Structural distortion below the Néel temperature in spinel GeCoO
arXiv:1405.7099 · doi:10.1103/PhysRevB.90.064105
Abstract
A structural phase transition from cubic to tetragonal 4/ symmetry with 1 is observed at = 16 K in spinel GeCoO below the Néel temperature = 21 K. Structural and magnetic ordering appear to be decoupled with the structural distortion occurring at 16 K while magnetic order occurs at 21 K as determined by magnetic susceptibility and heat capacity measurements. An elongation of CoO octahedra is observed in the tetragonal phase of GeCoO. We present the complete crystallographic description of GeCoO in the tetragonal 4/ space group and discuss the possible origin of this distortion in the context of known structural transitions in magnetic spinels. GeCoO exhibits magnetodielectric coupling below . The related spinels GeFeO and GeNiO have also been examined for comparison. Structural transitions were not detected in either compound down to 8 K. Magnetometry experiments reveal in GeFeO a second antiferromagnetic transition, with = 7.9 K and = 6.2 K, that was previously unknown, and that bear a similarity to the magnetism of GeNiO.