2g} electrons. For the case of tensile strain induced by SrTiO3_3 (001) substrate, we find that the ground state is A-type antiferromagnetic and dx2y2d_{x^2-y^2} orbital ordered, which is in excellent agreement with recent experiments [S. J. May {\it et al.}, Nature Materials {\bf 8}, 892 (2009)]. Instead, for the case of compressive strain induced by LaAlO3_3 (001) substrate, we predict that the ground state is C-type antiferromagnetic and d3z2r2d_{3z^2-r^2} orbital ordered.

Keywords

Cite

@article{arxiv.1208.4655,
  title  = {Strain-engineered magnetic order in (LaMnO$_{3}$)$_n$/(SrMnO$_{3}$)$_{2n}$ superlattices},
  author = {Qinfang Zhang and Shuai Dong and Baolin Wang and Seiji Yunoki},
  journal= {arXiv preprint arXiv:1208.4655},
  year   = {2015}
}

Comments

The paper is accepted for publication in Phys. Rev. B