paper

Distinct magnetic ground states of ZnIrO ( = La and Nd) determined by neutron powder diffraction

arXiv:2102.01276 · doi:10.1103/PhysRevB.103.L060402

Abstract

Double perovskite iridates ZnIrO ( = alkaline or lanthanide) show complex magnetic behaviors ranging from weak ferromagnetism to successive antiferromagnetic transitions. Here we report the static () and dynamic () magnetic susceptibility, and neutron powder diffraction measurements for = La and Nd compounds to elucidate the magnetic ground state. Below 10~K, the = La compound is best described as canted iridium moments in an antiferromagnet arrangement with a propagation vector \textbf{k} = 0 and a net ferromagnetic component along the -axis. On the other hand, NdZnIrO is described well as an antiferromagnet with a propagation vector \textbf{k} = (1/2~1/2~0) below 17 K. Scattering from both the Nd and Ir magnetic sublattices were required to describe the data and both were found to lie almost completely within the -plane. susceptibility revealed a bifurcation between the zero-field-cooled and field-cooled curves below 13 K in NdZnIrO. A glassy state was ruled out by susceptibility but detailed magnetic isotherms revealed the opening of the loop below 13~K. These results suggest a delicate balance exists between the Dzyaloshinskii-Moriya, crystal field schemes, and - interaction in this series of compounds.

6 pages, 5 figures. To be published in PRB