Possibility of ferro-octupolar order in BaCaOsO assessed by X-ray magnetic dichroism measurements
arXiv:2510.00448 · doi:10.1103/mh1b-q11n
Abstract
Localized electrons in a cubic crystal field possess multipoles such as electric quadrupoles and magnetic octupoles. We studied the cubic double perovskite BaCaOsO containing the Os () ions, which exhibits a phase transition to a `hidden order' below 50 K, by X-ray absorption spectroscopy (XAS) and X-ray magnetic circular dichroism (XMCD) at the Os edge. The cubic ligand-field splitting between the and levels of Os was deduced by XAS to be 4 eV. Ligand-field (LF) multiplet calculation under fictitious strong magnetic fields indicated that the exchange interaction between nearest-neighbor octupoles should be as strong as 1.5 meV if a ferro-octupolar order is stabilized in the `hidden-ordered' state, consistent with the exchange interaction of 1 meV previously predicted theoretically using model and density functional theory calculations. The temperature dependence of the XMCD spectra was consistent with a 18 meV residual cubic splitting of the lowest 2 multiplet state into the non-Kramers doublet ground state and the triplet excited state.
7 pages, 5 figures