English

Tunable Magnetic Properties in Sr$_2$FeReO$_6$ Double-Perovskite

Strongly Correlated Electrons 2023-04-27 v1 Materials Science

Abstract

Double-perovskite oxides have attracted recent attention due to their attractive functionalities and application potential. In this paper, we demonstrate the effect of dual controls, i.e., the deposition pressure of oxygen (PO2_O2) and lattice mismatch (ϵ\epsilon), on tuning magnetic properties in epitaxial double-perovskite Sr2_2FeReO6_6 films. In a nearly-lattice-matched Sr2_2FeReO6_6/SrTiO3_3 film, the ferrimagnetic-to-paramagnetic phase transition occurs when PO2_O2 is reduced to 30 mTorr, probably due to the formation of Re4+^{4+} ions that replace the stoichiometric Re5+^{5+} to cause disorders of BB-site ions. On the other hand, a large compressive strain or tensile strain shifts this critical PO2_O2 to below 1 mTorr or above 40 mTorr, respectively. The observations could be attributed to the modulation of BB-site ordering by epitaxial strain through affecting elemental valence. Our results provide a feasible way to expand the functional tunability of magnetic double-perovskite oxides that hold great promise for spintronic devices.

Keywords

Cite

@article{arxiv.2304.13288,
  title  = {Tunable Magnetic Properties in Sr$_2$FeReO$_6$ Double-Perovskite},
  author = {Z. T. Zhang and H. Yan and Z. Huang and X. Chi and C. J. Li and Z. S. Lim and S. W. Zeng and K. Han and G. J. Omar and K. X. Jin and A. Ariando},
  journal= {arXiv preprint arXiv:2304.13288},
  year   = {2023}
}

Comments

Main text 18 pages, 5 figures; Supplementary information 8 pages, 4 figures