paper

Single-Crystal Growth and Magnetic, Electronic Properties of the FCC Antiferromagnet Ba_2CoMoO_6

arXiv:2603.15485

Abstract

This work presents a comprehensive investigation of the structural, magnetic, and electronic properties of the double perovskite BaCoMoO (BCMO). Single crystals were grown via floating-zone and Czochralski techniques and characterized using a set of complementary methods. X-ray diffraction analysis confirmed that BCMO crystallizes in a face-centered cubic structure with space group . Magnetic susceptibility measurements reveal antiferromagnetic ordering below ~K, with a spin-flop transition at ~T. Heat-capacity measurements and entropy analysis, , are consistent with a effective ground state for Co ions. X-ray absorption spectroscopy at the Co~ edges provides insight into the local electronic structure, revealing spin-orbit and crystal-field splitting effects; cluster-model calculations constrained by the XAS spectra yield a Landé factor , consistent with a spin-orbit-entangled ground state. Surface photovoltage spectroscopy reveals a strong optical response with a prominent feature at ~eV. These findings advance the understanding of face-centered cubic lattice antiferromagnets with strong spin-orbit coupling and suggest the technological promise of BCMO for spintronic and energy-conversion applications.