Nanoscale distribution of magnetic anisotropies in bimagnetic soft core-hard shell MnFeO@CoFeO nanoparticles
arXiv:1610.04263 · doi:10.1002/admi.201700599
Abstract
The nanoscale distribution of magnetic anisotropies was measured in core@shell MnFeO@CoFeO 7.0 nm particles using a combination of element selective magnetic spectroscopies with different probing depths. As this picture is not accessible by any other technique, emergent magnetic properties were revealed. The coercive field is not constant in a whole nanospinel. The very thin (0.5 nm) CoFeO hard shell imposes a strong magnetic anisotropy to the otherwise very soft MnFeO core: a large gradient in coercivity was measured inside the MnFeO core with lower values close to the interface region, while the inner core presents a substantial coercive field (0.54 T) and a very high remnant magnetization (90% of the magnetization at saturation).
27 pages (including supporting information)