English

Structural and physical properties of $SrMn_{1-x}Ru_xO_3$ perovskites

Materials Science 2009-11-13 v1 Strongly Correlated Electrons

Abstract

We combine the results of magnetic and transport measurements with neutron diffraction data to construct the structural and magnetic phase diagram of the entire family of SrMn1x_{1-x}Rux_{x}O3_3 (0x10 \leqslant x \leqslant 1) perovskites. We have found antiferromagnetic ordering of the C type for lightly Ru-substituted materials (0.06x0.50.06 \leqslant x \leqslant 0.5) in a similar manner to RyR_{y}Sr1y_{1-y}MnO3_3 (RR=La, Pr), due to the generation of Mn3+^{3+} in both families of manganite perovskites by either BB-site substitution of Ru5+^{5+} for Mn4+^{4+} or AA-site substitution of R3+R^{3+} for Sr2+^{2+}. This similarity is driven by the same ratio of d4d^4 / d3d^3 ions in both classes of materials for equivalent substitution level. In both cases, a tetragonal lattice distortion is observed, which for some compositions (0.06x0.20.06 \leqslant x \leqslant 0.2) is coupled to a C-type AF transition and results in a first order magnetic and resistive transition. Heavily substituted SrMn1x_{1-x}Rux_{x}O3_3 materials are ferromagnetic due to dominating exchange interactions between the Ru4+^{4+} ions. Intermediate substitution (0.6x0.70.6 \leqslant x \leqslant 0.7) leads to a spin-glass behavior instead of a quantum critical point reported previously in single crystals, due to enhanced disorder.

Keywords

Cite

@article{arxiv.0811.4181,
  title  = {Structural and physical properties of $SrMn_{1-x}Ru_xO_3$ perovskites},
  author = {S. Kolesnik and B. Dabrowski and O. Chmaissem},
  journal= {arXiv preprint arXiv:0811.4181},
  year   = {2009}
}

Comments

9 pages, 10 figures, accepted for publication in Physical Review B