paper

Strong anisotropy in the mixed antiferromagnetic system MnFePSe

arXiv:1902.09655 · doi:10.1103/PhysRevMaterials.4.034411

Abstract

We report the magnetic phase diagram of MnFePSe which represents a random magnet system of two antiferromagnetic systems with mixed spin, mixed spin anisotropies, mixed nearest neighbor magnetic interactions and mixed periodicities in their respective antiferromagnetic structure. Bulk samples of MnFePSe have been prepared and characterized phase pure by powder X-ray and neutron diffraction and X-ray fluorescence. Nature and extent of magnetically ordered state has been established using powder neutron diffraction, dc magnetic susceptibility and heat capacity. Long-range magnetic ordering exists between and 0.25 (MnPSe-type) and between and (FePSe-type). A short-range magnetic order with existence of both MnPSe- and FePSe-type nano-clusters has been established between and . Irreversibility in dc magnetization measurements, also characterized by isothermal and thermoremanent magnetization measurements suggest similarities to magnetic nanoparticles where uncompensated surface spins result in a non-zero TRM and IRM response, further reinforcing existence of magnetic nano-clusters or domains. A spin glass state, observed in analogous MnFePS, has been ruled out and formation of nano-clusters exhibiting both ordering types results from unusually high anisotropy values. The effect of ligand contributions to the spin-orbit interactions has been suggested as a possible explanation for high values in these compounds.

10 pages, 11 figures