paper

The magnetic structures of rare-earth quadruple perovskite manganites MnO

arXiv:1808.09155

Abstract

We report a neutron powder diffraction study of MnO quadruple perovskite manganites with = La, Ce, Nd, Sm, and Eu. We show that in all measured compounds concomitant magnetic ordering of the and manganese sublattices occurs on cooling below the Nel temperature. The respective magnetic structures are collinear, with one uncompensated Mn moment per formula unit as observed in bulk magnetisation measurements. We show that both LaMnO and NdMnO undergo a second magnetic phase transition at low temperature, which introduces a canting of the site sublattice moments that is commensurate in LaMnO and incommensurate in NdMnO. This spin canting is consistent with a magnetic instability originating in the site orbital order. Furthermore, NdMnO displays a third magnetic phase transition at which long range ordering of the Nd sublattice modifies the periodicity of the incommensurate spin canting. Our results demonstrate a rich interplay between transition metal magnetism, orbital order, and the crystal lattice, which may be fine tuned by cation substitution and rare earth magnetism.